by Jim Lane (Biofuels Digest) ... 17 — count them, 17 — different pyrolytic technology centers in the UK ...
Tyre Pyrolysis: 2G BioPOWER
2G BioPOWER is developing a UK pyrolysis project to convert used tyres into partially renewable oil, steel and carbon black, which will be re-used in rubber goods manufacture.
...
Slow Pyrolysis at IBERS: ABERYSTWYTH UNIVERSITY
Pilot-scale batch slow-pyrolysis unit designed by Sustainable Energy Ltd. and installed and operated by IBERS, Aberystwyth University. The plant optimizes the production of solid char for a variety of end uses and operates flexibly over a full range of torrefaction/slow-pyrolysis temperatures and residence times. A fraction of the pyrolysis liquids produced are also condensed and collected as part of the process.
Waste- or Biomass-to-Energy Pyrolysis: ANERGY LTD
Anergy is a new emerging technology in waste or biomass to energy pyrolysis technology. It is focused on delivering turnkey 1-10MWe scale waste projects. It is based on the indirect fired kiln technology which has been developed by its sister company Ansac in Australia. ...
Pyrolysis at BERG and EBRI: ASTON UNIVERSITY
The focus of BERG’s research is fast pyrolysis which converts solid biomass into a valuable liquid energy carrier or fuel known as bio-oil that can be directly used for heat, power and chemicals; and can be readily upgraded into higher value 2nd generation biofuels and chemicals. ...
Biomass Pyrolysis Services: CONVERSION AND RESOURCE EVALUATION (CARE) LTD
Conversion And Resource Evaluation has been providing a wide range of services in biomass pyrolysis since 1996. Current activities in biomass pyrolysis include: Commissioning a 50 kg/h slow pyrolysis reactor for biochar production; High temperature syngas production from SRF/wood blends; ... .
End-of-life Plastic to Transport Fuel: CYNAR PLC
Cynar’s patented process uses a combination of pyrolysis and distillation, with no catalyst and no combustion. Cynar technology involves heating non-recycled plastic (resin numbers 2, 4, 5 and 6) in the absence of oxygen to around 400 to 500ºC. The resultant gas is then distilled to produce CynFuels™, consisting of approximately 70% diesel, 20% light oil and 10% kerosene. ...
Pure Pyrolysis Process: ENVIRONMENTAL POWER INTERNATIONAL
Environmental Power International has developed a unique, pure pyrolysis process suitable for a wide range of applications, across a broad range of sectors. ...The EPi technology delivers a low profile, small footprint, modular solution with the capability of offering a commercially viable solution for the treatment of biomass or the organic fraction of a wide range of waste materials.
Novel Processes for Upgraded Pyrolysis Oil: FUTURE BLENDS LTD
Future Blends Ltd. is developing low-carbon, low-cost biofuels and biochemicals technology solutions around a modified fast pyrolysis platform. The company was set up in 2010 under the auspices of the Carbon Trust’s Pyrolysis Challenge, which aimed to create and develop novel processes to produce upgraded pyrolysis oils from waste biomass (such as waste wood and municipal wastes) that could be blended into existing fossil fuels or replace fossil fuels at point of use.
...
Pyrolysis and Upgrading of Waste and Biomass: NEWCASTLE UNIVERSITY
Pyrolysis and related research activities in the School of Chemical Engineering & Advanced Materials, Newcastle University focus on ag and municipal waste. ...
Biochar: Phosphorus Recovery: Renewable Heat: PYREG (UK)
KPYREG (UK) is the UK base for Germany’s PYREG — aimed at marketing a reliable slow pyrolysis self-perpetuating thermal processes into the UK. Process 1 is Dry carbonisation – biomass to biochar; Process 2 is Staged combustion – recycling of municipal sewage sludge to recover phosphorus
Waste-to-Energy, Biomass Utilisation and Alternative Fuels: TORFTECH ENERGY LTD
Torftech Energy has a range of activities in waste-to-energy, biomass utilisation and alternative fuels. ...
Catalytic Pyrolysis of Plastic Waste to Fuel: UNIVERSITY COLLEGE LONDON
The Department of Chemical Engineering at University College London (UCL) is involved in the catalytic pyrolysis of plastic waste to fuel and has a bench scale fast catalytic pyrolysis rig. ...
Microwave Pyrolysis: UNIVERSITY OF CAMBRIDGE
The technologies investigated utilise the microwave absorbing properties of particulate carbon to act as an agent to transfer the microwave-generated heat within the particles to materials that would not otherwise be efficient microwave receptors. ...
Biochar Research Centre: UNIVERSITY OF EDINBURGH
The main objective of the centre is to study, assess and develop biochar as a means for climate change mitigation and adaptation (i.e. a valuable soil amendment and agricultural product). ... Due to the focus on biochar production, slow pyrolysis is the technology of choice.
University of Leeds: Biomass and Waste Pyrolysis and Modelling
The University of Leeds hosts the £4.2m EPSRC Centre for Doctoral Training in Bioenergy. Within the centre, biomass thermal treatment research includes: fundamental studies of the impact of inorganics and metals in thermal conversion of biomass; optimisation of fuel quality and yield of energy crops; alternative biomass resources including marine biomass and waste; biomass pre-treatment to improve fuel properties for various conversion processes, in particular: torrefaction; soot characterisation; the nitrogen cycle; co-firing coal and biomass; novel steam reforming; and hydrogen from biomass and wastes by pyrolysis-gasification.
Biomass Pyrolysis and Related Areas: UNIVERSITY OF SHEFFIELD
Pyrolysis activities are related to gasification studies and modelling of industrial combustion, pyrolysis and gasification processes. The pyrolysis part of these processes is essentially a slow process. The fuels considered are pure biomass or segregated municipal wastes. The University has a Slow pyrolysis facility, aPyrolysis tube apparatus, a Rotating kiln and a Shaft kiln.
Microwave Thermochemical Conversion: UNIVERSITY OF YORK
The Green Chemistry Centre of Excellence promotes the application of green and sustainable technologies particularly those that can be used to deliver products that meet consumer and legislation requirements. We have proven that microwave irradiation is an efficient method of biomass activation. ... READ MORE
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