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Combination of Woody and Grass type Biomass: Waste Management, Influence of Process Parameters, Yield of Bio-oil by Pyrolysis and its Chromatographic Characterization

机译:木质和草型生物量的组合:废物管理,过程参数的影响,通过热解及其色谱表征生物油的产量及其色谱特征

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Due to looming demand for fossil fuels and environmental concerns over global warming, extensive attention has been given on the development of renewable energy. Biomass materials are used since millennia for meeting myriad human needs including energy and chemicals. In this study, co-pyrolysis characteristics of woody and grass type agricultural wastes, namely Borassus flabellifer and Cymbopogon flexuosus were studied in a fixed bed reactor to evaluate their potential use as source of bio-oil. The effects of operating parameters such as temperature, particle size and heating rate were investigated. In this co-pyrolysis process, the maximum yield of pyrolysis bio-oil 47.10 wt% can been obtained under the pyrolysis temperature of 500 degrees C, 1.0 mm particle size and at the heating rate of 30 degrees C/min. The bio-oil product was analyzed for physical, elemental and chemical composition using Fourier transform infra-red (FTIR) spectroscopy and gas chromatography (GC).
机译:由于对化石燃料的迫在眉睫的需求和对全球变暖的环境担忧,对可再生能源的发展进行了广泛的关注。 自千年以来,使用生物质材料以满足无数人类需求,包括能源和化学品。 在本研究中,在固定床反应器中研究了木质和草地农业废物的共热分解特性,即Borassus fleablifer和Cymbopogon Flexuosus,以评估它们作为生物油来源的潜在用途。 研究了温度,粒度和加热速率等操作参数的影响。 在该共热分解过程中,在500℃,1.0mm粒径为30℃/ min的加热速率下,可以获得热解生物油47.10wt%的最大产率。 使用傅里叶变换红外线(FTIR)光谱和气相色谱(GC)分析生物油产品的物理,元素和化学成分。

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