28 December 2021

What Happens in Large Egg Shaped Tanks Often Seen at Municipal Wastewate...


The big egg-shaped containers you see are "digesters," which are used for anaerobic digestion.

Anaerobic digestion is utilised in wastewater treatment facilities to stabilise both main and secondary sludges that settle out during aerobic wastewater treatment (Sewage Works).

The major output is biogas, or biomethane when cleaned up, which is a valuable renewable (mainly methane) gas.

The gas can be utilised to power the wastewater treatment plant's machinery and offices, and there may be enough left over to serve local houses.

The sludges contain a solids concentration ranging from 2 to 6% (that is, 20-60 grammes of Total Solids per litre).

Around 70% of the combined sludge is degradable, and in a normal single-stage CSTR reactor, up to 80% of it is digested, lowering the TS by roughly 50%.




Although mixed sewage sludge has a high concentration of carbs, lipids, and proteins, it is infamously difficult to digest.

The most recent designs of these facilities frequently incorporate a pre-treatment stage in which the entering sludge cells are broken apart to allow them to be digested more readily and quickly in the digester.

22 December 2021

Twister Food Waste Depackager Separator is a Breakthrough in Vortex Flow

New customers in Europe and Asia have purchased Twister's innovative food waste de-packager and separator. This small-footprint, low-energy consumption plastic waste reprocessing facility has established itself in the increasing EU and Asian markets.

Since 2016, it has been in the works. An organic processing system with exceptional separation performance was recently shown in Canada.

This device ejects each open, empty, and completely emptied containers. Plus, with the "Twister" effect, the clean food waste generated is free of microplastics and is suitable for anaerobic digestion

Founder and CEO Mark Vanderbeken adds, 

"We wanted something unusual for Drycake's twister."

A food waste depackaging expert would have seen that "everyone tends to begin their depackaging and separation of source-separated organics by reducing particle size." ' This is a common tactic used by competitor depackagers to minimise congestion. It is milled, macerated, chopped, or shredded to get the plastic into smaller pieces. Why not combine the depackaging and separation stages? However, larger pieces are easier to separate than smaller ones.



Image caption: "Twister (TM) Food Waste Depackager Separator."

In response, DryCake went back to the drawing board and devised a method that does not require cutting and does not rely on processing plastic by reducing its particle size. Instead, they open and remove organic material in an extremely high-speed vortex using shear forces and vibration such that they do as little damage and produce as few microplastics as they possibly can.

Consequently, it is a market leader in sustainability by reducing the environmental damage that plastic pollution causes. "Ocean microplastic ingestion" is damaging ocean plankton and the food chain that supports all marine life, hence Drycake decided to take this course of action.

A lot of energy is required to cut, smash, and crush these materials. It is necessary to replace all moving components of hammer mills, knives, and blades. As a result, there are few moving parts in the Twister.



To the extent possible, plastic packaging should be avoided wherever possible."

As a result, you won't manufacture the microplastic particles in the first place. So, microplastics generation and energy consumption are lower in the Twister Food Waste Depackager and Separator compared to its competitors.

The reason Drycake predicted that this invention would be in high demand from the beginning is because of this fact. This company has a great opportunity to disrupt the business and become the industry standard depackager provider in Europe and Asia, with considerable environmental advantages.

One of their main goals is to help their clients manage sustainable plastic recycling operations, reprocessing plastic waste for use as resin in new packaging in the "circular economy," which is essential to avert catastrophic climate change. A high-quality organic paste for biogas plants at the same time

Anaerobic digestion plant operators may use this precious paste or "organic soup" as feedstock to generate sustainable energy in the form of biogas refined to biomethane. To put it another way, compressed biomethane is known as Renewable Natural Gas (RNG), and it may be used to heat our homes.

Additionally, it may be used as a low-emission vehicle fuel while hydrogen technology is in the process of being developed.

Since its market is much larger than that of the city or regional MRFs and ERFs (Energy Recovery Facilities/Incinerators), the Twister concept is also innovative. Reduced RCV travel distance, reduced collection costs and emissions, and improved food waste collection efficiency are all advantages of the smaller container size.

Waste collection employees will spend more time on the street collecting rubbish and less time sitting in the cabs of their RCVs on their way to the MRF ERF or transfer station by dispersing Twister unit locations. The facility and the process may also be designed by Drycake if necessary.

Clients should be pleased with the low energy use, low carbon impact and minimum maintenance required by Twister. Green characteristics make it an attractive investment for years to come.

Twister is a great option for supermarkets, organisations, and institutions that handle catering facilities, as well as clients in the food and beverage industry. Consequently, their company's carbon footprint is reduced and they may exhibit their true green successes for many years to come.

It's always a risk to try anything new, but they think it's worth it. The preservation of the global environment and the creation of a product that aids in the attainment of Net-Zero Carbon 2050 emission goals are among the primary reasons for this action.

How Twister's Vortex-Based Food Waste Depackager Beats Its Rivals in the Market

In at least four ways, Twister Food Waste Depackager technology does this:

Combining two separate tasks into a single operation saves both energy and water.

For example, if producers utilise virgin plastic resins rather than recycled plastic resins, they are emitting much more "greenhouse gas" carbon.

In order to create sustainable energy with low net carbon emissions, the biogas plant can be fueled by a plastic-free paste or slurry made from food waste. As a result, there is less need to extract oil or gas from the ground.

Reduces carbon emissions by reducing the farmer's demand for chemical fertilisers when organic slurry is digested and spread on agricultural land. Traditional fertilisers rely on the extraction of minerals from the earth's crust. In order to harvest and transport them, they need a significant amount of fossil fuel. This notion, thus, contributes to preserving the environment.

Their separation solutions have made them an industry leader for more than a decade. After starting out as a supplier of process equipment and design for trash recycling, reuse, and recovery, it has grown into a global industry leader.

Drycake has a history of violating the rules. Prior to the Plastifloat's debut, they made headlines for their efforts to recycle municipal garbage and recover materials from industrial effluent streams. One of the most effective methods for removing plastic from water.

Currently, Drycake is selling their Twister Food Waste Depackager throughout Europe and Asia, in addition to its previous sales in the United States. Interested readers can visit https://www.twisterseparator.com for further information.

https://www.twisterseparator.com has further details.

25 September 2021

The Biogas Compressor

Complete On-Site Biogas Recovery and Upgrade Compressor Solutions

The collection of gas from anaerobic fermentation, which would otherwise produce methane emissions from landfills, dairies/cattle feedlots, and wastewater facilities, not only eliminates methane emissions into the atmosphere, but it may also be a source of additional revenue and profit for the operator.

Biogas derived from biodegradable materials has the potential to be compressed and used as a lucrative renewable fuel source.

It makes sense to accomplish this and sell the biogas in a purified form for optimum return on investment for purposes such as road car fuel.

Several companies are proposing solutions to the difficult gas compression equipment required to market the resultant biomethane fuel product. There are a number of turnkey systems available for on-site biogas recovery and upgrading, including appropriately designed biogas compressor and blower kits.

Image with the text: "Biogas Compressor".


Compressor and Blower Packages for Biogas

To fill gas cylinders for sale or inject biomethane into the natural gas grid, the biogas plant operator will require a specialised biogas blower and compress package.

In North America, Applied Compression is an example of a company that provides a wide range of low, medium, and high-pressure compressor and blower systems.

Their packages range in size from 3 hp to about 750 hp and are intended for corrosive digester gas applications. They are designed to resist pressures ranging from zero to 5,000 PSIG.

According to them, their engineers have leveraged their company's over 50 years of experience in gas separation and compression to become biogas and landfill gas specialists.

Their speciality is said to be a custom-engineered blower, gas compressor, and dehydration systems customised to their client's specific needs.

Compressors for Biogas / Biomethane for Europe / Global

Hundreds of compressors deployed in biogas and biomethane production plants around Europe and the world, we believe, have positioned Fornovo Gas S.p.A. as a world leader in green energy excellence.

Biogas may be generated by fermenting biomass, such as wet municipal waste. To obtain raw biogas, the biomass is passed through a fermentation tank (Continuously Stirred Tank Reactor or CSTR). A low-pressure compressor then transports the biogas to the upgrading system. Greater pressure is necessary after upgrading for gas grid injection or filling cylinders.

Biogas compressors by Aerzen are offered for biogas applications. Whether you need to generate biomethane, feed kilometre-long supply networks, or provide intake pressure for combined heat and power plants. 

Because of the corrosive character of the gas and the high pressures that may be necessary, compressor technology is put to the test in biogas applications.

The Aerzen biogas compressor Series C is an oil-free screw compressor available in three sizes for volume flows of up to 1900 m3/h and overpressures of up to 3,5 bar. It is ideal for increasing the input pressure of biogas treatment facilities or as a vital component of biogas injection plants for compressing biomethane to inject into gas networks.

The development expertise of this international market leader, Aerzen, serves as the foundation for this since Aerzen has, we understand, invented, optimised, and delivered effective compressors since 1943.

19 September 2021

Is Biogas Carbon Neutral? - What Is Carbon Neutrality of Anaerobic Digestion?

Biogas is a carbon-neutral fuel source. Is this true, however, for biogas utilization?


We can certainly state that biogas is carbon neutral, but the key difficulty is how to identify and maximize the potential for reduced GHG emissions from biogas use.

After all, carbon neutrality isn't going to help us battle climate change. If the biogas business is to assist cut carbon emissions, it will have to do a lot more than that.

The anaerobic digestion process, which creates biogas, has the potential to produce a "carbon footprint" of fossil fuel energy consumption, which, when combined together, works against the gas's inherent GHG neutrality. For maximal GHG reversal effects, the size of the footprint must be kept as small as feasible.

Is Biogas Carbon Neutral?

The extent of the "carbon footprint" (non-renewable energy uses that contribute to atmospheric GHGs) is a complicated computation that necessitates processing data from some of the greatest biogas facilities.

That is why we are glad to reproduce the following ADBA Press Release, which highlights current Bath University research:

The existing and prospective carbon footprints of AD are highlighted in an academic research.

A recent report from Bath University identifies the potential for biogas use to reduce GHG emissions.

In Wiltshire, Malaby Biogas' Bore Hill Farm Biodigester was featured in a research project sponsored by Supergen Bioenergy Hub and published by Bath University.

Using real-world data from 2019, the report shows how food waste recycling may significantly improve the climate advantages of renewable energy and green fertilizer for farms.


Previous work established the company's carbon-negative status, and this article now details the further greenhouse gas reductions that could be realized as a result of future actions.

This emphasizes the need for anaerobic digestion (AD) as a critical component of the Climate Emergency response.

AD is the unsung hero of the UK renewables boom, with a lack of regulatory backing in the draught Environment Bill and ELMS, as well as continual delays in the Waste and Resources Strategy rollout.

16 August 2021

What Does Anaerobic Digestion Mean? Anaerobic Digestion Definition


The Biogas Process: What Does Anaerobic Digestion Mean?


Biogas, a green gas that can be improved to biomethane, digestate, a biofertiliser that can replace fossil-based counterparts, and bio-CO2 are all results of anaerobic digestion.

AD helps prevent climate change and restore soil health by collecting and converting methane-emitting organic matter into biogas and digestate.

It serves as a waste management technique in addition to creating bioproducts, reducing methane emissions at both the upstream and downstream stages of the process.




Biogas that has been converted to biomethane can be directly injected into the existing gas infrastructure, assisting in the decarbonization of the heat sector right away.

To decarbonize their operations, towns and large merchants throughout the world are already using biomethane-fueled buses, trash collection vehicles, and HGVs.

When an HGV is powered by biomethane instead of diesel, GHG emissions are reduced by over 85%.

Digestate, a biofertiliser produced as a byproduct of AD, aids in the replacement of fossil-based fertilisers in agriculture and the restoration of soils.

On-farm AD also aids farmers in producing their own energy to operate their equipment and facilities.

Biogas is a highly adaptable green gas that, if necessary, may be transformed to green hydrogen using existing technologies.

As a result, it can assist in meeting future energy demands in both the short and long term.

15 August 2021

Zoo Biogas – Why Every Zoo Should Have an Anaerobic Digestion Plant

Biogas Project at the Detroit Zoo to Reduce CO2 Emissions Make your own electricity Waste Reduction.

  

The Detroit Zoo has begun a win-win biogas project to reduce carbon emissions, generate electricity, and reduce waste that would otherwise be disposed of in landfills. Not only that, but they're taking things a step further by looking for crowd-sourced funding to purchase the anaerobic digestion plant. >

Anaerobic digestion plants are fantastic at producing biogas (mostly methane), which can be used to generate electricity (reducing the zoo's reliance on fossil fuels), saving money, and making them more "green" by lowering carbon dioxide emissions, which are thought to be the cause of global climate change. Zoos generate a lot of waste, and the animals produce organic waste in the form of excrement and debris in particular. 

Fortunately, what remains after recycling will be placed in big oxygen-depleted tanks, where natural organisms will turn the material into biogas, and the majority of what remains will be used as fertiliser. 




This is an excellent crowd-sourcing idea, as many people should think that this is a worthwhile initiative that will benefit their zoo in a variety of ways. 

 Many governments, including the United States government, have begun to recognise the advantages of anaerobic digestion as a waste-processing method that also generates renewable energy. 

 In fact, the USDA and the EPA collaborated last year to set a goal of encouraging the building of over 10,000 biogas facilities across the country over the next five years.

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31 July 2021

What Is A Food Waste Depackager and Separator - Depackaging Food Waste

What is a Food Waste Depackager and Separator?

A food waste depackager and separator is a mechanical device that opens inedible packaged food wrapping and bags and separates the packaging from the organic (food) and any other unwanted items and miscellaneous contaminants.

The organic (waste food) content is deposited in a separate output stream and the packaging (usually mostly plastic), is deposited in a separate receptacle (skip (dumpster) or container).


More advanced models will include automatic feed and discharge and output only clean plastic.

As grit sand and silt are often also found in food waste, especially in pre-consumer food waste, so separation of these may also be included.

Good practice demands that all this inedible food is, if possible, reused in accordance with the priorities of the waste hierarchy before applying depackaging and separation.

Even when as much food as possible is recovered for food banks and animal feed,

there still remains off-spec packaged food that originates from out-of-date, spoilt, mislabelled, and damaged products.

What is a food waste depackager?


 
The organic output is often digested in an anaerobic digestion facility to make renewable energy (preferred), or commercially composted.

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28 July 2021

What Is Thermal Hydrolysis? - What Is the Definition of Thermal Hydrolysis?


The introduction of thermal hydrolysis of municipal waste materials has enormous potential. This includes adding thermal hydrolysis into new AD plants as well as retrofitting existing units with the technology.

It provides a chance for Wastewater Treatment Works operators to raise the rate of solid hydrolysis, reduce volatile materials, and boost biogas production, for example.

At the same time, the more complete reaction ensures that the digestate can be used as a fertiliser. Increased solubilization of nitrogen (N) and phosphorus (P) improves the availability of these critical fertiliser components.

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27 June 2021

Pig Farm Biogas Plant Renewable Energy Output Increased 10%+ While Reducing Impact

Pig Farm Biogas Plant Output Increased

An innovative US Pig Farm Biogas Plant operator has raised its biogas output (while all else remains constant) by more than 10%, simply by installing more efficient pumps.

These days hardly a week goes by without another technology being offered for anaerobic digestion plant operators to raise their methane yield, generate more income, and simultaneously reduce their impact on emissions and their local environment.

Of all the ways to raise biogas yield, we think that this is often the most obvious to consider.

Here, by using the most biogas output efficient pumps the operator has none of the added complexity of other methods for increasing the energy output for a given feed mass.

The pioneering pig farm is in North Carolina. The business has led the way in its industry by embracing renewable technologies.

Soon after Butler Farms opened just over a quarter of a century ago, the owner quickly wanted to reduce its impact on the environment.




This culminated in the development of its own pig-manure-powered biogas lagoon operation in 2011.

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25 June 2021

Use of Biomethane Decarbonises Heavy Vehicles Now – Why Wait?

 "Biomethane the key option to decarbonise heavy vehicles immediately" says trade body in a new publication

·         Biomethane: Fuelling a Transport Revolution reviews how the anaerobic digestion and biogas industry can help decarbonise heavier modes of transport, such as trucks and buses, much sooner than electricity or hydrogen.



·         The Policy Briefing report by the Anaerobic Digestion and Bioresources Association (ADBA) details the GHG emissions issues facing the UK transport sector and explores the solutions available for heavy goods and public transport vehicles, which alone generate 20% of current emissions per year.

·         Rapid deployment of biomethane for HGVs could reduce GHG emissions by 38% over the next 10 years. Current technological barriers to powering heavy vehicles with electricity or hydrogen mean these future fuels could only cut emissions by 6% over the same period.

·         Major fleet operators are already making the transition to biomethane trucks and buses.

·         Fuelling HGVs with biomethane can cut well-to-wheel emissions by 80% per km driven and greatly improve air quality.

·         As well as decarbonising transport, biomethane can boost an entire economic sector, with ROI for hauliers achieved within two years of operation.

Earlier this month, the Anaerobic Digestion and Bioresources Association (ADBA) launched a Policy Briefing report demonstrating the crucial role biomethane could play in decarbonising transport in the UK in the short-term.



In the first of a series of Policy Briefing Events, the trade body presented Biomethane: Fuelling a Transport Revolution, which analyses the issues facing the UK transport sector and explores the options presented by electric vehicles, hydrogen and biomethane. 

The research highlights the value of biomethane in providing a green fuel alternative for heavy good and public transport vehicles - immediately. Trucks and buses currently generate 20% of the UK's greenhouse gas emissions from transport, which is itself the highest GHG emitting sector in the UK (27%).

" Transport is the most polluting sector and its GHG emissions levels have not changed over the past decade. ", explains Charlotte Morton, ADBA's Chief Executive.  "Biomethane is ready to be produced, ready to be used, and can decarbonise heavy vehicles transport here and now. At time when the pollution levels exceed WHO guidelines on 97% of UK roads, we can not afford to wait 15-20 years for electricity or hydrogen solutions to become ready."

A 2020 report by Element Energy shows that rapid deployment of biomethane for HGVs would reduce emissions by 38% over 10 years, whilst waiting for hydrogen/electric HGVs to be manufactured would deliver only 6% over the same period.

Biomethane is particularly appropriate for public transport, long-haul logistics and food distribution vehicles. Household names and cities such as ASDA, Royal Mail, Nottingham City Transport and Liverpool City Council  are already making the transition for their delivery fleets and buses.

The report reveals that fuelling HGVs with biomethane can cut well-to-wheel emissions by 80% per km driven, compared to diesel, and that the Return On Investment (ROI) for fleet operators is achieved within two years.

"Using biomethane as a transport fuel is an immediate “no regrets” option that not only contributes to significant cuts in GHG emissions from HGVs, but also stimulates continued growth in the UK biomethane sector." says Philip Fjeld, CEO of CNG-Fuels. "As the refuelling network expands across the UK, biomethane as a transport fuel will become a win-win solution that is available to all hauliers and that continues to reduce the carbon footprint of a sector that has always been seen as very hard to decarbonise".

With the launch of the CNHi Biomethane tractor and small scale on-site methanation units, agriculture could be the next sector to benefit from the availability of biomethane to reduce its GHG emissions.  The biomethane sector is therefore primed to play an increasingly crucial role in helping the UK achieve its Net Zero targets by 2030.

DOWNLOAD THE ADBA POLICY BRIEFING
Biomethane: Fuelling the Transport Revolution

- ENDS -

Read full post at the AD Blog here.

19 June 2021

Digestate Separator Successfully Removes Plastic Packaging Waste from AD...


Digester Separator Removes Plastic

It removes bits of food waste packaging, and other unwanted materials from the food waste entering the digester, Until now, food waste derived compost has tended to contain so many flecks and chips of plastic that it has not only posed a danger to wildlife, It also looked really bad! Plastic bits and pieces in the fibrous compost from food waste digesters meant that in the past it was often no good at all. Now things are changing! Following an extensive trial at one of the largest waste processing plants in Europe, separators are now playing a crucial role in improving the quality of the digestate used for land fertilisation in accordance with PAS 110 regulations. RC 75 Separators from Borger were introduced, to see how they could deal with the significant challenges of hard-to-handle materials that come with food waste. For a full 12 months, the Separators were put through their paces; monitored for their whole life performance and durability in an application that makes tough demands on wearing parts. The result! 'They have enhanced the way that they filter out contaminants, separating solids 24/7 very effectively, reducing cost of any final product being sent to landfill.' David Brown, Managing Director of Borger UK 'Reduced costs'. David Brown, Managing Director of Borger UK Better for the environment.

18 June 2021

Anaerobic Digestion In California - Anaerobic Digestion Facilities


Anaerobic Digestion in California


CalRecycle is encouraging the development of green technologies, such as anaerobic digestion that divert organic waste from landfills, and comply with the states' Global Warming Solutions Act.

The act calls for the reduction of greenhouse gases and the use of low carbon fuels, and solid waste landfills are a significant source of greenhouse gases, due to the decomposition of organic material in landfills into methane.

Other legislation takes a statewide approach to decreasing California’s reliance on landfills with an ambitious goal of, 75 per cent recycling, composting or source reduction of solid waste by 2020.

Anaerobic digestion is being considered for many projects to divert organic materials, away from landfills and produce low carbon fuels.

There are Greenhouse Gas (GHG) Reduction Grants and Loans available.

The Greenhouse Gas Reduction Fund (GGRF) was established in 2012 and receives Cap-and-Trade auction proceeds appropriated by the Legislature and Governor for qualifying projects.

CalRecycle established the GHG Reduction Grant and Loan Program, to fund capital investments in anaerobic digesters, and other facilities that will reduce GHG emissions by diverting organics from the landfill.

Based upon information at CalRecycle, Compostable Materials Community Outreach page.

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13 June 2021

Dairy Digesters - Why Anaerobic Digestion is Used to Solve Manure Problems

Anaerobic Digestion For Dairy Manure


Why Anaerobic Digestion is Increasingly Used to Solve Problems with Manure in Modern US Dairy Farming Practice

 
Dairy Farm manure is a major waste in the dairy industry, and it can be difficult to handle, store, and dispose of. 
Dairy manure creates smell, ammonia, and greenhouse gases that contribute to global warming when it is not properly managed. Anaerobic digestion is a method of producing renewable energy while also reducing the environmental implications of inadequate dairy waste management. 
Before being sprayed onto fields, this manure slurry is frequently held in holding tanks. 
During prolonged wet weather tanks may become full, while spreading on saturated farmland leads to run-off and pollution.
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05 June 2021

China Fires Up Artificial Sun - Is Artificial Sun a Climate Change Solver?


China has successfully powered an artificial sun to 120 million degrees Celsius.

Indeed, China's artificial sun has set a new world record FOR the moment! They did it for just 101 seconds.

It mimics the process of nuclear fusion that occurs in the sun and stars.

Nuclear fusion and nuclear fission are chemical events that occur within an atom's nucleus.

Nuclear fusion produces a greater amount of energy than nuclear fission.

Nuclear fusion, on the other hand, is seen in stars like the sun, where nuclear fission events are not as common.




Abundant NUCLEAR fusion power really would go a long way to help fight climate change.

It could become a major tool to help avert runaway global warming.

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14 May 2021

Hydrolysis Of Sewage Sludge as Pretreatment Before Anaerobic Digestion


The hydrolysis of sewage sludge and the subsequent anaerobic digestion of the hydrolysed sludge output is becoming increasingly common at many sewage works.

In recent years, as Net-Zero 2050 targets for decarbonization begin to bite, the hydrolysis of sewage sludge and subsequent anaerobic digestion is being seen as a winning combination.

Safe and cost-effective energy extraction and disposal of sewage sludge are, without doubt, some of the most pressing challenges now facing the wastewater industry.

The high cost of energy means that some disposal routes such as incineration are less viable, and others have ceased to be useful due to concerns about their sustainability.

Thermal hydrolysis provides: 

- quicker and better quality biogas production,
- reduced ultimate sludge output and
- surplus energy to power not only the hydrolysis process but the wastewater works as well. 

Correction to "part"! At some super-efficient works, the WHOLE works are powered!




The value of this process has been appreciated for a long while by companies such as CAMBI, Veolia Water   Solutions & Technologies, and Monsal (Now part of GE), who each offer their own systems.

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13 May 2021

Biogas Plant Digestate Monitoring


Regular sampling and analysis of digestate to monitor the digestion process is essential for any commercial anaerobic digestion process. 

Interpreting the monitoring data collected and taking action to adjust the process is also, of course, essential! 

Data is no use if left sitting in a file! 

The data must be used in the right way. 

This is the key to reliable AD plant operation, even for easy to digest feedstocks with constant and seasonally non-varying feed supplies.

For variable feedstocks it's even more essential! 

In our website article we discuss anaerobic digestion plant digestate monitoring requirements in more detail. https://blog.anaerobic-digestion.com/digestate-monitoring-for-productive-biogas-plant-operation-and-low-downtime/

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03 May 2021

πŸ†• Petroleum Analysis Explained - Petroleum Chemical Quality Analysis.


Petroleum analysis involves assessing petroleum and its associated products to ensure the physical and chemical properties conform with the industry standards and market criteria.

Here is how petroleum analysis techniques can contribute to a sustainable future:

Crude oil, a naturally derived petroleum product, is often referred to when discussing assay data.

An assay is conducted to scrutinize the chemical and physical properties of crude oil by petroleum testing laboratories.

The characterization of petroleum is broken down into its constituent chemicals during the crude assay process.

In other words, companies can optimize petroleum through the assay data process.

Performing assay analysis helps to check the quality of petroleum while being refined.

Detailed hydrocarbon analysis is a separation procedure used by test laboratories that provides detailed molecular structure testing data for petroleum.

Thousands of hydrocarbons are present in crude oil and petroleum refinery products such as explosives, fuels, fibres, gas, rubbers, solvents, including industrial chemicals.

Hydrocarbon analytical techniques will help the petroleum industry to optimize production and adhere to regulatory requirements for sustainability and safety purposes.

Open the   link to learn more about Petroleum Analysis,   check out: https://wastersblog.com/100562/how-petroleum-analysis-sustainable-future/

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27 February 2021

πŸ†• Biogas Safety First and Safe Anaerobic Digestion (AD) Plant Operation


Renewable energy sources are much needed, but the presence of explosive gases and potentially also pathogens, and hazardous trace gases, means that observing biogas "Safety First" must rank above simply producing valuable energy.

This is a vital subject as biogas plants are increasing in numbers, more people are setting up new plants using bioresources, and the potential for harm to operatives is rising.

4 people died in the UK due to a biogas related explosion in the UK, in December 2020.

While operating these plants, all those responsible must make themselves aware of all the hazards pertaining to biogas plants.

Safe systems of working are set-up for all activities deemed to possess a safety risk.

At first, all existing staff and operatives must be trained in safe working practices. Subsequently, all new staff must be inducted into using the business's "Safety First" methods, which must be consistently adopted and implemented.

Click the   link to discover more about Biogas Safety First,   click: https://anaerobic-digestion.com/biogas-safety-first-and-the-safety-of-ad-plants/

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14 February 2021

The Must Have Biogas Tractor For All Seriously Sustainable Farms


A biogas tractor should be high on the list for all seriously sustainable farms where they also have their own biogas plant. It seems so obvious, to use homegrown renewable fuel to power that farm's tractors. But until recently was simply not done.

However, since 2012 some tractor manufacturers have been selling tractors for compressed renewable natural gas as fuel. This is good for the environmental sustainability of the farm.

It's the most efficient use of biogas, on the farm to provide the fuel to power the farm vehicles which frequently devour the most fuel on the farm. It was only in the summer of 2012, at the AD and Biogas (Now Bioenergy) Exhibition that the first biogas/ renewable methane fuelled tractor in production was placed on public view.

Read more here: Biogas-tractor-for-sustainable-farms

29 January 2021

EU Biomethane Boost - 8% of Gas by 2030 Should Be Biomethane - Report Says


Biomethane is made from biogas, by purifying the biogas from anaerobic digestion plants, and also using the biogas extracted from landfill sites. 

The grouping known as "Gas for Climate" is proposing that an 8% target be set for the biomethane content in all gas-network-distributed and transport-delivered gases by 2030 in their recent Policy Paper. 

Such a target, if implemented, would be very good for the AD/ biogas industry, and also help achieve the pledged Paris Accord decarbonization aims. 

To ensure an accelerated and consistent market ramp-up of green hydrogen and biomethane across the EU, the envisioned 11% target is supported by two binding sub-targets for green hydrogen and biomethane. At least 8% of the gas consumed in the EU by 2030 should be biomethane, and at least 3% should be green hydrogen. 

A binding target for renewable gas will help to reduce production costs of biomethane and green hydrogen during the 2020s, while in the long-term help to achieve the European decarbonisation targets at the lowest societal costs. 

Video based on information first published in a Gas for Climate, Press Release.

13 January 2021

πŸ†•Farm Anaerobic Digestion UK Anaerobic Digester Popular Video

The formation of  is a natural phenomenon that naturally occurs in wetland, manure stacks, and indeed in human and animal intestines.


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