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Comparative study of different waste biomass for energy application

机译:能源应用中不同废弃物生物质的比较研究

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Biomass is available in many varieties, consisting of crops as well as its residues from agriculture, forestry, and the agro-industry. These different biomass find their way as freely available fuel in rural areas but are also responsible for air pollution. Emissions from such solid fuel combustion to indoor, regional and global air pollution largely depend on fuel types, combustion device, fuel properties, fuel moisture, amount of air supply for combustion and also on climatic conditions. In both economic and environment point of view, gasification constitutes an attractive alternative for the use of biomass as a fuel, than the combustion process. A large number of studies have been reported on a variety of biomass and agriculture residues for their possible use as renewable fuels. Considering the area specific agriculture residues and biomass availability and related transportation cost, it is important to explore various local biomass for their suitability as a fuel. Maharashtra (India) is the mainstay for the agriculture and therefore, produces a significant amount of waste biomass. The aim of the present research work is to analyze different local biomass wastes for their proximate analysis and calorific value to assess their potential as fuel. The biomass explored include cotton waste, leaf, soybean waste, wheat straw, rice straw, coconut coir, forest residues, etc. mainly due to their abundance. The calorific value and the proximate analysis of the different components of the biomass helped in assessing its potential for utilization in different industries. It is observed that ash content of these biomass species is quite low, while the volatile matter content is high as compared to Indian Coal. This may be appropriate for briquetting and thus can be used as a domestic fuel in biomass based gasifier cook stoves. Utilizing these biomass species as fuel in improved cook-stove and domestic gasifier cook-stoves would be a perspective step in the rural energy and environmental sectors. This is important considering that the cleaner fuel like LPG is still not available in rural areas of many parts of the world.
机译:生物质有很多种,包括农作物以及其从农业,林业和农业到农业的残留物。这些不同的生物质在农村地区以可自由获取的燃料的方式找到,但也造成了空气污染。从这种固体燃料燃烧到室内,区域和全球空气污染的排放在很大程度上取决于燃料类型,燃烧装置,燃料特性,燃料水分,用于燃烧的空气供应量以及气候条件。从经济和环境的角度来看,与燃烧过程相比,气化是使用生物质作为燃料的有吸引力的替代方案。关于各种生物质和农业残留物的大量研究已经报道,它们有可能用作可再生燃料。考虑到特定地区的农业残余物和生物质的可获得性以及相关的运输成本,重要的是要探索各种当地生物质作为燃料的适用性。马哈拉施特拉邦(印度)是农业的中流tay柱,因此会产生大量的废物生物质。本研究工作的目的是分析不同的当地生物质废物,以便对其进行近距离分析和发热量,以评估其作为燃料的潜力。所探查的生物量主要包括棉花废料,叶片废料,大豆废料,麦秸,稻草,椰子椰壳,森林残留物等,主要是由于它们的丰富性。热值和对生物质不同成分的直接分析有助于评估其在不同行业中的利用潜力。可以看出,与印度煤炭相比,这些生物质物种的灰分含量非常低,而挥发性物质的含量却很高。这可能适合压块,因此可用作基于生物质的气化炉灶中的家用燃料。在改进的灶具和家用气化炉灶具中使用这些生物质作为燃料将是农村能源和环境领域的一个展望步骤。考虑到在世界许多地方的农村地区仍然没有像LPG这样的清洁燃料,这一点很重要。

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