Showing posts with label Focus. Show all posts
Showing posts with label Focus. Show all posts

Thursday, November 24, 2011

Biogas Upgrading Technologies Markets Analysed - for the Asia Pacific Region

Summary of a new report on Biogas Upgrading: Technologies and Global Markets with a Focus on Asia-Pacific :




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An overview – with a focus on Asia-Pacific – of biogas upgrading with discussion of the advantages of biogas compared to other forms of renewable energy, global greenhouse emissions, and the barriers to large-scale biogas plant deployment Analyses of market trends, with data from 2010, estimates for 2011, and projections of compound annual growth rates (CAGRs) through 2016 Coverage of the market by upgrading technology type, including pressure swing adsorption, water scrubbing, membrane technology, cryogenic upgrading, and in situ methane enrichment, with a breakdown of market values by technology type Evaluations of feed sources, including sewage sludge, biowaste, landfill gas, and energy crops Examination of the industry structure, with comprehensive company profiles.
Explore comprehensive Table of Contents of this report @ http://www.reportsnreports.com/reports/135858-biogas-upgrading-technologies-and-global-markets-focus-on-asia-pacific.html


STUDY GOALS AND OBJECTIVES


Renewable, sustainable energy generation will be the fastest-growing energy sector over the next two decades.  From 2010 to 2016, the market is projected to rise from $124 billion in 2010 to $217 billion in 2016.  Price volatility, supply concerns, and the environmental aspects of fossil fuels are expected to accelerate the pace of all non-fossil fuel development.


At this writing, the price of oil has hit highs of more than $100 per barrel on the world market, while U.S. drivers are paying nearly $4 per gallon of gasoline.  Renewable domestic energy supplies are seen as a means of overcoming these problems.  Biogas, a clean fuel derived primarily from waste materials, is an important alternative to conventional fossil energy.


This Biogas upgrading report provides an in-depth analysis of the world market for the biogas upgrading equipment used to transform crude biogas from waste materials and energy crops into sustainable energy.  Six types of upgrading systems are reviewed: water scrubbers, pressure swing adsorption systems, physical absorption and chemical absorption units, membrane systems, and units based on cryogenic technology


Four categories of materials are evaluated as feed sources for biomethane production: municipal wastewater (sewage sludge), agricultural wastes and energy crops (manure, agricultural residuals, and purpose-grown crops), biowaste (industrial organic wastes and the organic fraction of municipal solid waste), and landfill gas.  Two different end uses for the gas are also examined, injection to the natural gas grid and transportation fuel.


The biogas production and biogas upgrading markets are far better developed in Europe than in North America, so it is the main focus of this study.  Germany has, by far, the largest number of upgrading plants, most of which feed into the grid.  Sweden ranks second, with the bulk of its facilities purifying biogas for use as vehicle fuel.


So far, North America’s upgrading capacity is primarily based at landfills; little new capacity has been built over the past decade.  Although Asia has the largest number of biogas generating systems, the vast majority of these are small-scale plants that serve single dwellings or small communities.  In the rest of the world, biogas production is at different stages of development; however, gas upgrading is only just emerging.


REASONS FOR DOING THE STUDY


The need to responsibly dispose of mounting volumes of waste and the requirement to procure sustainable, secure energy supplies are two of the most important issues facing governments and industries around the globe.  The production of energy from a number of waste streams (i.e., municipal and domestic sewage, industrial wastewater, landfills, livestock manure, and agricultural residues) is a process that addresses both of these challenges.


In the current waste-to-energy market, anaerobic digestion offers a sustainable conversion process.  With the addition of a biogas refining step, the waste-derived gas can be used in all applications where conventional natural gas is used.  In this context, it is important to have an overview of the market and the drivers that support adoption of the best strategies by governments responsible for sustainable waste handling and energy supply solutions.  It is also important for industry players and technology developers to understand current as well as future trends in order to strategize their investments.


INTENDED AUDIENCE


This study intended to be useful to a broad audience.  Because they stand to see the greatest profit from expansion of the biogas industry, manufacturers and suppliers of biogas upgrading equipment and providers of upgrading technology would likely benefit the most from the data contained in this study.  Companies with plant components, ancillary equipment, and related products also might profit from the information collected here.


These include manufacturers and suppliers of anaerobic digesters and digester technology, biogas distributors, water and power
engineering firms, suppliers of power plants and electricity generating equipment, environmental management firms, companies specializing in anaerobic digestion equipment and other water and wastewater treatment equipment, companies developing additives (chemicals, enzymes, etc.) to enhance gas production yields and process efficiencies.


Other beneficiaries of biogas upgrading that might find this study of value are farmers, participants in the food industry, waste processors, transportation sector players, and project developers and investors.


SCOPE OF REPORT


The scope of this report is the global market for biogas upgrading equipment.  Market value and growth is evaluated for six different types of upgrading systems: water scrubbing, pressure swing adsorption, physical absorption, chemical absorption, membrane separation, and cryogenic technology.


The market is broken down by four different feed sources: municipal and domestic sewage, industrial wastewater, landfill gas, and agricultural wastes, a category that includes animal manures and crop residues.  Additionally, the market is examined according to end use, injection into the gas grid and transportation fuel.


A discussion of the market by world region includes overviews of North America, Europe, Asia, and the rest of the world, with individual profiles for countries most active in each region.  Present market status, biogas upgrading plant installations, and policies and incentives that support the industry are given for each country.  All market valuations and projections cover the years from 2000 to 2016.


Market figures are based on the revenues derived from equipment sales and are projected in 2011 constant dollars (i.e., inflation is not computed into the projection figures).  The revenue figures are derived from estimated revenues of the key players in a particular year.


A technology overview, a discussion on the structure of the industry, and brief profiles for major participating companies are included.  The machinery used to transform the gas to electricity: reciprocating and other types of gas engines, turbine and microturbines, and fuel cells, is not included in the analysis.


Inquire before buying or Request a Sample of the report 'Biogas Upgrading: Technologies and Global Markets (Focus on Asia-Pacific)' @ http://www.reportsnreports.com/reports/135858-biogas-upgrading
-technologies-and-global-markets-focus-on-asia-pacific.html


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Wednesday, February 23, 2011

Conergy sells biogas projects - Renewable Energy Focus

VERBIO biogas plant feeds into German grid


VERBIO Vereinigte Bioenergie AG’s biogas plant in Zörbig, Saxony-Anhalt, Germany, is now feeding into MITGAS Netz’ high pressure gas grid. Looking at biogas in Central Europe.




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Note: Video and article are not associated.


Biogas could be an important part of EU’s 2020 targets for renewable energy, and the EU project Sustainable and Innovative European Biogas Environment (SEBE) is now looking at technology and regulatory frameworks for biogas. Europe adopts report on biomass sustainability


The European Commission has adopted a report on sustainability requirements for the use of solid biomass and biogas in electricity, heating and cooling, concluding that more detailed legislation is not necessary at this stage. Growth in biogas predicted in Germany


About 760 biogas plants were connected to the German national electricity grid in 2009 - three times the number in 2007 - according to estimates by the German Biogas Association. This is around 100 times more than exist in the UK. Introduction to feed-in tariffs


The feed-in tariff is often held up as a ‘must’ for renewable energy to succeed. David Jacobs explores feed-in tariffs in all shapes and forms, and illustrates what should be taken into consideration when designing them.


11 February 2011


Conergy AG, based in Hamburg, Germany, announces that it has sold its biogas subsidy EUPRON to RES Projects, specialists in biomethane installation.


With this sale RES Projects will acquire a number of biogas ventures at different developmental levels amounting to more than 23 MW of energy being generated from biogas activities.


These new biogas projects are to be installed in the next few years and will be mainly located in Germany.


This article was featured in:
Bioenergy


View the original article here

Sunday, October 24, 2010

Prominent UK business group calls for more energy from waste

Launching a new report, Going to waste: Making the case for energy from waste, the leading business group highlighted the important role that energy from waste could play in a broad-based energy mix, which improves energy security.




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Technologies include using anaerobic digestion, where biological processes produce bio-gas from waste, and incineration. These provide consistent and reliable power supplies, unaffected by the weather, and are not imported.


With strong leadership from the Government on planning, financing and procurement, the UK could quadruple the proportion of energy it generates from waste from 1.5% to 6% by 2015.


And the CBI warned that unless urgent steps are taken to cut landfill use, the UK will face fines from the European Union of around £182.5m a year.


Neil Bentley, CBI Director of Business Environment, said:


“We cannot continue dumping rubbish in landfill sites. Waste that can’t be recycled could be used to heat homes and produce electricity, as well as improving our energy security.


“Across Europe, generating energy from waste is common and compatible with high levels of recycling.


“The Government needs to encourage the development of more anaerobic digestion and incineration plants, and tackle delays in the planning system.”


The report focuses on the family of energy from waste technologies, which can be broadly divided into biological and thermal types. Anaerobic digestion can be used on-site to produce heat and electricity, or injected into the National Grid after being purified.


Thermal treatments include technologies, such as gasification and pyrolysis, which involve heating waste to produce gas, as well as incineration. The CBI argues that non-recyclable waste should be incinerated, and emphasises that it is cleaner, more efficient, and environmentally sounder than burning fossil fuels or relying on landfill.


Among the CBI’s recommendations for the Government are:

Recognising the important role that energy from waste could play in reducing the UK’s landfill, securing energy supplies and increasing the proportion of renewable sources;Avoiding picking winners from the various energy from waste technologies and allowing the market to decide the most cost effective option;Reassuring the public that delivering more energy from waste is compatible with high levels of recycling and that new plants are clean and safe.

Echoing her support for the report, Gaynor Hartnell, Chief Executive of the UK Renewable Energy Association (REA) said,


“The Government has already said it wants to encourage Energy from Waste, and it would do well to heed the CBI’s recommendations. Most of the energy content of our household waste is renewable, yet often projects are dogged by overly complex and unnecessary regulation, which prevents them from getting the rewards they are entitled to for generating green energy. A healthy dose of pragmatism would be in everyone’s interests and would enable one of the cheapest forms of green energy to play its part in meeting the UK’s renewables target.”


View the original article here

Thursday, October 21, 2010

Brewery AD plant delivers renewable gas to grid - New Energy Focus

Tuesday 12 October 2010

Brewery AD plant delivers renewable gas to gridAdnams Bio Energy has injected the first renewable gas from brewery waste to the National Grid from its AD facility in Suffolk

An anaerobic digestion facility in Suffolk has become the first plant in the UK to produce renewable gas from brewery and local food waste for export to the National Grid, and only the second AD plant in the UK to inject biomethane into the gas network.

Adnams Bio Energy delivered the first biomethane late last week (October 8) from its AD plant in Southwold; just three days after Didcot sewage works in Oxfordshire celebrated being the first project to send renewable gas produced from sewage to the grid (see this NewEnergyFocus.com story).

In partnership with British Gas and National Grid, Adnams Bio Energy says it will generate up to 4.8 million kWh per year, which it claims is enough to heat around 235 family homes for a year.

In the future, the facility will also produce enough renewable gas to power the Adnams brewery and run its fleet of lorries while still leaving up to 60% of the output for injection into the National Grid.

Waitrose is the first business to sign up to supply waste to the facility and has committed to sending food waste from seven of its nearby branches, along with a John Lewis.

Commenting on the project, Mike Walters, recycling and waste operations manager for Waitrose and John Lewis, said: "We are delighted to be the first retailer to become involved with Adnams Bio Energy in this exciting project.

He added: "This project is unique as it produces renewable gas from brewery and food waste for injection into the national gas grid rather than to generate electricity."

The Adnams Bio Energy plant consists of three digesters, which are sealed vessels in which naturally-occurring bacteria act without oxygen to break down up to 12,500 tonnes of organic waste each year. The result is the production of renewable gas as well as a liquid organic fertiliser.

In addition, following an agreement with British Gas, Adnams Bio Energy has deployed solar thermal panels and will shortly install photovoltaic cells to generate renewable electricity for the plant.
The deal will ensure that all of the site, including the Adnams Distribution Centre, will be using renewable energy generated on-site with some surplus energy available for export.

Chief Executive of Adnams, Andy Wood, commented: "We are delighted that Adnams Bio Energy is located on the site of our eco-distribution centre. For a number of years now, Adnams has been investing in ways to reduce our impact on the environment. The reality of being able to convert our own brewing waste and local food waste to power Adnams' brewery and vehicles, as well as the wider community is very exciting.

"The industrial ecology cycle is completed when the fertiliser produced from the anaerobic digestion process can be used on farmland to grow barley for Adnams beer. This facility will have a major impact on the reduction of carbon emissions in the region and the production of renewable energy. The food waste would otherwise be destined for landfill, but processing it through the digester will save an estimated 50,000 tonnes of CO2 equivalents from landfill."

Construction of the AD plant concluded in July (see this NewEnergyFocus.com story).


View the original article here