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A review of the primary measures for tar elimination in biomass gasification processes

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TLDR
In this paper, a review of the research and development in this area are reviewed and cited in the present paper, and the concepts of two-stage gasification and secondary air injection in the gasifier are of prime importance.
Abstract
Tar formation is one of the major problems to deal with during biomass gasification. Tar condenses at reduced temperature, thus blocking and fouling process equipments such as engines and turbines. Considerable efforts have been directed on tar removal from fuel gas. Tar removal technologies can broadly be divided into two approaches; hot gas cleaning after the gasifier (secondary methods), and treatments inside the gasifier (primary methods). Although secondary methods are proven to be effective, treatments inside the gasifier are gaining much attention as these may eliminate the need for downstream cleanup. In primary treatment, the gasifier is optimized to produce a fuel gas with minimum tar concentration. The different approaches of primary treatment are (a) proper selection of operating parameters, (b) use of bed additive/catalyst, and (c) gasifier modifications. The operating parameters such as temperature, gasifying agent, equivalence ratio, residence time, etc. play an important role in formation and decomposition of tar. There is a potential of using some active bed additives such as dolomite, olivine, char, etc. inside the gasifier. Ni-based catalyst are reported to be very effective not only for tar reduction, but also for decreasing the amount of nitrogenous compounds such as ammonia. Also, reactor modification can improve the quality of the product gas. The concepts of two-stage gasification and secondary air injection in the gasifier are of prime importance. Some aspects of primary methods and the research and development in this area are reviewed and cited in the present paper.

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Citations
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Journal ArticleDOI

Nickel-based catalysts for tar reduction in biomass gasification.

TL;DR: In this article, several types of nickel-based catalysts reported for biomass gasification are reviewed in relation to their preparation, reaction conditions and stability for the biomass/tar gasification process.
Journal ArticleDOI

Scale-up of a downdraft gasifier system for commercial scale mobile power generation

TL;DR: In this paper, a 100 kg/h up-scaled downdraft gasifier system was designed, built and evaluated using switchgrass and eastern redcedar as feedstocks.
Journal ArticleDOI

Co-gasification of coal and wastes in a pilot-scale installation. 2: Effect of catalysts in syngas treatment to achieve sulphur and nitrogen compounds abatement

TL;DR: In this article, coal and waste were co-gasified in a pilot-scale installation, and syngas produced was hot treated in two catalytic fixed-bed reactors, in the first one, dolomite was used and in the second reactor, a nickel-based catalyst was employed.
Journal ArticleDOI

Lab-scale and pilot-scale two-stage gasification of biomass using active carbon for production of hydrogen-rich and low-tar producer gas

TL;DR: In this article, a two-stage air gasification of various types of biomass was performed to produce hydrogen-rich and low-tar gas for decentralized power generation, and the results showed that the gasification process could be applied to distributed power generation.
Journal ArticleDOI

Evaluation of the performance of distributed and centralized biomass technologies in rural China.

TL;DR: In this article, the authors evaluated the performance of three distributed alternatives and two centralized alternatives for residential biomass use in rural China, including centralized biogas and centralized gasifier systems.
References
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Journal ArticleDOI

Review of literature on catalysts for biomass gasification

TL;DR: In this article, an extensive literature review of the three main groups of catalysts, which have been evaluated for the elimination of these hydrocarbons, are dolomite, alkali metals and nickel.
Journal ArticleDOI

The technical and economic feasibility of biomass gasification for power generation

TL;DR: In this paper, the costs and technologies involved in an integrated system for the production of electricity from biomass in general and wood in particular are reviewed, and the main conclusions are that wood handling, storage, drying, comminution and screening are well established and present no uncertainties in operation and performance.
Book

World energy assessment : energy and the challenge of sustainability

TL;DR: In this paper, the authors discuss the linkage between energy and economic, social, environmental, and security issues, and analyzes the contradictions between current patterns of use and objectives in these areas.
Journal ArticleDOI

Steam-gasification of biomass in a fluidised-bed of olivine particles.

TL;DR: In this paper, the catalytic behavior of olivine, a common, naturally occurring mineral containing magnesium, iron oxides and silica, was investigated in a laboratory scale, biomass gasification unit.
Journal ArticleDOI

Biomass gasification with air in an atmospheric bubbling fluidized bed. Effect of six operational variables on the quality of the produced raw gas

TL;DR: In this paper, the equivalence ratio (from 0.20 to 0.45), temperatures of the gasifier bed (750−850 °C) and of its freeboard (500−600 °C), H/C ratio in the feed, use of secondary air (10% of the overall) in the freeboard, and addition (2−5 wt %) of a calcined dolomite mixed with the biomass used as the feedstock.
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