Showing posts with label AD. Show all posts
Showing posts with label AD. Show all posts

Thursday, February 07, 2013

Anaerobic Digestion Gets PR Bonus from UK Meat Scandal Plus Permits Streamlined

Streamlined Anaerobic Digestion Plant permitsYou may well be amused to hear that the Anaerobic Digestion process, which has rightly been getting an increasingly favourable press recently worldwide, is now also picking up a PR publicity bonus from the UK meat scandal. Read the details in our first link below from the UK's Guardian Newspaper.

However, the anaerobic digestion industry is much more quietly taking on another role, which in the long-term will be much more important, which arises from the ability of AD Plants with suitable pasteurizing equipment, and suitably permitted to accept potentially infectious wastes is likely to increasingly take on the role of disposal route as the disposal method of choice for the carcasses of fallen animals.

Horsemeat scandal: discarded burgers to be converted into fuel

""The products withdrawn from stores will be sent to anaerobic digestion plants," the spokeswoman said. "This is the most efficient method of generating energy from waste, and part of our broader 'zero food waste to landfill' strategy. We are the UK's ...The Guardian"
http://www.guardian.co.uk/world/2013/jan/17/horsemeat-scandal-burgers-converted-fuel
In many ways, the quiet adoption of the AD process for fallen stock disposal on-farm rather than incineration or another dispoal method, after haulage to a suitable facility, would most likely have larger long-term benefits, as described in the following article:

Anaerobic digestion could be solution for fallen stock | Features ...
"RESEARCHERS at Harper Adams University have been awarded more than £150,000 to investigate how anaerobic digestion (AD) can be used as an on-farm ...www.farmersguardian.com/home/...could.../52777.article"
http://www.farmersguardian.com/home/renewables/anaerobic-digestion-could-be-solution-for-fallen-stock/52777.article
And, if that was not enough good news for biogas in the UK, the EA seems to be about to make the often criticized anaerobic digestion plant permitting system just a little bit easier to comply with:

Permit for Anaerobic Digestion Plants Published
"UK - New streamlined environmental permitting regulations for anaerobic digestion plants could be 'timely boost' for industry, says NNFCC.www.thebioenergysite.com/.../permit-for-anaerobic-digestion-..."
http://www.thebioenergysite.com/news/12254/permit-for-anaerobic-digestion-plants-published

So, this must surely be a good month for the AD industry in the UK.

Tell us whether you think this help with permitting will really assist you.

Sunday, October 14, 2012

New UK Environment Minister Favours Anaerobic Digestion and Shale Gas

At this Blog we see this as being superb news for the Anaerobic Digestion business area, especially after views revealed here on this blog site recently, to the effect that the coalition government did not have enough resolve to fund the wonderful options readily available to the nation from a more subsidized push from the government, which would certainly appear to be mainly what is needed for the numbers of UK AD Plants to rise swiftly.
anaerobic-digestion shale gas - Paterson
To read the full story on the new Environment Secretary's speech we recommend that you follow the following link:
Paterson pledges support for AD sector
"Environment Secretary Owen Paterson today pledged his support for the anaerobic digestion industry in his first major speech since joining the government front bench. Addressing delegates at an environmental panel session at the Conservative Party ...letsrecycle.com"
http://www.letsrecycle.com/news/latest-news/compost/paterson-pledges-support-for-ad-sector
Others have also been commenting on the Paterson speech and recent UK government moves in renewable energy as follows:
"Paterson warns of 'unintended consequences' of renewable energy. 9 October 2012 | By Alistair Driver. DEFRA Secretary Owen Paterson has warned of the 'unintended consequences' of some forms of renewable energy, including anaerobic digestion."
http://www.farmersguardian.com/home/renewables/paterson-warns-of-unintended-consequences-of-renewable-energy/50369.article
No doubt there are political dangers in unintended consequences of AD technology, but surely the same can be said about all forms of government subsidy?

Now read this which includes comments about Paterson being keen on Shale Gas. Wow! What a reaction that will cause!

Paterson goes for gas: from anaerobic digestion and shale

"Environment secretary Owen Paterson has called the concept of anaerobic digestion "tremendous" and suggested a different approach to subsidies for energy technologies in a speech yesterday in Birmingham. "We have a huge amount of food waste that ...Energy and Environmental Management (EAEM) Magazine"
http://www.eaem.co.uk/news/paterson-goes-gas-anaerobic-digestion-and-shale
We also recently wrote on shale gas (as in syngas from underground coal combustion) in our article at: http://gasification4energy.com/Gasification-and-Pyrolysis-Articles/Underground-Coal-Gasification-Recent-Developments-and-Fears.php .



 

Monday, May 18, 2009

Anaerobic Digestion Can Be Best Overall Including Being Cheapest Overall

I guess that if you are a long term subscriber this headline will not be a surprise, but it is good to report that others think so too! Read on and find out why.

Processing food waste using anaerobic digestion technology is not necessarily as expensive in relative terms as some councils may think, consultancy Eunomia has claimed.

Speaking at the AD In the City event held in the UK by BiogenGreenfinch last month, senior consultant, Dr Adrian Gibbs, said that using AD to process food waste collected separately could work out cheaper than processing commingled food and green waste together in an in vessel composting plant.

Dr Gibbs explained that a report by Eunomia had found that sending food waste to AD and green waste to windrow composting cost UK councils £9.50 in gate fees per household per year, whereas sending commingled green and food waste to IVC cost £10.80 per household. He also said that just collecting food waste alone and sending it to AD cost £5.50 per household over the same period.

Dr Gibbs admitted that average gate fees for AD facilities - around £55 per tonne - were higher than IVC - which, he quoted as £45 per tonne, but said that "overall AD is cheaper". He also claimed that separate food waste collections also worked out cheaper than mixed collections and said that the number of local authorities which were implementing separate collections had risen from 11 in 2007 to 54 in 2008.

He told the London borough council officers who attended the event, which was set up to explore ways to introduce more AD capacity in London, that - "AD is better than IVC, it's the way to go and it is the one I would watch."

Anaerobic digestion treats food waste in an oxygen-free environment and produces biogas - which can be converted into energy - and a nutrient rich digestate which can be used on farmland. It also has the potential to provide combined heat and power (CHP).

IVC treats green and/or food waste and sometimes card in an enclosed but oxygenated and aerated environment and produces compost. It does not generate energy.

A number of strengths and weaknesses were highlighted for both separate and mixed collection. The plus side to mixed collections included - only needing to use one vehicle, only one bin required and quick and cheap collections.

However, Dr Gibbs explained that the seasons significantly affected what was collected, with garden waste levels dropping significantly in the winter, meaning that feedstock was inconsistent. He also said that the waste had to be processed in an enclosed environment due to Animal By-Product Regulations and this ups the cost of green waste.

Dr Gibbs also pointed out that green waste and food wastes required different collection frequencies. In addition, not all homes have gardens and collecting green and food waste together prevented councils charging for green waste collection. He claimed that separate AD collection reduced net costs for councils and allowed local authorities to charge for garden waste. He added that there is a large quantity of food waste which could potentially be picked up.

Dr Gibbs said AD had a number of strengths, including -

* Internationally proven technology
* Anaerobic Digestion has strong government support in the form of ROCs, a Task Group and feed-in tariffs
* It is a carbon positive technology
* Valuable outputs - biogas and digestate - and
* Leaves green waste to go through the cheaper windrow process.

He said Anaerobic Digestion's only weakness was the lack of facilities in the UK, adding - "AD wins hands-down for organic waste."

Wednesday, March 25, 2009

New - The Business Case for Anaerobic Digestion Page

I always like to see well written and new pages about AD. Here is an extract from a new web page which foots that bill, and below I have placed the contents list which those that subscribe to this blog will probably find interesting and well worth a visit:

A third of UK food goes to waste

Supermarkets are trialling anaerobic digestion as a way to generate energy and minimise their waste, and soon the biological process could have a far wider reaching application

With a spate of announcements on anaerobic digestion (AD) – from supermarkets using the biological process to handle their organic waste to the building of a national AD biogas network - something seems to be exercising decision makers. Are those bacteria that digest food waste at last going to be harnessed to their full potential? Dr Michael Gell examines the potential for AD to kick-start the building of an integrated biowaste infrastructure and to become one of the star technologies feeding energy into a renewables supergrid.

- What is Anaerobic Digestion?
- How does AD work?
- AD as a production process
- How widely is AD being used?
- Recognising the potential for AD
- Turning waste into useful products
- What are the environmental benefits of AD?
- Economic opportunities with AD
- What is driving the surge in interest in AD?
- Who are the key stakeholders for a national AD infrastructure?
- Carbon footprints in the food waste chain
- What are the supermarkets doing?
- Is AD commercially feasible?
- What are the prospects for a renewable gas network?
- What innovations might we expect with AD technology?

Go to ClimatChangeCorp for the full article.

Saturday, January 03, 2009

Reflecting On UK Anaerobic Digestion Policy to Start the New Year

The Christmas and New Year period allows a little more time than usual to reflect on the path that we are treading in the UK, and many other EU nations as well, toward greater utilisation of AD and organic waste in the quest to divert waste from landfill.

Also, by using biogas we will both be gaining renewable energy from an otherwise wasted resource, and avoiding the emission of methane which is such a potent greenhouse gas and we will at least move in the right direction toward sustainability.

Also, there are opportunities via carbon credit funding for EU companies to buy CERs from developing nations, thus enabling them to utilise AD and similar sustainable processes.

I think that what I am describing was in fact very well stated by Dr Stephen Etheridge*, as Chair of the UK Chartered Institution of Water and Environmental management, in his CIWEM Water & Environment Magazine, July/August 2006.

The following is an extract from that article:-


In the UK, around 31 million tonnes of MSW are produced annually. Approximately 30 percent of this waste is biodegradable. As a result of the EU Landfill Directive, the UK waste management authorities must divert the biodegradable fraction of MSW from landfill to other treatment options.
Based on experience from full-scale AD facilities for MSW in Europe, the use of AD technologies in the UK could contribute significantly to waste and renewable energy targets. In order to address this, Defra carried out a consultation in 2003 on the potential role of AD as a bioprocess that could meet energy and soil conditioner objectives for Best Value Performance Indicators (BVPI).

The consultation confirmed that if all the biodegradable MSW in the UK was used to generate biogas from digestion plants, approximately 2,420 million kilowatts of electricity could be produced each year.
As a result of the drive to combat climate change the emphasis in many parts of the world is now on mitigating emissions of methane to the atmosphere from existing treatment lagoons, landfills and other waste management systems. Methane is 23 times more potent than carbon dioxide as a greenhouse gas and for every tonne saved there is the potential to secure a tradable certificate of emissions reduction (CER) worth 23 tonnes of carbon dioxide, Under the Kyoto Protocol emissions reductions in developing nations can be purchased by developed countries as a way to cost-effectively reduce their obligation to reduce carbon emissions.

Since many developing countries are in warm climates where methane is readily generated, anaerobic digestion is an ideal technology to mitigate emissions and to capture the biogas for the production of a renewable energy. In addition, developed nations are keen to buy CERs to offset difficult targets which must be achieved at home.
In a recent study funded by the UK FCO (Foreign and Commonwealth Office) significant opportunities were identified for cattle, pig and agro-industrial operations in Mexico. To benefit from emissions trading opportunities each developing country must have a host nation office and a local infrastructure to certify emissions saved. These are now more prevalent and where they are not established many countries are in the process of doing so.
Although it is early days for CER trading, companies are already signing up potential clients in developing countries. Often the climate is naturally warm and with an appropriate low cost technology based on covered lagoons lined with flexible liner materials such as HDPE (high density polyethylene), digesters can be deployed to treat many agro-industrial wastes. The Asia BioGas Company has constructed nearly 50 anaerobic digesters in the last four to five years. One of these, based at a cassava factory, is thought to be the largest digester in the world.
Anaerobic Digestion is a unique technology which presents a range of opportunities to generate renewable energy, treat biodegradable MSW and reduce carbon emissions. It is precisely because the technology straddles different areas that incentives and support must be cross-sectoral. Whilst this has been implemented very successfully elsewhere in Europe, there are still challenges to be overcome in the UK if this technology is to achieve its true potential. ■
*Dr Stephen P Etheridge was the Chair of the CIWEM Scientific Group and a member of CIWEM's Waste Management Panel. He was co-Chair of the Environmental Protection Subject Group of the Institution of Chemical Engineers and Editor for Waste for the European Federation of Chemical Engineering. He has led a number of international projects in Asia and Europe in the environmental and renewable energy sectors and was recently appointed Chief Technology Officer for the Asia BioGas Company.

So, there it is, and we are now two and a half years further down this path and real progress has being made in the adoption of AD on a much wider scale than thought possible even in 2006.

Hopefully, 2009 will see energy prices returning to a viable level from recent lows of scarcely $50 per barrel, and the lending banks will return to being just that, and all before we see a derailment of this progress.

Wishing all our readers very best wishes for 2009.

(Oh! Yes! Before I forget! Please participate by commenting whenever possible on these posts throughout the New Year! We have over 400 subscribers to these posts. However, responses are so much appreciated otherwise your Blogger wonders whether anyone is actually reading these posts!)

Thursday, July 17, 2008

Report: Energy-from-Waste and Anaerobic Digestion (AD) is the Most Sustainable Option

Scottish waste policy set to lean towards CHP
04-07-2008

Two reports which will help form the "cornerstone" of the Scottish Environmental Protection Agency's policy on the thermal treatment of waste have both advocated the use of combined heat and power.

The studies, which were published by SEPA in tandem yesterday (July 3), come in the wake of the Scottish Government's opposition to larger Energy-from-Waste facilities (including anaerobic digestion) which it views as "inefficient" (see letsrecycle.com story), and, perhaps reflecting this, they both recommend "small-scale" rather than large plants.

"There is recognition that waste at any level has an inherent value and that value can be recovered through the generation of heat and power."

John Ferguson, SEPA

Research from both reports is currently being used to revise SEPA's Thermal Treatment Guidelines, which are set to be published in September 2008, and are described by the agency as "the cornerstone" of its policy on energy from waste.

"The guidelines will ensure that thermal treatment in Scotland enables the recovery of energy efficiently and does not impede waste prevention and recycling," SEPA explained.

While examining different aspects of waste management, both reports arrive at the conclusion that providing combined heat and power through Energy-from-Waste and anaerobic digestion (AD) is the most sustainable option available for various waste streams.

Energy

Published by consultancy AEA Environment and Energy, the first report, entitled 'The Evaluation of Energy from Biowaste Arisings and Forestry Residues in Scotland', assesses the energy value within the country's garden, kitchen and food waste, and related wastes.

And, it discovered that, of the 13.73 million tonnes of this kind of waste produced in Scotland each year, 9.634 million tonnes of it was "technically suitable to be processed in an anaerobic digestion or thermal treatment plant to obtain energy".

After analysing the energy content of these biowastes, the report calculated the potential for conversion to "useful" energy (heat or electricity) and, using combined heat and power as the preferred option, discovered that there is the potential for 2,285,200 megawatt hours (MWh) of electricity and 8,784,1000 MWh to be produced.

Plants

The report estimated that 741 AD and 228 thermal treatment plants, "allowing localised energy production and waste treatment", would be required to achieve this level of electricity and heat production, and also claimed that it would offset up to 5.6% of Scotland's total net greenhouse gas emissions.

While it did not examine economic issues, the report concluded that: "Given the substantial technical potential, even if a modest proportion of this were to be economic, energy from waste has a material contribution to make to Scotland's energy supply."