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 TERMINÉ 
... gas (GHG) emissions. Animal manure decomposition, which produces the extremely harmful GHG emissions methane and nitrous oxide, generated 78.7million tonnes of CO2 equivalent. The production of “biogas” offers the potential to eliminate exposure of decomposing organic matter such as manure to the air, thereby preventing methane and other gases from escaping into the atmosphere. Anaerobic digester ...
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 1

 TERMINÉ 
...g the negative impact of organic waste on the environment (odours, leaching, soil and water pollution and pathogens). AD avoids the release of CO2 and CH4 into the atmosphere, and moreover, the biogas produced can replace the use of fossil fuels with associated GHG reduction. The biogas can also be upgraded and additional environmental benefits can be obtained. Furthermore, the use of upgraded bio ...
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 5

 TERMINÉ 
The overall goal of the business innovation project is to commercialise Ductor’s proprietary nitrogen-control technology that has the potential to revolutionise the economics of biogas production. Our technology, based on cumulative R&D investment of over 4 m€, is capable to remove over 60% of nitrogen from several organic waste materials. This enables broader utilisation of high-nitrogen organic ...
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 1

 TERMINÉ 
...s located in 4 European countries: enhanced carbon extraction (pre-filtration), innovative nitrogen removal processes (advanced control, main-stream deammonification, duckweed reactor), power-to-gas (biogas upgrade) with smart grid approach, heat-to-power concepts (thermoelectric recovery in CHP unit, steam rankine cycle, heat storage concepts), and innovative process water treatment (nitritation, ...
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 16

 TERMINÉ 
...n by anaerobic digestion. This leads to improved utilization of the substrate and to a higher gas yield per tonne substrate inserted.After the pre-treatment the hydrolysate is digested in multi-stage biogas system. During anaerobic digestion H2S is formed out of sulphur containing compounds of the substrate by the anaerobic and facultative anaerobic bacteria. H2S is volatile and will be found in t ...
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 8

 TERMINÉ 
...ssible to produce storable bio-fuels. However. at present the energy production from biomass is often economically inefficient. e.g. through an insufficient utilization of waste heat in conventional biogas plants. The conventional production of biomass for biogas plants is often eco-inefficient. e.g. due to the dominance of maize and the increased risk of soil erosion and nutrient losses. The com ...
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 12

 TERMINÉ 
... Results The DEMO SOFC project constructed cell and stack production facilities in Lyngby, near Copenhagen, which can be run by methane and biogas. The demonstration plant showed that costs could be reduced, with a cost reduction per kilowatt (of production capacity) of up to 45%. A major part of the cost reduction was achieved through au ...
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 3

 TERMINÉ 
...ation biorefineries utilize less than 20% of the biomass feedstock for ethanol production, and major side-streams are produced such as pentose and lignin waste streams, that are respectively used for biogas and energy production. Converting the carbon from these waste streams into added-value products would increase the otherwise low profitability and improve the environmental benefits of the bior ...
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 9

 TERMINÉ 

Interpreting the irrecoverable microbiota in digestive ecosystems (MicroDE)

Date du début: 1 févr. 2014, Date de fin: 31 janv. 2019,

...ivities at the PI’s university on (1) polysaccharide converting enzymes in a biorefining context, (2) the impact of intestinal fiber deconstruction on satiety and (3) enhanced production of biogas. We expect to unravel novel aspects of the microbial ecology within these systems/processes. Furthermore, it is envisaged that novel isolates and enzymes will enter into live bioenergy projects.
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 1

 TERMINÉ 
European policy targets to increase the utilization of renewable energy sources. Biogas is one of the possible solutions for achieving these targets. Although agriculture and waste water are the main sources of biogas, landfills, collecting municipal waste, have huge potential, too. There are about 3000 landfills operating in the EU, accepting ~100 million tons of municipal waste per year. The po ...
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 7

 TERMINÉ 
...ttom-up management support approach on the local level as an element exemplifying the strategic approach. In parallel, investments to demonstrate conversion to advanced technical solutions related to biogas and drainage management will be implemented. These investment projects provide a concrete setting for critical review and dialogue of both past policy failures and the opportunities with more a ...
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 7

 TERMINÉ 
...WASTECH project successfully designed, constructed and tested a plant that is able to treat from the USW rest fraction with waste water from leachate treatment and recover energy in the form of biogas. This prototype was designed and built in a waste treatment plant managed by SECOMSA GESTIÓ, located in Botarell, Baix Camp (Tarragona), Spain. It was able to treat 500 l/day of waste and consisted ...
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 7

 TERMINÉ 
... of available technologies to reduce our impact on the environment. Volunteers in this department help to maintain the solar power and water pumping systems, and promote projects in areas such as biogas, solar energy and also water, wind and pedal-powered energy generating machines. Eco-construction and Maintenance is responsible for the upkeep of the project site and our buildings. A mix of tradi ...
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 5

 TERMINÉ 
...n the final product. This is causing a reduction in competiveness of EU agro-companies like Corn Valley, which currently have to direct fractions with high peaks of mycotoxins to animal feed or for biogas production, lowering the potential incomes from these by-products (over 30% of our total production).CORNposite wants to use the parts of the corn with the highest levels of mycotoxins to produce ...
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 2

 TERMINÉ 
... via nitrite (Anammox process), were to be studied as a more sustainable and cheaper alternative for the nitrogen removal from urban landfill leachates. Following this, thermal drying treatment using biogas as an energy source was to be carried out in order to retain the salt in the dry powder produced. Results ...
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 3

 TERMINÉ 
...ic and demand-driven nutrient management are valuable contributions towards resilient P-utilisation in the BSR.National scenarios with ideas on how to implement manure energy potential as biogas in the BSR were created. The results show the importance of both technology development and steady and well-directed support mechanisms in ensuring successful harnessing of manure energy. The different BSR ...
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 18

 TERMINÉ 
... of available technologies to reduce our impact on the environment. Volunteers in this department help to maintain the solar power and water pumping systems, and promote projects in areas such as biogas, solar energy and also water, wind and pedal-powered energy generating machines. Eco-construction and Maintenance is responsible for the upkeep of the project site and our buildings. A mix of tradi ...
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 4

 TERMINÉ 
...ation of a highly innovative, energy efficient and environmentally friendly power production system, mainly for decentralized power generation. The device is able to convert the fuel (LPG/Natural Gas/Biogas) into electrical and thermal power, with intermediate production of hydrogen, by means of a Proton Exchange Membrane (PEM) fuel cell. Hydrogen is produced on site, via the reformation of the fu ...
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 1

 TERMINÉ 

Dryer for energy recovery from sewage sludge and manure (LIFE SludgeisBiofuel)

Date du début: 1 juil. 2013, Date de fin: 30 juin 2016,

Background Biomass waste such as sewage sludge and manure can be processed to extract energy and phosphates. The first stage is the production of biogas through processes of anaerobic digestion - the breakdown of organic matter in the absence of oxygen. This leaves a sludge which still contains up to 50% of the available energy. This remaining energy can ...
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 1

 TERMINÉ 
... for nitrogen removal in wastewater treatment plants. The technique will offer: Removal efficiency above 85%; Energy use reductions of 50-60%; and Sludge yield increases of at least 20%, enhancing biogas production.CENIRELTA will also provide a comprehensive set of evidence on the attractiveness of the technique for full-scale application, including a process-control model, which will facilitat ...
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 2

 TERMINÉ 
... fraction and produce only LTC coal and gas. Results from the pilot plant indicated that emissions from the process were significantly lower than using conventional sludge digestion with subsequent biogas combustion. LTC coal resulting form the conversion of sewage sludge has a heating value (Hi) of about 10 MJ/kg, LTC oil 30 MJ/kg and LTC gas 10 MJ/kg. In total the calorific yield is higher th ...
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 4

 TERMINÉ 
..., requires a large footprint on-site and is hugely reliant on fossil fuels for aeration. The Lt-AD technology produces negligible sludge volumes, presents a compact design, requires no heat input or biogas recirculation, and produces effluent of urban wastewater directive (UWWD) standard (< 125 mg/L COD) without post-aeration. Comparing Lt-AD to conventional aerobic treatment of WW from a typical ...
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 3

 TERMINÉ 

Sustainable and Innovative European Biogas Environment (SEBE)

Date du début: 28 févr. 2010, Date de fin: 27 févr. 2013,

...it becomes clear that these dependencies will have tremendous pricing effects on our economies in the near future.Decentralized energy production from renewable resources - both, through the usage of biogas as fuel originator and as basic resource for feeding into the available gas grids - hold great and currently underdeveloped potential to reduce these dependencies and further foster Europe's le ...
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 14

 TERMINÉ 
Extended use of biogas for city buses will lower emissions, improve inner city air quality and strengthen the role of public transport in an efficient strategy to limit the impact from traffic on climate change. This three year project will stimulate cities and regions around the Baltic Sea to use biogas driven buses. The project will generate strategies and policies to introduce biogas as well as ...
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 12

 TERMINÉ 
... water. A temperature control system will adjust incoming water temperature to maintain the optimum required to promote maximum growth through the use of innovative water heater and cooler fuelled by biogas. The biogas will be generated from the Biomass (aquaculture faeces and unused food waste) filtered out from the outlet of the tank through the use of an innovative micro-scale anaerobic digesti ...
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 11

 TERMINÉ 

Biomethane Emilia-Romagna Regional system (BioMethER LIFE+)

Date du début: 1 oct. 2013, Date de fin: 31 mars 2018,

...ing) and for communities in terms of health and environmental threats. The economic and environmental costs of waste management could thus be offset through the production of biomethane from landfill biogas, or from the organic fraction of municipal solid waste. Objectives The project will set up two demonstration plants ...
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 5

 TERMINÉ 
Support for environmental protection by enhancing the use value of animal dejection as biogas and organic fertilizers. The specific objectives are: Identifying and diversifying the means to protect the environment by enhancing the use value of animal dejections; Increasing the commitment of local communities to fulfill the requirements of environmental protection by using manure for biogas produc ...
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 5

 TERMINÉ 

DEMOnstration of large SOFC system fed with biogas from WWTP (DEMOSOFC)

Date du début: 1 sept. 2015, Date de fin: 31 août 2020,

...s:• Energy Efficiency: high efficiency conversion devices represent elements of a higher efficiency portfolio• Renewable Energy: traditional RES (solar, wind, hydro) but also biogenous fuels (biogas, bio-syngas, bio-fuels) and new synthetic vectors (H2, synthetic NG,….)• Carbon capture and storage: mitigation of CO2 emissions (related to efficient energy conversion devices, and improved adoption o ...
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 6

 TERMINÉ 
...r biological treatment, in accordance with Directive 91/271/EEC, and the extraction of bio-based products such as high-quality sludge for compost; - A combined heat and power (CHP) unit for biogas conversion, comprising a biodesulpurisation process in order to remove hydrogen sulphide from biogas before its combustion in the engine; - A micro algae photo bioreactor, using carbon dioxide from the ...
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 5

 TERMINÉ 
...ms of nitrogen concentration will be minimised;The ratio between organic and total suspended solids in the excess sludge will be maximised by reducing solids retention time and the potential biogas production of the sludge will be improved; The project will assess the environmental and economic suitability of the system and its transferability to other WWTPs.
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 4

 TERMINÉ 

Multipurpose Applications by Thermodynamic Solar (MATS)

Date du début: 19 juil. 2011, Date de fin: 18 janv. 2015,

...ology based on molten salts as heat transfer fluid. This technology, referred as TREBIOS, allows combined heat and power production from solar source integrated with renewable fuels, such as biomass, biogas, industrial residues etc. by means of standardized units that provide high performances and limited cost.The objective of the proposal is the full scale demonstration of TREBIOS technology thro ...
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 11

 TERMINÉ 
...sters would help to lower the energy and operation costs of the plant, as well as significantly reducing the production of sludge and residues, and allowing a better valorisation of by-products and biogas.Thanks to the participation and exchange of personnel, the AD-WINE project partners will create an effective network of research and will collaborate in order to study this treatment system and d ...
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 5

 TERMINÉ 
...s to reduce the disposal of biodegradable waste in landfills (the main source of the methane they produce) and to push landfills to set up installations for the collection and recovery of the methane biogas that landfills generate. Objectives The project objectives centred on demonstrating the environmental and economic ...
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 8

 TERMINÉ 

SOFC CCHP WITH POLY-FUEL: OPERATION AND MAINTENANCE (SOFCOM)

Date du début: 1 nov. 2011, Date de fin: 30 avr. 2015,

...ocally distributed;• Plants with maximization of the energy recovery from the primary sources: maximum exergy efficiency of the whole system;• Flexibility in the use of local primary sources (biogas, bio-syngas, bio-fuels);• Easy and efficient CO2 separation from the plant exhaustAmong the technologies which could satisfy these criteria, a new technology is gaining more and more interest: energy s ...
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 12

 TERMINÉ 
The main objective of the project is to perform research and development activities in support of innovation in the field of biogas production. A major shift in the energy policy of both countries could only come from positive practices, together with best practices exchange. In order to reach this major objective, the partners will try to identify possible improvements of the biogas production in ...
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 4

 TERMINÉ 
...asures to achieve the objectives of the Kyoto Protocol. The main outputs of the project are the establishment of the biogas plant for processing biomass and producing energy from it, using the dry fermentation technology. The other output is a new solar power plant with a power of 27 kWp and 43 kWp and also, geothermal energy is used for energy purposes, which makes it possible for the community c ...
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 3

 TERMINÉ 
...on valorising FVW in three main target areas: food (by identifying and adding value to bioactive compounds extracted from FVW as multifunctional food ingredients); energy (by obtaining biogas through anaerobic digestion of industrial wastewater and organic solid wastes with high organic content); and agriculture (by obtaining mature organic soil amendments through an aerobic process that can be us ...
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 2

 TERMINÉ 
... agreements between the agricultural sector, energy producers and consumers. Specifically, the project set up demonstration energy farms in Emilia-Romagna to analyse the respective potential of the biogas, wood fibre and raw vegetable oil chains. Triticale, maize and sorghum were the biogas crops to be assessed; poplar and hemp for the wood/fibre chain; and rapeseed for the raw vegetable oil cha ...
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 6

 TERMINÉ 
...soil conditioner and phytochemical extracts for dietary supplements, cosmetics and pharmaceuticals were also done. Alternatives for the use of poor sea grass batches (as source for the production of biogas or BTL) have been examined. Comp.5: For disseminating the work within the project and its results, the partners participated in various meetings / conferences / trade fairs and exhibitions. One ...
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 10

 TERMINÉ 
...ies“. Specifically, this meant that they dealt with different methods for the production of alternative energy and its direct, indirect and interconnected usage and storage, the production of biogas for example, the degradation of water with electrical energy from sunlight and the storage of the obtained energy through degradation of water for the production of hydrogen with the aim to operate a f ...
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 2