Different Strategies in Composting

Composting can be categorized into different categories depending on the nature of decomposition process. The three major segments of composting are anaerobic composting, aerobic composting, and vermicomposting. In anaerobic composting, the organic matter is decomposed in the absence of air. Organic matter may be collected in pits and covered with a thick layer of soil and left undisturbed six to eight months. Anaerobic microorganisms dominate and develop intermediate compounds including methane, organic acids, hydrogen sulphide and other substances. The process is low-temperature, slow and the compost formed may not be completely converted and may include aggregated masses and phytotoxic compounds.

compost_strategies

Aerobic Composting

Aerobic composting is the process by which organic wastes are converted into compost or manure in presence of air. In this process, aerobic microorganisms break down organic matter and produce carbon dioxide, ammonia, water, heat and humus, the relatively stable organic end-product. Although aerobic composting may produce intermediate compounds such as organic acids, aerobic microorganisms decompose them further. The resultant compost, with its relatively unstable form of organic matter, has little risk of phytotoxicity. The heat generated accelerates the breakdown of proteins, fats and complex carbohydrates such as cellulose and hemicellulose. Hence, the processing time is shorter. Moreover, this process destroys many micro-organisms that are human or plant pathogens, as well as weed seeds, provided it undergoes sufficiently high temperature. Although more nutrients are lost from the materials by aerobic composting, it is considered more efficient and useful than anaerobic composting for agricultural production.

There are a variety of methods for aerobic composting, the most common being the Heap Method, where organic matter needs to be divided into three different types and to be placed in a heap one over the other, covered by a thin layer of soil or dry leaves. This heap needs to be mixed every week, and it takes about three weeks for conversion to take place. The process is same in the Pit Method, but carried out in specially constructed pits. Mixing has to be done every 15 days, and there is no fixed time in which the compost may be ready. Berkley Method uses a labor-intensive technique and has precise requirements of the material to be composted. Easily biodegradable materials, such as grass, vegetable matter, etc., are mixed with animal matter in the ratio of 2:1. Compost is usually ready in 15 days.

Vermicomposting

Vermicomposting is a type of composting in which certain species of earthworms are used to enhance the process of organic waste conversion and produce a better end-product. It is a mesophilic process utilizing microorganisms and earthworms. Earthworms feeds the organic waste materials and passes it through their digestive system and gives out in a granular form (cocoons) which is known as vermicompost. Earthworms consume organic wastes and reduce the volume by 40–60 percent. Each earthworm weighs about 0.5 to 0.6 gram, eats waste equivalent to its body weight and produces cast equivalent to about 50 percent of the waste it consumes in a day. The moisture content of castings ranges between 32 and 66 percent and the pH is around 7.

The level of nutrients in compost depends upon the source of the raw material and the species of earthworm. Apart from other nutrients, a fine worm cast is rich in NPK which are in readily available form and are released within a month of application. Vermicompost enhances plant growth, suppresses disease in plants, increases porosity and microbial activity in soil, and improves water retention and aeration.

Biomethane Industry in Europe

Biomethane is a well-known and well-proven source of clean energy, and is witnessing increasing demand worldwide, especially in European countries. Between 2012 and 2016, more than 500 biomethane production plants were built across Europe which indicates a steep rise of 165 percent. The main reasons behind the growth of biomethane industry in Europe is increasing interest in industrial waste-derived biogas sector and public interest in biogas.  Another important reason has been the guaranteed access to gas grid for all biomethane suppliers.

Biomethane production in Europe has swiftly increased from 752 GWh in 2011 to 17,264 GWh in 2016 with Germany being the market leader with 195 biomethane production plants, followed by United Kingdom with 92 facilities. Biogas generation across Europe also witnessed a rapid growth of 59% during the year 2011 and 2016. In terms of plant capacities, the regional trend is to establish large-scale biomethane plants.

Sources of Biomethane in Europe

Landfill gas and AD plants (based on energy crops, agricultural residues, food waste, industrial waste and sewage sludge) are the major resources for biomethane production in Europe, with the predominant source being agricultural crops (such as maize) and dedicated energy crops (like miscanthus). In countries, like Germany, Austria and Denmark, energy crops, agricultural by-products, sewage sludge and animal manure are the major feedstock for biomethane production. On the other hand, France, UK, Spain and Italy rely more on landfill gas to generate biomethane.

A large number of biogas plants in Europe are located in agricultural areas having abundant availability of organic wastes, such as grass silage and green waste, which are cheaper than crops. Maize is the most cost-effective raw material for biomethane production. In many parts of Europe, the practice of co-digestion is practised whereby energy crops are used in combination with animal manure as a substrate. After agricultural biogas plants, sewage sludge is one of the most popular substrates for biomethane production in Europe.

Biomethane Utilization Trends in Europe

Biomethane has a wide range of applications in the clean energy sector. In Europe, the main uses of biomethane include the following:

  1. Production of heat and/or steam
  2. Power generation and combined heat and power production(CHP)
  3. Replacement for natural gas (gas grid injection)
  4. Replacement for compressed natural gas & diesel – (bio-CNG for use as transport fuel)
  5. Replacement for liquid natural gas – (bio-LNG for use as transport fuel)

Prior to practically all utilization options, the biogas has to be dried (usually through application of a cooling/condensation step). Furthermore, elements such as hydrogen sulphide and other harmful trace elements must be removed (usually trough application of an activated carbon filter) to prevent adverse effects on downstream processing equipment (such as compressors, piping, boilers and CHP systems).

biomethane-transport

Biomethane is getting popularity as a clean vehicle fuel in Europe. For example, Germany has more than 900 CNG filling stations, with a fleet of around 100,000 gas-powered vehicles including cars, buses and trucks. Around 170 CNG filling stations in Germany sell a blend mixture of natural gas and biomethane while about 125 filling stations sell 100% biomethane from AD plants.

Barriers to Overcome

The fact that energy crops can put extra pressure on land availability for cultivation of food crops has led many European countries to initiate measures to reduce or restrict biogas production from energy crops. As far as waste-derived biomethane is concerned, most of the EU nations are phasing out landfill-based waste management systems which may lead to rapid decline in landfill gas production thus putting the onus of biomethane production largely on anaerobic digestion of food waste, sewage sludge, industrial waste and agricultural residues.

The high costs of biogas upgradation and natural gas grid connection is a major hurdle in the development of biomethane sector in Eastern European nations. The injection of biomethane is also limited by location of suitable biomethane production facilities, which should ideally be located close to the natural gas grid.  Several European nations have introduced industry standards for injecting biogas into the natural gas grid but these standards differ considerably with each other.

Another important issue is the insufficient number of biomethane filling stations and biomethane-powered vehicles in Europe. A large section of the population is still not aware about the benefits of biomethane as a vehicle fuel. Strong political backing and infrastructural support will provide greater thrust to biomethane industry in Europe.

Why Eco Friendly Vehicles Are the Future of Transportation?

There have been many revolutions in the engineering of passenger vehicles. First, in the late 1800’s came the automobile. Less than twenty years later, the first consumer car, the Model T was put into production. Over time, engineers kept improving cars and made them faster, safer, and better for the environment. Just a decade ago, cars that operate just as well as traditional fuel burning models began hitting markets around the globe. Every year these cars keep getting better, and it looks like they are the future of transportation.

The Green Transportation Revolution is sweeping across the United States, fundamentally reshaping the way we move. In this era of environmental consciousness, the shift towards sustainable mobility solutions has never been more evident. From the widespread adoption of electric vehicles, saving both the environment and your wallet from the burdens of high fuel costs, to the promising emergence of driverless cars poised to make our roads safer and more efficient than ever before, this article explores the exciting journey toward a greener future in transportation. Countries like Norway, Germany, and France have even proposed phasing out gas-powered vehicles altogether, demonstrating a global commitment to cleaner, more sustainable modes of transport. Discover the full story of this transportation revolution and how the USA is leading the way on escootersstores.

1. Green On the Streets and in Your Wallet

The appeal of an eco friendly vehicle is pretty obvious, when you take a look at how much money owners save on fuel costs. According to a report from Business Insider Americans in some states spend an average of over $1,300 per year on fuel alone. If you are the victim of a car accident, contact Philadelphia Injury Lawyers P.C. for a free consultation!

Internationally, many countries such as Canada have introduced extra taxes on fuel inefficient vehicles. Some countries, including Norway, Germany, and France have all proposed banning the sale of new gas powered vehicles. It seems that many countries see the harm that burning fuel causes to the environment, and are willing to push consumers to more efficient and clean transportation options, such as gas or electric powered cars. The use of these as power sources has garnered criticism as to whether or not natural gas is a reliable renewable resource, but natural gas been proven to be just as renewable and green as electric hybrids of today.

Studies have proven that “greener” vehicles do not just save consumers in taxes and fuel though. Electric cars can save owners quite a bit of money over time in maintenance. Since electric vehicles tend to need less engine maintenance, the cost of repairs and upkeep drop drastically.

2. Safer Roads and Better Fuel Efficiency

Today the roads are full of electric cars. While they certainly are the future, every driver is surely interested in what comes next. With driverless cars increasingly entering highways around the world, it would seem that the future of efficiency is with automated driving.

According to an article in Forbes, driverless vehicles could reduce fuel consumption in passenger vehicles by as much as 44 percent and 18 percent for trucks. That is an enormous impact for the environment. This reduction is due in part to the amount of time the cars are in use. With driverless cars, commuters could share vehicles and each passenger vehicle would spend less time idle, depreciating in value and wasting resources.

Self driving cars are already incredibly safe, and that is in part because they are programmed to strictly follow all traffic laws. According to a CNN report 90% of traffic accidents are caused by human error. These accidents could be reduced by fuel efficient driverless vehicles.

3. Making Your Current Ride More Efficient

Not all of us can afford to pony up the cash for a new electric vehicle, but that does not mean you can’t be more environmentally friendly with your current car or truck. There are plenty of ways to help make your vehicle and commute efficient. One simple way to reduce your use of fossil fuels is to minimize trips and idle time. If you sit in a drive through or traffic regularly, turn off your vehicle. The Environmental Defense Fund suggests turning off your vehicle if you idle for more than 10 seconds at a time.

Performing maintenance at scheduled intervals also keeps your vehicle in great condition, which helps it stay at its peak efficiency. Replacing spark plugs, keeping clean air filters in your car, and airing up tires to the manufacturer’s specified pressure can all improve your vehicles overall performance.

Please keep in mind that it is recommended to contact a car accident lawyer if you are hurt in a car accident. Your lawyer will gather the evidence and deal with your insurance company to ensure that you get the maximum compensation you are entitled to.

Lastly, driving fast consumes more fuel. Following the speed limit and posted directions, avoiding fast braking and acceleration, and using cruise control on the highway can help save on gas.

5 Reasons You Need a Commercial Dumpster for Your Business

Businesses are a leading source of waste, hence the need for management. While waste management on a large scale is still a challenge, businesses can come up with effective management, such as hiring a dumpster. You do not necessarily need a permanent dumpster as a business, but having one is vital to properly managing your waste. A dumpster will significantly benefit your business, whether a cleaning company, restaurant, or office.

Read on for five reasons you need a commercial dumpster rental for your business.

why your business need a commercial dumpster

1. Safe Workplace

A commercial dumpster rental will help create a safe job site, especially if you deal with sharp and hazardous products. You can designate special dumpsters for different kinds of waste to reduce accidents at the workplace. A clean and safe workplace also promotes peace of mind among your employees, improving their performance.

2. Commercial Dumpster Rentals Are Eco Friendly

As a business owner, you should meet the local, federal, state, or international standards to reduce the greenhouse effect. Adding a waste management policy helps you compact your trash for recycling. This way, a small percentage of your waste will find its way into the landfill sites and water bodies, saving the environment in the long run.

3. Create More Space

Compacting your waste saves on space as it reduces the once bulky items. You can, in turn, utilize the extra space in your business for more facilities for optimal performance.

4. Legal Waste Management

Unfortunately, many businesses are unaware that they are illegally throwing trash, which could get them into trouble. Using a commercial dumpster rental service provides your business with a legal waste management option. The company will take responsibility for the waste management and all its regulations, saving you the worry.

skip bins

5. Reduce Operational Costs

Failure to manage your waste could result in workplace injuries in which the affected party sues the organization resulting in hefty compensations. Also, while you may have other disposal mechanisms, they could violate the rules of your locality, which may attract fines. Therefore, investing in a commercial dumpster rental is ideal for reducing such costs.

Get a Commercial Dumpster for Your Business

A waste management system is necessary for any business. This system keeps the business clean, ensures a safe work environment, cuts operational costs, and preserves the environment. Hence, if you are yet to implement such a system, consider linking up with a reputable company, most of which will also set a recycling program for your business.

How Renewable Energy Manufacturing Has Become More Efficient

The world knows renewable energy offers extensive, far-reaching benefits that can help mitigate climate change. If we want to make progress, we need to move away from fossil fuels permanently. That’s an issue where most people agree. It is now evident there is another argument for renewable energy besides sustainability. This option has become much more efficient, both production- and cost-wise. Let us explore how renewable energy manufacturing has become more efficient in recent years:

renewable-energy-harvesting

Production Innovations Boost Effectiveness

Consider how renewable energy was received publicly 10 or 15 years ago. It wasn’t exactly an avenue that most individuals or businesses knew existed. There have been various challenges regarding implementation across America. Hurdles like government support and wide-spread education are examples.

That’s changed as more information has been released about how fossil fuels negatively affect our planet. It’s now evident that renewable energy prospects continue to grow annually — even during COVID-19. That’s largely due to how production methods have transformed over the past several years.

The renewable energy industry can now manufacture sources through smarter means. For example, we used to harness wind power from land-based turbines. Those opportunities have expanded as offshore capabilities are now more mainstream. This innovative progress has become applicable to other sources, too.

These new ideas are significantly responsible for how renewable energy has become more efficient. If we never changed our manufacturing processes, we couldn’t produce renewable energy on a large enough scale. There’s no denying that continuous innovations will make choices like solar, hydro and geothermal increasingly accessible.

As a result, we can enjoy more options as consumers. There’s also cost to consider — which unquestionably determines how efficiently people view renewable energy. They need to be even cheaper than fossil fuels.

ecofriendly-manufacturing

Costs Are Lower Than Ever Before

It is important to highlight how renewable energy has turned into an affordable alternative. This cost-efficiency will be necessary to help people choose renewable energy sources over fossil fuels. There are many reasons why prices for eco-friendly power have fallen.

1. Subsidies

The most significant components are subsidies. These government-backed incentives help manufacturers switch to alternative energy sources for less money. It’s also evident that options exist for individuals and businesses. People can access tax incentives to support their sustainable power pursuits financially.

2. Non-Profit Organizations

There’s also help from green non-profit organizations. Take GRID Alternatives Mid-Atlantic as an example. They provide free solar panel installation to households that can’t otherwise afford renewable energy. That’s a useful resource to help drive accessibility to these alternatives.

3. Investments

What about renewable energy investments? These endeavors are more prevalent than ever. If our country’s most influential figures put their money in renewable energy, we can expect to pay less for green power. Texas has the lowest energy costs in America — and they also use the most wind power. That’s not a coincidence.

These three points ensure that renewable energy becomes more affordable yearly. Various entities need to work together to ensure that sustainable options are accessible. They need to be more available than fossil fuels to ensure they catch on as alternatives.

Future of Renewable Energy Manufacturing

There’s a bright future for renewable energy. As a result of innovative and cost-effective manufacturing progress, Americans now have access to various eco-friendly power sources. If we can keep making strides regarding production, we should be able to create renewable energy on a far-reaching scale.

This process won’t happen overnight. It’s taken decades for renewable energy to be seen as even a viable alternative to harmful fossil fuels. But we’re in an ideal place right now. It shouldn’t be long before renewable energy becomes even more efficient. There’ll then be no excuse for people to keep using fossil fuels.

7 Energy Efficiency Innovations That Can Help Homeowners

Domestic energy efficiency has advanced a long way over the last few decades. Despite our overall energy consumption increasing by just over a third since 1980, on average our homes consume around 10% less overall. How can this be the case when we have so many more electrical appliances? Back in 1980, not many homes had more than a single TV, and computers and mobile phones were essentially non-existent. Yet somehow they used more electricity!

The answer to this question comes down to one simple principle. Energy efficiency. Government regulations and technical advances led by the private sector have resulted in appliances that are simply more sustainable. Throw in a better public understanding of the importance of reducing carbon emissions, and also the use of money expert comparison sites to track the expense of powering a home, and it the picture becomes a little clearer.

Expect to see this trend become ever more prevalent in the near future, as sustainability has become a huge industry that continues to rapidly expand.

Here’s a selection of the most recent energy efficiency innovations that are already helping homeowners save money that we can expect to become common place over the coming years.

1. Smart Homes

At first glance, you may wonder what the point is in buying a new domestic appliance that is advertised as ‘internet connected/ready’. After all, who is going to need a web compatible refrigerator or air conditioning unit? It is increasingly common for newly released appliances to boast this feature because in the coming years, our homes are going to be much more connected than at present. Being able to monitor and control energy expenditure remotely via smartphone is a tech that is already with us – but these are still the early days.

The next big step forward is going to be the implementation of wireless sensors throughout the home. These will connect all the appliances in the home to a centralized control panel which will automatically instruct how they interact with the energy supply.

For instance, appliances not in use, but on ‘standby’ mode will be entirely disconnected from the power supply when nobody is at home. Heating and air conditioning use will be precisely measured according to the ambient temperature. Just these two examples – and there are many more in the pipeline – are set to shave a considerable amount of household energy consumption in the very near future.

2. Next Generation Home Insulation

The US Industrial Science & Technology Network takes the approach that heating and cooling costs can best be reduced by simply developing superior insulation. While still at the development stage, these are promised to be far more efficient at preventing heat from escaping.

As may be expected, they are also going to be environmentally sound and most likely comprised of recycled foam materials. Should these be proven to work, there is a very good chance they will become the industry norm for new build and redeveloped housing in the years to come.

home-insulation

3. Reflective Roofing Materials

While insulation is ideal for maintaining an ambient temperature what about those who live in warmer climes? Everyone knows how expensive it is to run air conditioning 24 hours a day, but there have been considerable recent advances in reflective rooftop materials. Currently, these work by using special pigments that are coated onto the roof in order to reflect sunlight and heat.

The next generation in development will use fluorescent pigments that look likely to be up to four times more efficient. So for those who reside in areas where effective air conditioning is essential around the year, these new materials may well be an absolute godsend.

4. Magnetocaloric Refrigerators

A fridge powered by magnets? Close, but not quite. Refrigeration technology has barely changed or advanced since they were first introduced. Modern fridges still rely on vapor compression, which unfortunately requires chemical coolants that are notoriously bad for the environment.

Next generation models are going to be able to make use of water-based coolants that make use of the magnetocaloric effect. In layperson’s terms, this is the use of magnets to alter the magnetic field which can provide an extremely energy efficient cooling effect. Expect this to become commonplace in the coming years, thanks to their potential in enormously reducing energy expenditure and carbon emissions.

5. Much More Efficient Heat Pumps

Considerable progress has been made by the US Building Technologies Office in developing heat pumps that essentially move heat throughout the home. There are three models in design that promise to considerably reduce expenditure on heating while also significantly reduce carbon emissions. Standard gas boilers/furnaces are notoriously expensive and inefficient.

  • A low-cost gas-based heating pump could massively increase efficiency and result in lowering heating costs by a staggering 45%.
  • Multiple function fuel based pumps designed for domestic use can still save an estimated 30% with the added bonus of also providing more efficient water heating.
  • Natural gas based heating pumps connected with air conditioners aim to use a very low emission boiler to cater for all domestic needs regardless of the season. Of all three options, this is the most complete package and the one most likely to become widespread in the coming years.

These styles of heat pumps are also going to be used to significantly reduce the energy used by clothes drying machines. General Electric has been already near completing their first gas pump compatible dryer. This is intended to reduce the energy consumption of perhaps the least efficient appliance in the home by up to 60%.

heating-radiator

6. Even Better LED Lighting

Energy saving lighting may have become the accepted norm in many households, and the good news is that it is set to become even better. At present these are up to 85% more efficient than old fashioned incandescent bulbs, but the next generation – scheduled for a few years time – promise to double their efficiency. An improvement up to 230 lumens (from the current 115) is forecast.

8% of all electricity consumption in the USA are due to lighting homes and businesses. Having that figure will make for a huge national saving and reduction of energy costs across the board.

LED-lighting-workplace

7. Advanced Window Insulation

While still in development this may not sound like a huge advance, but could well result in enormous net energy savings down the line. Using microprocessors and sensors to measure sunlight and radiant heat, these are going to automatically provide shading to assist with providing ideal natural lighting and also assist with heating. Expect these to be integrated with the general smart home system outlined above in due course.

Final Thoughts

So there we have seven of the most exciting and interesting energy efficiency innovations that we can expect to see in the home over the coming years. While some are already in production while others are just passing the prototype phase, the future is looking positive in terms of reducing emissions and better managing energy consumption.

Energy efficiency is here to stay and these developments will likely only be the tip of the iceberg compared to what we can look forward to over coming decades.

5 Ways to Shop For Food Responsibly

Nowadays, we can get food from the four corners of the Earth. If you want tropical fruit during the winter, you can get it. You’ll never run out of oranges, mangoes, or bananas. While these fruits and other imported foods are delicious, it’s important to eat the foods local to your area.

Shopping for and eating locally grown food is stellar for the environment and your health. However, it’s a bit difficult to navigate these days when most common items are imported. Let’s go through some tips to become a responsible food consumer:

locally-grown-food

1. Research Food Local to Your Area

First things first, get to know what crops grow best in your area. Do some googling and go to the library to find resources. Talk to people at your local grocery store.

Figure out which foods grow during the specific seasons and tailor your diet to suit the standards. Buy some cookbooks that have recipes specific to your area if they’re available.

2. Go Into the Store With a Game Plan

Going into a grocery store can either be a terrible burden or a fun experience. Most of the time, we enter huge establishments that push certain products towards consumers due to profits. Those who consider grocery shopping burdensome should craft a plan of action.

locally-grown-food

You’ve already looked into local foods in your area. Now, you can craft recipes based on the ingredients. Plan what you’re going to cook for the week before you go shopping. Then, you can shop efficiently without succumbing to sales prices or food from far away.

3. Use Online Marketplaces Run by Farmers

While being responsible for your food choices involves eating mostly locally, some imported delicacies are hard to resist. Go easy on yourself. While you should avoid going into huge grocery chains and buying exclusively imported foods, you can splurge every once in a while.

If you want to buy certain foods that need to be imported, consider using online marketplaces. These stores are partnered directly with farmers. That way, you can enjoy imported foods while supporting farmers directly.

4. Go to Your Local Farmers Market

While grocery chains are great for certain products, there’s nothing like a farmers’ market. At a farmers market, you are directly exposed to the foods grown in your area. While farmers maintain a huge presence in these markets, you’ll also see other vendors as well.

food-waste-college

Organic food is a modern, healthy part of a sustainable lifestyle.

You’ll be able to buy locally made dips, chips, and other snacks. Plus, you can also buy crops or plants from certain individuals if you have a green thumb.

5. Buy Less

When transitioning to the life of a responsible food consumer, you’ll have to adjust to buying less every week. A responsible consumer does not overbuy. The individual buys what they need, whether that can be accomplished in one trip to the store or several.

The more you minimize food waste, the better you’ll feel. However, take baby steps and don’t feel too down if you have waste.

Become a Responsible Food Consumer

The task of being a responsible food consumer seems impossible, but it isn’t. The journey will take a while since you’re changing your habits and mindset, but it’s worth it. When you follow the steps to be more responsible, your body, mind, and the earth will thank you.

Take your time, make small changes every day, and have fun in the process. Maybe a love for cooking or baking will pop up while you are in the process.

Morton M30 Water Softener – Should You Get It?

A 30,000-grain water softener by Morton is the System Saver M30. It removes calcium and other hardness minerals from hard water by ion exchange. More efficient use of soaps and detergents owing to greater lathering, brighter laundry, and clean and spot-free dishes are all possible outcomes. In addition, the plumbing system and appliances in your home will be safeguarded against scaling.

Morton M30 Water Softener Review

Key features

How many hardness granules may be treated per gallon? Water that is up to 95 gpg is extremely hard.

Morton water softeners, by the way, are built in the United States and may be used with both city and well water.

According to WQA test results, the M30 can even remove up to 7 parts per million of clear-water iron, which many homes on a private well struggle with. No, ferric, iron bacteria, or organic iron compounds are not affected.

The given flow rate of 7 gpm is enough for families with up to three occupants.

The minimum operating pressure for this device is 20 psi. 125 psi is the maximum pressure.

If you’re unsure about which salt to use, Morton advises System Saver II Pellets (of course). However, any high-grade softening salt in pellet form should suffice.

Performance

Because it can treat water with up to 95 grains of hardness, the Morton System Saver M30 softener is one of the higher performing salt-based water softeners on the market. As a result, the System Saver M30 may be used with water of virtually any hardness, even private well water.

During regeneration, all salt-based water softeners waste water, but this best Morton softening feature employs sophisticated technology to minimize this waste as much as possible. It evaluates your household’s average water consumption and forecasts how often the system will need to renew, saving water waste and salt replenishment.

The System Saver employs ion exchange to soften water as a salt-based softener. Ion exchange is a typical method for softening water that often delivers the greatest results. The system may also remove up to 7ppm of iron, preventing rust from forming. The system is designed to create soft water for four-person households and has a grain capacity of 30,000 grains.

Installation and Maintenance

The Morton M30 might be difficult to install. Many individuals prefer to hire a professional plumber instead of doing it themselves. Although the device comes with an installation instructions, if you don’t have much plumbing knowledge, you may find it difficult to set up the system on your own.

Outside installation is possible, but only if you live in an area where the temperature does not dip below freezing. With a height of 43 inches and a width of 17 inches, it’ll help you save room or fit neatly into a smaller space.

The System Saver’s maintenance consists of filling up the salt and cleaning up the tanks on a regular basis. Because the Morton system is dependent on salt to function, you’ll need to keep a check on the salt levels and replenish them as needed. You’ll also need to wipe out the interior of the tank and remove any sediment or slime, as directed in the user handbook.

System info

The Morton System Saver softens water with a single tank and ion exchange. Sodium (or salt) ions exchange places with hardness ions, resulting in calcium and magnesium ions when they flow through the tank’s resin. While the soft water exits the tank and travels through your home’s plumbing, the calcium and magnesium remain trapped in the resin.

With this Morton softener, you should be able to enjoy a variety of soft water perks. Because your soft water lathers better, you’ll be able to reduce your use of soaps and detergents. You won’t have to clean as often since your water won’t create limescale deposits, and your appliances will last longer. You should have whiter, fresher laundry as well.

The system also eliminates iron, and if your water is unusually rich in iron, the creators recommend using Morton® Rust Remover salt. Although there is some debate over whether a salt-based softener with a filter can genuinely remove iron, many customers have commended the Morton M30 for its rust-removal skills. If your water contains a lot of iron, you should probably invest in a separate iron filter.

Final verdict

Leaks were a problem for certain consumers. Morton customer service received diverse reviews, ranging from terrible to excellent.

Another disadvantage is the exorbitant cost of replacing parts, such as the control board. Finally, the installation instructions should be improved.

The Morton System Saver M30 softens water in the proper manner. It can even manage modest iron levels and is simple to set up. However, it appears that overall quality and customer service are a problem. Nonetheless, we believe it is a reasonably excellent water softener on the market.

Everything You Should Know About Biomass Storage Methods

Sufficient biomass storage is necessary to accommodate seasonality of production and ensure regular supply to the biomass utilization plant. The type of storage will depend on the properties of the biomass, especially moisture content.

For high moisture biomass intended to be used wet, such as in fermentation and anaerobic digestion systems, wet storage systems can be used, with storage times closely controlled to avoid excessive degradation of feedstock. Storage systems typically used with dry agricultural residues should be protected against spontaneous combustion and excess decomposition, and the maximum storage moisture depends on the type of storage employed.

Consistent and reliable supply of biomass is crucial for any biomass project

Moisture limits must be observed to avoid spontaneous combustion and the emission of regulated compounds. Cost of storage is important to the overall feasibility of the biomass enterprise. In some cases, the storage can be on the same site as the source of the feedstock. In others, necessary volumes can only be achieved by combining the feedstock from a number of relatively close sources. Typically, delivery within about 50 miles is economic, but longer range transport is sometimes acceptable, especially when disposal fees can be reduced.

Storage of biomass fuels is expensive and increases with capacity.

Agricultural residues such as wheat straw, rice husk, rice straw and corn stover are usually spread or windrowed behind the grain harvesters for later baling. Typically these residues are left in the field to air dry to moisture levels below about 14% preferred for bales in stacks or large piles of loose material.

After collection, biomass may be stored in the open or protected from the elements by tarps or various structures. Biomass pelletization may be employed to increase bulk density and reduce storage and transport volume and cost.

Biomass Storage Options

  • Feedstock is hauled directly to the plant with no storage at the production site.
  • Feedstock is stored at the production site and then transported to the plant as needed.
  • Feedstock is stored at a collective storage facility and then transported to the plant from the intermediate storage location.

Biomass Storage Systems

The type of biomass storage system used at the production site, intermediate site, or plant can greatly affect the cost and the quality of the fuel. The most expensive storage systems, no doubt, are the most efficient in terms of maintaining the high fuel quality. Typical storage systems, ranked from highest cost to lowest cost, include:

  • Enclosed structure with crushed rock floor
  • Open structure with crushed rock floor
  • Reusable tarp on crushed rock
  • Outside unprotected on crushed rock
  • Outside unprotected on ground
  • Subterranean

The storage of biomass is often necessary due to its seasonal production versus the need to produce energy all year round. Therefore to provide a constant and regular supply of fuel for the plant requires either storage or multi-feedstock to be used, both of which tend to add cost to the system.

Reducing the cost of handling and stable storage of biomass feedstock are both critical to developing a sustainable infrastructure capable of supplying large quantities of biomass to biomass processing plants. Storage and handling of biomass fuels is expensive and increases with capacity. The most suitable type of fuel store for solid biomass fuel depends on space available and the physical characteristics of the biomass fuel.

MySQL Alternatives and Competitors for Small Businesses

MySQL is a popular technology in the extensive data ecosystem. Anyone dealing with data or general IT must familiarize themselves with MySQL. It’s also essential to identify MySQL alternatives and competitors when considering circumstances and potential growth for your small business.

What Is MySQL?

This is a relational database management system (RDBMS) established by Oracle. This system is based on structured query language or SQL. A database is a collection of data. It could involve anything as simple as a picture gallery or shopping list. It’s a place where you hold vast amounts of information. A digital store collects data and organizes it according to a relational model. 

MySQL Alternatives for Small Businesses

MySQL is a crucial system for data classification. This analyzes data and organizes it into defined categories based on its contents, type, and other characteristics. Many organizations use MySQL for data classification because it allows them to answer queries about their data, and use this data to make critical business decisions. Analyzing data helps organizations mitigate risk by safeguarding data based on criteria like sensitivity, secrecy, and confidentiality.

Some popular organizations that have employed MySQL backends include Facebook, Twitter, YouTube, Flickr, and Wikipedia. The following are some alternatives and competitors of MySQL.

1. Microsoft SQL Server

SQL Server 2017 supports Windows, Linux, and Docker containers. It allows developers to create applications using their preferred language. This system comes with innovative security features and built-in AI. SQL Server is also capable of delivering insights through mobile BI.

2. Azure SQL Database

Azure SQL Database uses the Microsoft SQL Server Engine. This relational database has a high-performance, secure database and is reliable. You can use this system to create data-driven websites and applications in the programming language of your choice without the need to manage infrastructure.

3. IBM Informix

IBM Informix is a database optimized for Internet of Things (IoT) and OLTP data. This system can integrate SQL, NoSQL, and JSON. It’s reliable, flexible, and easy to use. It’s also affordable. IBM Informix works with both structured and unstructured data. It’s a hybrid database system that allows flexibility and easier development. You can run OLTP queries and workloads and use the Informix warehouse accelerator for predictive analytics. 

4. MariaDB

MariaDB was created by the same people who developed MySQL. The MariaDB foundation supports this open-source relational database. Some capabilities of this system include Galera Cluster 4, Temporal Data Tables, and Oracle Database.

5. SQLite

SQLite is a database library that implements a serverless, self-contained, transactional, and zero-configuration database engine. SQL lite is the most famous database in the world. The code used for SQLite is in the public domain and is free for use, whether for private or commercial purposes. 

6. Amazon Relational Database Service (RDS)

Amazon Relational Database Service (RDS) is a web service you can easily set up. Operating and scaling a relational database in the cloud is also easy. Some supported database systems include Amazon Aurora, MySQL, Microsoft SQL Server, Oracle, MariaDB, and PostgreSQL.

7. SAP HANA Cloud

SAP HANA Cloud combines database and application platform capabilities to transform transactions, text analysis, analytics, and predictive and spatial processing. This allows businesses to operate in real time.

8. LibreOffice Base

This is a full-featured desktop front-end database that addresses the needs of different users. LibreOffice Base supports drivers for the most popular multi-user database engines. These include MariaDB, MySQL, PostgreSQL, and MS Access. Additionally, the built-in support for ODBC and JDBC standard drivers enables you to connect to virtually any existing database engine.

9. PostgreSQL

PostgreSQL is an open-source and free object-relational database system. This database boasts many years of active reliability, robustness, development, and performance. PostgreSQL supports SQL and is designed for various workloads.

10. Firebird

Firebird is a relational database system offering ANSI SQL features. The system runs on Windows, Linux, and Unix platforms.

What To Consider When Choosing a Database Management System

When choosing a database management system, some essential features include data model, data consistency, and data security. When looking at the data model, you need to determine whether you are dealing with a relational model or unstructured data. Furthermore, consider how to retrieve and manipulate data. For example, it’s faster to analyze hierarchical data in sequential files in a NoSQL database than in a relational one.

Data consistency is another factor you must consider when choosing a database management system. Maintaining data consistency is essential as more sources tap into the database. You should consider consistency rules and define them when selecting a DBMS.

Lastly, you should think about the ability to back up and restore databases. Therefore, when choosing a database management system, you need to be able to set up a plan for data security to ensure minimal downtime in case of a security threat.

Wrapping It Up

The efficiency of any small business relies on the ability to store large amounts of crucial information securely and in an organized manner. This is why many corporations today have adopted MySQL and other related alternatives for database management. Choosing the appropriate system will ensure your data’s integrity and allow business processes to run smoothly.