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Investigation on fuel gas production from pulp and paper waste water impregnated coconut husk in fluidized bed gasifier via humidified air and CO_2 gasification

机译:流化床气化炉中纸浆和造纸废水浸渍椰子皮增湿空气和CO_2气化生产燃气的研究。

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The waste biomass has immense opportunities and plenty of potentials to be an efficient source of renewable energy. Initially, native unripe coconut husk (NCH) was used as raw material for fluidized bed gasification. Then NCH was treated with paper and pulp waste water to impregnate metals present in it for getting enhanced H-2 yield in fuel gas. Humidified air was used as gasifying medium, which served the purpose of introducing water vapour to take part in the gasification process. Then after, gasification medium was retrofitted with CO2, which enhanced both the higher heating value (HHV), and CO and H-2 content in the fuel gas. This research serves the dual benefit of energy generation and waste minimization. HHV of unripe coconut husk was investigated and found to be 20.95 MI/kg. H-2 yield and HHV from impregnated coconut husk (ICH) were obtained as 55.55 vol % and 5.24 MJ/Nm(3), respectively at HER 0.1 and gasification temperature of 850 degrees C in case of fluidized bed gasification. The GC-MS analysis of fuel oil obtained from ICH gasification was done to get the information about high yield of fuel gas as promise product of fluidized bed gasification. (C) 2019 Elsevier Ltd. All rights reserved.
机译:废物生物质具有巨大的机会,并且有很大的潜力成为高效的可再生能源。最初,天然未成熟的椰子壳(NCH)被用作流化床气化的原料。然后用纸和纸浆废水处理NCH,以浸渍其中存在的金属,以提高燃料气体中的H-2收率。湿空气用作气化介质,其目的是引入水蒸气以参与气化过程。然后,在气化介质中加入CO2,既提高了较高的热值(HHV),又提高了燃料气体中的CO和H-2含量。这项研究具有产生能源和减少废物的双重好处。调查了未成熟椰子壳的HHV,发现为20.95 MI / kg。在流化床气化的情况下,在HER 0.1和850℃的气化温度下,浸渍的椰子皮(ICH)的H-2收率和HHV分别为55.55 vol%和5.24 MJ / Nm(3)。进行了从ICH气化获得的燃料油的GC-MS分析,以获得有关流化床气化前景产品燃料气体高收率的信息。 (C)2019 Elsevier Ltd.保留所有权利。

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