Please wait a minute...
Frontiers in Energy

ISSN 2095-1701

ISSN 2095-1698(Online)

CN 11-6017/TK

邮发代号 80-972

2019 Impact Factor: 2.657

Frontiers in Energy  2013, Vol. 7 Issue (3): 300-306   https://doi.org/10.1007/s11708-013-0247-9
  RESEARCH ARTICLE 本期目录
Experimental evaluation of a 35 kVA downdraft gasifier
Experimental evaluation of a 35 kVA downdraft gasifier
Ashok Jayawant Rao KECHE, Gaddale AMBA PRASAD RAO()
Department of Mechanical Engineering, National Institute of Technology, Warangal 506004 (AP), India
 全文: PDF(216 KB)   HTML
Abstract

Energy conversion systems based on biomass are particularly interesting because biomass utilization effectively closes the carbon cycle besides achieving self-sustainability. Biomass is particularly useful for highly populated and agriculture dependent economic nations like China and India. A compact and cost effective downdraft gasification system was developed. The present paper describes an experimental investigation on a biomass based gasifier engine system with a capacity of 35 kVA for power generation application. The problem of cooling and cleaning the hot and dirty gas from the gasifier has been satisfactorily solved by the effective cooling and filtration system. The gasifier developed is observed to be operation friendly. The quality of gas was evaluated in terms of its composition, conversion efficiency and total particulate matter. The maximum output of the power plant was obtained at the combustion zone temperature of 850oC. The experimental investigations showed that the percentage reduction in total particulate matter is 89.32%. The conversion efficiency of the biomass gasifier is found to be dependent on the operation conditions and fuel properties of the gasifier. The optimum value of equivalence ratio was observed to be 0.3134 for achieving the maximum gas conversion efficiency of the present gasifier configuration.

Key wordsbiomass    gasification    producer gas    equivalence ratio    total particulate matter    conversion efficiency of gasifier
收稿日期: 2012-11-08      出版日期: 2013-09-05
Corresponding Author(s): RAO Gaddale AMBA PRASAD,Email:gap@nitw.ac.in   
 引用本文:   
. Experimental evaluation of a 35 kVA downdraft gasifier[J]. Frontiers in Energy, 2013, 7(3): 300-306.
Ashok Jayawant Rao KECHE, Gaddale AMBA PRASAD RAO. Experimental evaluation of a 35 kVA downdraft gasifier. Front Energ, 2013, 7(3): 300-306.
 链接本文:  
https://academic.hep.com.cn/fie/CN/10.1007/s11708-013-0247-9
https://academic.hep.com.cn/fie/CN/Y2013/V7/I3/300
1 Demirbas A. Combustion characteristics of different biomass fuels. Progress in Energy and Combustion Science , 2004, 30(2): 219–230
doi: 10.1016/j.pecs.2003.10.004
2 Franco A, Giannini N. Perspectives for the use of biomass as fuel in combined cycle power plants. International Journal of Thermal Sciences , 2005, 44(2): 163–177
doi: 10.1016/j.ijthermalsci.2004.07.005
3 Sheth P N, Babu B V. Experimental studies on producer gas generation from wood waste in a downdraft biomass gasifier. Bioresource Technology , 2009, 100(12): 3127–3133
doi: 10.1016/j.biortech.2009.01.024
4 Zainal Z A, Rifau A, Quadir G A, Seetharamu K N. Experimental investigation of a downdraft biomass gasifier. Biomass and Bioenergy , 2002, 23(4): 283–289
doi: 10.1016/S0961-9534(02)00059-4
5 Williams R H, Larson E D. Biomass gasifier gas turbine power generating technology. Biomass and Bioenergy , 1996, 10(2,3): 149–166
6 Zhu Y H, Somasundaram S, Kemp J W. Energy and exergy analysis of gasifier-based coal-to-fuel systems. Journal of Energy Resources Technology , 2010, 132(2): 1–8
doi: 10.1115/1.4001572
7 Sharma A K. Experimental study on 75 kWth downdraft (biomass) gasifier system. Renewable Energy , 2009, 34(7): 1726–1733
doi: 10.1016/j.renene.2008.12.030
8 Ahmed I I, Gupta A K. Pyrolysis and gasification of food waste: syngas characteristics and char gasification kinetics. Applied Energy , 2010, 87(1): 101–108
doi: 10.1016/j.apenergy.2009.08.032
9 Laurence L C, Ashenafi D. Syngas treatment unit for small scale gasification—Application to IC engine gas quality requirement. Journal of Applied Fluid Mechanics , 2012, 5(11): 95–103
10 Jin H G, Li B Y, Feng Z B, Gao L, Han W. Integrated energy systems based on cascade utilization of energy. Frontiers of Energy and Power Engineering in China , 2007, 1(1): 16–31
doi: 10.1007/s11708-007-0003-0
11 Ni W D. China’s energy-challenges and strategies. Frontiers of Energy and Power Engineering in China , 2007, 1(1): 1–8
doi: 10.1007/s11708-007-0001-2
12 Wang Z, Yang J N, Li Z, Xiang Y. Syngas composition study. Frontiers of Energy and Power Engineering in China , 2009, 3(3): 369–372
doi: 10.1007/s11708-009-0044-7
13 Dogru M, Midilli A, Howarth C R. Gasification of sewage sludge using a throated downdraft gasifier and uncertainty analysis. Fuel Processing Technology , 2002, 75(1): 55–82
doi: 10.1016/S0378-3820(01)00234-X
14 McKendry P. Energy production from biomass (Part 3): Gasification technologies. Bioresource Technology , 2002, 83(1): 55–63
doi: 10.1016/S0960-8524(01)00120-1
15 Rogel A, Aguillon J. The 2D eulerian approach of entrained flow and temperature in a biomass stratified downdraft gasifier. American Journal of Applied Sciences , 2006, 3(10): 2068–2075
doi: 10.3844/ajassp.2006.2068.2075
16 Keche A J, Amba Prasad Rao G, Tated R G.Efficient utilization of biomass by gasification—a case study. International Journal of Advances in Thermal Sciences and Engineering , 2011, (2): 1-7
17 Mamphweli N S, Meyer E L. Evaluation of the conversion efficiency of the 180 Nm3/h johansson biomass gasifierTM. International Journal of Energy and Environment , 2010, 1(1): 113–120
18 Rajvanshi A K. Biomass gasification. In: Yogi G D2ed. Alternative Energy in Agriculture Vol. II . CRC Press Inc., 1986, 83-102
19 Ramzan N, Ashraf A, Naveed S, Malik A. Simulation of hybrid biomass gasification using Aspen plus, A comparative performance analysis for food, municipal solid and poultry waste. Biomass and Bioenergy , 2011, 35(9): 3962–3969
doi: 10.1016/j.biombioe.2011.06.005
21 Lv P M, Xiong Z H, Chang J, Wu C Z, Chen Y, Zhu J X. An experimental study on biomass air-steam gasification in a fluidized bed. Bioresource Technology , 2004, 95(1): 95–101
doi: 10.1016/j.biortech.2004.02.003
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed