An Overview of Biomass Gasification
The emission of greenhouse gases in the environment in order to satisfy the demand for electricity and fuel has raised severe climate change issues in various parts of the world. Thus, switching from conventional to renewable power sources has become necessary. Biomass a renewable energy source has the potential of becoming an alternative to the conventional energy sources. Gasification is a thermochemical process that converts waste biomass into a gaseous product known as a syngas and provides environment-friendly waste disposal. Synthesis gas produced through biomass gasification process can be further utilized for power generation or various thermal applications. This chapter discusses various conventional gasification systems existing for biomass gasification along with new technological development. It also delivers an assessment of the impacts of fundamental and interrelating process parameters such as reactor temperature, equivalence ratio, biomass particle size, bed material, etc. on gasification process. Further, a section on various producer gas cleaning technologies to make syngas suitable for power generation applications is also included in this chapter.
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Abbreviations
Bubbling fluidized bed gasifier
Circulating fluidized bed gasifier
Cold gas efficiency
Fluidized bed gasifier
Higher heating value
Lower heating vale
Steam to biomass
References
- Alauddin ZABZ, Lahijani P, Mohammadi M, Mohamed AR (2010) Gasification of lignocellulosic biomass in fluidized beds for renewable energy development: a review. Renew Sust Energ Rev 14:2852–2862 ArticleCASGoogle Scholar
- Andrés JM, Narros A, Rodríguez ME (2011) Behaviour of dolomite, olivine and alumina as primary catalysts in air-steam gasification of sewage sludge. Fuel 90:521–527 ArticleGoogle Scholar
- Aravind PV, Jong W (2012) Evaluation of high temperature gas cleaning options for biomass gasification product gas for solid oxide fuel cells. Prog Energy Combust Sci 38:737–764 ArticleCASGoogle Scholar
- Arena U, Zaccariello L, Mastellone ML (2009) Tar removal during the fluidized bed gasification of plastic waste. Waste Manag 29:783–791 ArticleCASGoogle Scholar
- Asadullah M (2014) Biomass gasification gas cleaning for downstream applications: a comparative critical review. Renew Sust Energ Rev 40:118–132 ArticleCASGoogle Scholar
- Aydar E, Gul S, Unlu N, Akgun F, Livatyali H (2014) Effect of the type of gasifying agent on gas composition in a bubbling fluidized bed reactor. J Energy Inst 87:35–42 ArticleCASGoogle Scholar
- Basu P (2006) Combustion and gasification in fluidized bed. Taylor & Francis Group LLC, Boca Raton BookGoogle Scholar
- Berrueco C, Montané D, Güell BM, Alamo G (2014) Effect of temperature and dolomite on tar formation during gasification of torrefied biomass in a pressurized fluidized bed. Energy 66:849–859 ArticleCASGoogle Scholar
- Bhave AG, Vyas DK, Patel JB (2008) A wet packed bed scrubber-based producer gas cooling–cleaning system. Renew Energy 33:1716–1720 ArticleCASGoogle Scholar
- Brandt P (2000) High tar reduction in a two-stage gasifier. Energy Fuel 14:816–819 ArticleCASGoogle Scholar
- Bridgewater AV (2003) Renewable fuels and chemicals by thermal processing of biomass. Chem Eng 91:87–102 ArticleGoogle Scholar
- Calvo LF, Gil MV, Otero M, Morán A, García AI (2012) Gasification of rice straw in a fluidized-bed gasifier for syngas application in close-coupled boiler-gasifier systems. Bioresour Technol 109:206–214 ArticleCASGoogle Scholar
- Campoy M, Gómez-Barea A, Villanueva AL, Ollero P (2008) Air-steam gasification of biomass in a fluidized bed under simulated autothermal and adiabatic conditions. Ind Eng Chem Res 47:5957–5965 ArticleCASGoogle Scholar
- Chen G, Andries J, Luo Z, Spliethoff H (2003) Biomass pyrolysis/gasification for product gas production: the overall investigation of parametric effects. Energy Convers Manag 44:1875–1884 ArticleCASGoogle Scholar
- Corella J, Toledo JM, Padilla R (2004) Olivine or dolomite as in-bed additive in biomass gasification with air in a fluidized bed: which is better? Energy Fuel 18:713–720 ArticleCASGoogle Scholar
- Coutoa N, Rouboaa A, Silvaa V, Monteiro E, Bouziane K (2013) Influence of the biomass gasification processes on the final composition of syngas. Energy Procedia 36:596–606 ArticleGoogle Scholar
- Cui H, Grace JR (2007) Fluidization of biomass particles: a review of experimental multiphase flow aspects. Chem Eng Sci 67:45–55 ArticleGoogle Scholar
- Detournay M, Hemati M, Andreux R (2011) Biomass steam gasification in fluidized bed of inert or catalytic particles: comparison between experimental results and thermodynamic equilibrium predictions. Powder Technol 208:558–567 ArticleCASGoogle Scholar
- Ergudenler A, Ghaly AE (1993) Agglomeration of alumina sand in a fluidized bed straw gasifier at elevated temperatures. Bioresour Technol 43:259–268 ArticleCASGoogle Scholar
- Foscolo P, Germana A, Jand N, Rapagnà S (2007) Design and cold model testing of a biomass gasifier consisting of two interconnected fluidized beds. Powder Technol 173:179–188 ArticleCASGoogle Scholar
- Franco C, Pinto F, Gulyurtlu I, Cabrita I (2003) The study of reactions influencing the biomass steam gasification process. Fuel 82:835–842 ArticleCASGoogle Scholar
- Gil J, Aznar MP, Caballero MA, Frances E, Corella J (1997) Biomass gasification in fluidized bed at pilot scale with steam-oxygen mixtures. Product distribution for very different operating conditions. Energy Fuel 11:1109–1118 ArticleCASGoogle Scholar
- Gil J, Corella J, Aznara MP, Caballero MA (1999) Biomass gasification in atmospheric and bubbling fluidized bed: effect of the type of gasifying agent on the product distribution. Biomass Bioenergy 17:389–403 ArticleCASGoogle Scholar
- Han J, Kim H (2008) The reduction and control technology of tar during biomass gasification/pyrolysis: an overview. Renew Sust Energ Rev 12:397–416 ArticleCASGoogle Scholar
- Hasler P, Buehler R., Nussbaumer T (1998) Evaluation of gas cleaning technologies for biomass gasification. Biomass for energy and industry, 10th European conference and technology exhibition, June 8–11 Wurzburg, Germany Google Scholar
- Heidenreich S, Nacken M, Hackel M, Schaub G (2008) Catalytic filter elements for combined particle separation and nitrogen oxides removal from gas streams. Powder Technol 180:86–90 ArticleCASGoogle Scholar
- Henriksen U, Ahrenfeldt J, Jensen TK, Gøbel B, Bentzen JD, Hindsgaul C, Sørensen LH (2006) The design, construction and operation of a 75 Kw two-stage gasifier. Energy 31:1542–1553 ArticleCASGoogle Scholar
- Hernández JJ, Aranda-Almansa G, Bula A (2010) Gasification of biomass wastes in an entrained flow gasifier: effect of the particle size and the residence time. Fuel Process Technol 91:681–692 ArticleGoogle Scholar
- Huang B, Chen H, Kuo J, Chang C, Wey M (2012) Catalytic upgrading of syngas from fluidized bed air gasification of sawdust. Bioresour Technol 110:670–675 ArticleCASGoogle Scholar
- Hurley S, Xu CC, Preto F, Shao Y, Li H, Wang J, Tourigny G (2012) Catalytic gasification of woody biomass in an air-blown fluidized-bed reactor using Canadian limonite iron ore as the bed material. Fuel 91:170–176 ArticleCASGoogle Scholar
- Karatas H, Olgun H, Akgun F (2012) Experimental results of gasification of waste tire with air & CO2, air & steam and steam in a bubbling fluidized bed gasifier. Fuel Process Technol 102:166–174 ArticleCASGoogle Scholar
- Karmakar MK, Datta AB (2011) Generation of hydrogen rich gas through fluidized bed gasification of biomass. Bioresour Technol 102:1907–1913 ArticleCASGoogle Scholar
- Karmakar MK, Mandal J, Haldar S, Chatterjee PK (2013) Investigation of fuel gas generation in a pilot scale fluidized bed auto-thermal gasifier using rice husk. Fuel 111:584–591 ArticleCASGoogle Scholar
- Kim YD, Yang CW, Kim BJ, Kim KS, Lee JW, Moon JH, Yang W, Yu TU, Lee UD (2013) Air-blown gasification of woody biomass in a bubbling fluidized bed gasifier. Appl Energy 112:414–420 ArticleCASGoogle Scholar
- Lahijani P, Najafpour GD, Zainal ZA, Mohammadi M (2011) Air gasification of palm empty fruit bunch in a fluidized bed gasifier using various bed materials. World Renewable Energy Congress, Linkoping BookGoogle Scholar
- Lim MT, Alimuddin Z (2008) Bubbling fluidized bed biomass gasification – performance, process findings and energy analysis. Renew Energy 33:2339–2343 ArticleCASGoogle Scholar
- Loha C, Chatterjee PK, Chattopadhyay H (2011a) Performance of fluidized bed steam gasification of biomass – modeling and experiment. Energy Convers Manag 52:1583–1588 ArticleCASGoogle Scholar
- Loha C, Chattopadhyay H, Chatterjee PK (2011b) Thermodynamic analysis of hydrogen rich synthetic gas generation from fluidized bed gasification of rice husk. Energy 36:4063–4071 ArticleCASGoogle Scholar
- LV PM, Xiong ZH, Chang J, Wu CZ, Chen Y, Zhu JX (2004) An experimental study on biomass air–steam gasification in a fluidized bed. Bioresour Technol 95:95–101 ArticleCASGoogle Scholar
- LV P, Yuan Z, Wu C, Ma L, Chen Y, Tsubaki N (2007) Bio-syngas production from biomass catalytic gasification. Energy Convers Manag 48:1132–1139 ArticleCASGoogle Scholar
- Mansaray KG, Ghalya AE, Al-Taweela AM, Hamdullahpur F, Ugursal VI (1999) Air gasification of rice husk in a dual distributor type fluidized bed gasifier. Biomass Bioenergy 17:315–332 ArticleCASGoogle Scholar
- Miccio F, Pirioua B, Ruoppoloa G, Chirone R (2009) Biomass gasification in a catalytic fluidized reactor with beds of different materials. Chem Eng J 154:369–374 ArticleCASGoogle Scholar
- Molino A, Chianese, S, Musmarra D (2015) Biomass gasification technology: the state of the art overview. J Energy Chem 16–52 Google Scholar
- Murakami T, Xu G, Suda T, Matsuzawa Y, Tani H, Fujimori T (2007) Some process fundamentals of biomass gasification in dual fluidized bed. Fuel 86:244–255 ArticleCASGoogle Scholar
- Parthasarathy P, Narayanan KS (2014) Hydrogen production from steam gasification of biomass: influence of process parameters on hydrogen yield: a review. Renew Energy 66:570–579 ArticleCASGoogle Scholar
- Pathak BS, Patel DV, Bhoi PR, Sharma AM, Vyas DK (2007) Design and development of sand bed filter for upgrading producer gas to IC engine quality fuel. Int Energ J 8:15–20 Google Scholar
- Pfeifer C, Koppatz S, Hofbauer H (2011) Steam gasification of various feedstocks at a dual fluidised bed gasifier: impacts of operation conditions and bed materials. Biomass Convers Bioref 1:39–53 ArticleCASGoogle Scholar
- Phuphuakrat T, Namioka T, Yoshikawa K (2010) Tar removal from biomass pyrolysis gas in two-step function of decomposition and adsorption. Appl Energy 87:2203–2211 ArticleCASGoogle Scholar
- Qin Y, Huang HF, Wu ZB, Feng J, Li W, Xie KC (2007) Characterization of tar from sawdust gasified in the pressurized fluidized bed. Biomass Bioenergy 31:243–249 ArticleCASGoogle Scholar
- Rapagna S, Janda N, Kiennemannb A, Foscoloa PU (2000) Steam-gasification of biomass in a fluidised-bed of olivine particles. Biomass Bioenergy 19:187–197 ArticleCASGoogle Scholar
- Rapagnà S, Gallucci K, Di Marcello M, Matt M, Nacken M, Heidenreich S, Foscolo PU (2010) Gas cleaning, gas conditioning and tar abatement by means of a catalytic filter candle in a biomass fluidized-bed gasifier. Bioresour Technol 101:7123–7130 ArticleGoogle Scholar
- Seville J, Chuah TG, Sibanda V, Knight P (2003) Gas cleaning at high temperatures using rigid ceramic filters. Adv Powder Technol 14:657–672 ArticleCASGoogle Scholar
- Shen L, Xiao J, Niklasson F, Johnsson F (2007) Biomass mixing in a fluidized bed biomass gasifier for hydrogen production. Chem Eng Sci 62:636–643 ArticleCASGoogle Scholar
- Shen L, Gao Y, Xiao J (2008) Simulation of hydrogen production from biomass gasification in interconnected fluidized beds. Biomass Bioenergy 32:120–127 ArticleCASGoogle Scholar
- Subbaiah BS, Murugan DK, Deenadayalan DB, Dhamodharan MI (2014) Gasification of biomass using fluidized bed. Int J Innov Res Sci Eng Technol 3:2319–8753 Google Scholar
- Subramanian P, Sampathrajan A, Venkatachalam P (2011) Fluidized bed gasification of select granular biomaterials. Bioresour Technol 102:1914–1920 ArticleCASGoogle Scholar
- Sun Y, Li R, Yang T, Kai X, He Y (2013) Gasification of biomass to hydrogen-rich gas in fluidized beds using porous medium as bed material. Int J Hydrogen Energy 38:14208–14213 ArticleCASGoogle Scholar
- Sutton D, Kelleher B, Ross JRH (2001) Review of literature on catalysts for biomass gasification. Fuel Process Technol 73:155–173 ArticleCASGoogle Scholar
- Thakkar M, Makwana JP, Mohanty P, Shah M, Singh V (2016) In bed catalytic tar reduction in the autothermal fluidized bed gasification of rice husk: extraction of silica, energy and cost analysis. Ind Crop Prod 87:324–332 ArticleCASGoogle Scholar
- Udomsirichakorn J, Basu P, Salam PA, Acharya B (2013) Effect of CaO on tar reforming to hydrogen enriched gas with in-process CO2 capture in a bubbling fluidized bed biomass steam gasifier. Int J Hydrogen Energy 38:14495–14504 ArticleCASGoogle Scholar
- Umeki K, Yamamoto K, Namioka T, Yoshikawa K (2010) High temperature steam-only gasification of woody biomass. Appl Energy 87:791–798 ArticleCASGoogle Scholar
- Virginie M, Adánez J, Courson C, de Diego LF, Labiano GF, Niznansky D, Kiennemann A, Gayán P, Abad A (2012) Effect of Fe-olivine on the tar content during biomass gasification in a dual fluidized bed. Appl Catal B Environ 121:214–222 ArticleGoogle Scholar
- Warnecke R (2000) Gasification of biomass: comparison of fixed bed and fluidized bed gasifier. Biomass Bioenergy 18:489–497 ArticleCASGoogle Scholar
- Weerachanchai P, Horio M, Tangsathitkulchai C (2009) Effects of gasifying conditions and bed materials on fluidized bed steam gasification of wood biomass. Bioresour Technol 100:1419–1427 ArticleCASGoogle Scholar
- Xiao R, Jin B, Zhou H, Zhong Z, Zhang M (2007) Air gasification of polypropylene plastic waste in fluidized bed gasifier. Energy Convers Manag 48:778–786 ArticleCASGoogle Scholar
- Yanga YB, Ryua C, Khora A, Yates NE, Sharifia VN, Swithenbank J (2005) Effect of fuel properties on biomass combustion. Part II. Modelling approach-identification of the controlling factors. Fuel 84:2116–2130 ArticleGoogle Scholar
- Zhang R, Brown RC, Suby A, Cummer K (2004) Catalytic destruction of tar in biomass derived producer gas. Energy Convers Manag 45:995–1014 ArticleCASGoogle Scholar
Author information
Authors and Affiliations
- Department of Mechanical Engineering, A.D. Patel Institute of Technology, Anand, Gujarat, India Maharshi Thakkar, Mitesh Shah & Vishal Singh
- Science and Engineering Research Board, Department of Science and Technology, Government of India, New Delhi, India Pravakar Mohanty
- Maharshi Thakkar