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Full-scale co-firing trial tests of sawdust and bio-waste in pulverized coal-fired 230 t/h steam boilerZUWALA, Jaroslaw; SCIAZKO, Marek.Biomass & bioenergy. 2010, Vol 34, Num 8, pp 1165-1174, issn 0961-9534, 10 p.Article

Biomass co-firing options on the emission reduction and electricity generation costs in coal-fired power plantsBASU, Prabir; BUTLER, James; LEON, Mathias A et al.Renewable energy. 2011, Vol 36, Num 1, pp 282-288, issn 0960-1481, 7 p.Article

Co-firing based on biomass torrefaction in a pulverized coal boiler with aim of 100% fuel switchingJUN LI; BRZDEKIEWICZ, Artur; WEIHONG YANG et al.Applied energy. 2012, Vol 99, pp 344-354, issn 0306-2619, 11 p.Article

Hope and skepticism: Farmer and local community views on the socio-economic benefits of agricultural bioenergy : Socioeconomic Dimensions of US BioenergyROSSI, Alissa M; CLARE HINRICHS, C.Biomass & bioenergy. 2011, Vol 35, Num 4, pp 1418-1428, issn 0961-9534, 11 p.Article

Numerical investigation Greek lignite/cardoon co-firing in a tangentially fired furnaceKARAMPINIS, E; NIKOLOPOULOS, N; NIKOLOPOULOS, A et al.Applied energy. 2012, Vol 97, pp 514-524, issn 0306-2619, 11 p.Conference Paper

Design and operation assessment of an oxyfuel fluidized bed combustorROMEO, Luis M; DIEZ, Luis I; GUEDEA, Isabel et al.Experimental thermal and fluid science. 2011, Vol 35, Num 3, pp 477-484, issn 0894-1777, 8 p.Article

Life cycle assessment for co-firing semi-carbonized fuel manufactured using woody biomass with coal: A case study in the central area of Wakayama, JapanTABATA, Tomohiro; TORIKAI, Hitoshi; TSURUMAKI, Mineo et al.Renewable & sustainable energy review. 2011, Vol 15, Num 6, pp 2772-2778, issn 1364-0321, 7 p.Article

Fabrication and characterization of planar-type SOFC unit cells using the tape-casting/lamination/co-firing methodMYUNG, Jae-Ha; HYUN JUN KO; PARK, Hae-Gu et al.International journal of hydrogen energy. 2012, Vol 37, Num 1, pp 498-504, issn 0360-3199, 7 p.Article

Synthesis and characterization of NiO/GDC―GDC dual nano-composite powders for high-performance methane fueled solid oxide fuel cellsMYUNG, Jae-Ha; KO, Hyun-Jun; LEE, Jong-Jin et al.International journal of hydrogen energy. 2012, Vol 37, Num 15, pp 11351-11359, issn 0360-3199, 9 p.Article

Biomass co-firing trials on a down-fired utility boilerSTEER, Julian; MARSH, Richard; GRIFFITHS, Anthony et al.Energy conversion and management. 2013, Vol 66, pp 285-294, issn 0196-8904, 10 p.Article

Comparative life cycle assessment of biomass co-firing plants with carbon capture and storageSCHAKEL, Wouter; MEERMAN, Hans; TALAEI, Alireza et al.Applied energy. 2014, Vol 131, pp 441-467, issn 0306-2619, 27 p.Article

Co-firing of low- and high permittivity dielectric tapes for multifunctional low-temperature Co-fired ceramicsKO, W. J; CHOI, Y. J; PARK, J. H et al.Ferroelectrics (Print). 2006, Vol 333, pp 193-202, issn 0015-0193, 10 p.Conference Paper

Pyrolytic characteristics of blended coal and woody biomassMOGHTADERI, Behdad; MEESRI, Chatphol; WALL, Terry F et al.Fuel (Guildford). 2004, Vol 83, Num 6, pp 745-750, issn 0016-2361, 6 p.Conference Paper

A review on torrefied biomass pellets as a sustainable alternative to coal in power generationNUNES, L. J. R; MATIAS, J. C. O; CATALAO, J. P. S et al.Renewable & sustainable energy review. 2014, Vol 40, pp 153-160, issn 1364-0321, 8 p.Article

Process simulation of co-firing torrefied biomass in a 220 MWe coal-fired power plantJUN LI; XIAOLEI ZHANG; PAWLAK-KRUCZEK, Halina et al.Energy conversion and management. 2014, Vol 84, pp 503-511, issn 0196-8904, 9 p.Article

Simulation of co-firing coal and biomass in circulating fluidized bedsGUNGOR, Afsin.Energy conversion and management. 2013, Vol 65, pp 574-579, issn 0196-8904, 6 p.Article

Experimental investigation on the combustion and heat transfer characteristics of wide size biomass co-firing in 0.2 MW circulating fluidized bedPENG SUN; SHI'EN HUI; ZHENXING GAO et al.Applied thermal engineering. 2013, Vol 52, Num 2, pp 284-292, issn 1359-4311, 9 p.Article

Investigation on ash deposit formation during the co-firing of coal with agricultural residues in a large-scale laboratory furnaceGONGLIANG WANG; PINTO, Tiago; COSTA, Mário et al.Fuel (Guildford). 2014, Vol 117, pp 269-277, issn 0016-2361, 9 p., aArticle

Recent Progress in Gasification/ Pyrolysis Technologies for Biomass Conversion to EnergyDIGMAN, Brett; HYUN SOO JOO; KIM, Dong-Shik et al.Environmental progress & sustainable energy (Print). 2009, Vol 28, Num 1, pp 47-51, issn 1944-7442, 5 p.Article

Investigations into the pyrolytic behaviour of coal/biomass blends using thermogravimetric analysisVUTHALURU, H. B.Bioresource technology. 2004, Vol 92, Num 2, pp 187-195, issn 0960-8524, 9 p.Article

LTCC interconnects in microsystemsRUSU, Cristina; PERSSON, Katrin; OTTOSSON, Britta et al.Journal of micromechanics and microengineering (Print). 2006, Vol 16, Num 6, issn 0960-1317, S13-S18Conference Paper

Grinding and combustion characteristics of woody biomass for co-firing with coal in pulverised coal boilersTAMURA, Masato; WATANABE, Shinji; KOTAKE, Naoya et al.Fuel (Guildford). 2014, Vol 134, pp 544-553, issn 0016-2361, 10 p.Article

Economic impact of wood pellet co-firing in South and West AlabamaKEBEDE, Ellene; OJUMU, Gbenga; ADOZSSI, Edinam et al.Energy sustainable development. 2013, Vol 17, Num 3, pp 252-256, issn 0973-0826, 5 p.Article

An evaluation of the techno-economic potential of co-firing coal with woody biomass in thermal power plants in the south of BrazilSUSANNE HOFFMANN, Bettina; SZKLO, Alexandre; SCHAEFFER, Roberto et al.Biomass & bioenergy. 2012, Vol 45, pp 295-302, issn 0961-9534, 8 p.Article

The effect of assessment scale and metric selection on the greenhouse gas benefits of woody biomassGALIK, Christopher S; ABT, Robert C.Biomass & bioenergy. 2012, Vol 44, pp 1-7, issn 0961-9534, 7 p.Article

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