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kw.\*:("Circulating fluidized bed combustion")

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Emission characteristics of co-combustion of a low calorie and high-sulfur-lignite coal and woodchips in a circulating fluidized bed combustor: Part 2. Effect of secondary air and its locationVAROL, Murat; ATIMTAY, Aysel T; OLGUN, Hayati et al.Fuel (Guildford). 2014, Vol 130, pp 1-9, issn 0016-2361, 9 p.Article

Characterization of ashes from a 100 kWth pilot-scale circulating fluidized bed with oxy-fuel combustionYINGHAI WU; CHUNBO WANG; YEWEN TAN et al.Applied energy. 2011, Vol 88, Num 9, pp 2940-2948, issn 0306-2619, 9 p.Article

Dynamic Tests and Results in an Oxy-fuel Circulating Fluidized Bed Combustor with Warm Flue Gas RecycleZHOU, Jian-Xin; ZHUANG SHAO; SI, Feng-Qi et al.Energy & fuels. 2014, Vol 28, Num 11-12, pp 7616-7620, issn 0887-0624, 5 p.Article

Ash behaviour in a CFB boiler during combustion of coal, peat or woodSKRIFVARS, B.-J; BACKMAN, R; HUPA, M et al.Fuel (Guildford). 1998, Vol 77, Num 1-2, pp 65-70, issn 0016-2361Article

Laboratory techniques for evaluating ash agglomeration potential in petroleum coke fired circulating fluidized bed combustorsCONN, R. E.Fuel processing technology. 1995, Vol 44, Num 1-3, pp 95-103, issn 0378-3820Article

Zellenmodell für die Auslegung zirkulierender Wirbelschichten = Mathematical modeling of a circulating fluidized bed combustorSCHANKO, D; BLUÊMEL, W; NEIDEL, W et al.Energietechnik. 1990, Vol 40, Num 5, pp 178-179, issn 0013-7421, 2 p.Article

Steigerung der Rechengenauigkeit bei der Wirbelschichtsimulation durch vom Rechner automatisch gebildete algebraische Ableitungen = Improving the accuracy of calculations in the simulmation of fluidized beds by algebraic derivation produced automatically by a computerEDELMANN, H; FETT, F. N.Chemieingenieurtechnik. 1990, Vol 62, Num 12, pp 1037-1039, issn 0009-286X, 3 p.Article

Vorhersage der Auswirkung der Holz-Mitverbrennung auf das Kesselverhalten des HKW Moabit = Prediction of the Moabit CFBC boiler performance of wood co-firingWENG, Martin; OMER, Adlan; EVARD, Michael et al.VGB powertech. 2014, Num 7, issn 1435-3199, 6-7, 82-86 [7 p.]Article

The efficiency of a bank for collecting fly ashKISLYAK, S. M; PUZYREV, E. M.Thermal engineering. 1997, Vol 44, Num 2, pp 161-163, issn 0040-6015Article

Sorbent behaviour in circulating fluidized bed combustors : Relevance of thermally induced fractures to particle size dependencePISUPATI, S. V; WASCO, R. S; MORRISON, J. L et al.Fuel (Guildford). 1996, Vol 75, Num 6, pp 759-768, issn 0016-2361Article

Reduction of N2O emissions from circulating fluidized bed combustors by injection of fuel gases and changing of coal feed pointSUZUKI, Y; MORITOMI, H; TANAKA, H et al.Energy conversion and management. 1996, Vol 37, Num 6-8, pp 1285-1290, issn 0196-8904Conference Paper

Clean burn coal fired power plant : new developments to face more stringent emission controls : L'électricité au service d'une industrie propreCOOPER, J. F.REE. Revue de l'électricité et de l'électronique. 1995, Num 3, issn 1265-6534, 6, 41-46 [7 p.]Article

Modeling sulfur retention in circulating fluidized bed combustorsXUANTIAN LI; ZHONGYANG LUO; MINGJIANG NI et al.Chemical engineering science. 1995, Vol 50, Num 14, pp 2235-2242, issn 0009-2509Article

Combustion characteristics of a circulating fluidized bed gas combustor for low calorific fuelKATAOKA, A; IHARA, T; MATSUDA, H et al.Kagaku kōgaku ronbunshū. 1995, Vol 21, Num 4, pp 793-799, issn 0386-216XArticle

Can fluid-bed take on p-c units in the 250- to 400-MW range?MAKANSI, J.Power. 1993, Vol 137, Num 9, pp 45-50, issn 0032-5929, 4 p.Article

Reconstructing boilers to burn coal in a circulating fluidized bedPUZYREV, E. M; STROPUS, V. V; SIDOROV, A. M et al.Thermal engineering. 1993, Vol 40, Num 9, pp 672-674, issn 0040-6015Article

Clean anti ecological coal combustion in the binary circulating fluidized bedNOWAK, W; MUSKAŁA, W.Energy (Oxford). 2001, Vol 26, Num 12, pp 1109-1120, issn 0360-5442Conference Paper

Capacitance probe measurement technique for local particle volume concentration in circulating fluidized bed combustorsHAGE, B; WERTHER, J; NARUKAWA, K et al.Journal of chemical engineering of Japan. 1996, Vol 29, Num 4, pp 594-602, issn 0021-9592Article

Radiative heat transfer in circulating fluidized bedsFANG, Z. H; GRACE, J. R; LIM, C. J et al.Journal of heat transfer. 1995, Vol 117, Num 4, pp 963-968, issn 0022-1481Article

A simplified technique for measurement of sorbent reactivity for use in circulating fluidized bed combustorsYONG CHI; PRABIR BASU; KEFA CEN et al.Fuel (Guildford). 1994, Vol 73, Num 1, pp 117-122, issn 0016-2361Article

Mathematical modeling of aerodynamics and physicochemical processes in the freeboard region of a circulating fluidized bed furnace. II: Interaction of particles (pseudoturbulence)ROKHMAN, B. B; SHRAIBER, A. A.Journal of engineering physics and thermophysics. 1994, Vol 66, Num 2, pp 141-148, issn 1062-0125Article

Modelling of circulating fluidized bed combustion of a charARENA, U; MALANDRINO, A; MASSIMILLA, L et al.Canadian journal of chemical engineering. 1991, Vol 69, Num 4, pp 860-868, issn 0008-4034Article

«Wirbel» auch im kleinen Kraftwerk: 2-10 MW-SWG-Anlagen mit Wirbelschichtfeuerung in modulartiger Bauweise = Fluidized bed combustion in small power plants tooBRANDES, H; HÖLTER, G; BECHER, U et al.Energie (München). 1989, Vol 41, Num 1-2, pp 44-51, issn 0013-7359, 7 p.Article

Cogenerate with cokeBAUER, A. M; BRUMMER, T. A; GOTTESMAN, L. G et al.Energy progress. 1987, Vol 7, Num 2, pp 88-94, issn 0278-4521Article

Anlagenkonzeption und Betriebserfahrungen von Kraftwerken mit Zirkulierender Wirbelschichtfeuerung (ZWS) = Conception de l'installation et les expériences faites lors du fonctionnement de centrales à foyer à lit fluidisé circulant (ZWS) = Design and experiences related to FBCC power plantsPLASS, L; DARADIMOS, G; BEISSWENGER, H et al.VGB Kraftwerkstechnik. 1986, Vol 66, Num 9, pp 801-807, issn 0372-5715Article

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