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Conversion of Rice Straw to Bio-Fuel by Pyrolysis in Molten KCl-LiCl

机译:熔融KCl-LICL中热解的稻草对生物燃料的转化

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The objective of this study was to provide background date on rice straw pyrolysis in molten KCl(40mol%)-LiCl(60mol%). The effects of pyrolysis temperatures and sweep gas flow rates on the pyrolysis products yields and their chemical compositions were studied. The temperatures of pyrolysis and sweep gas flow rates were varied in the range of 380°C -540°C and 60L/h-260L/h, respectively. The compositions of gaseous products were analyzed by gas chromatography, and that of bio-oil obtained was investigated using gas chromatography-mass spectroscopic(GC-MS) technique. The yield of gaseous products increases with the increasing temperature, the char yield has demonstrated a downtrend, and the maximum yield of bio-oil is up to 15.43 wt.% at 460°C. The yield of char decreases with the sweep flow rate, the gaseous has a minimum yield at 100L/h, and the maximum yield of bio-oil is 15.43wt.% at 100L/h.The main gaseous products are CO, CO_2, H_2 and CH_4. Ketones and phenols are the main compounds in the bio-oil, the presence of molten inhabites their formation, and promotes the production of furfural. The bio-oil attained from pyrolysis is a potential source of renewable fuel and chemical feedstock.
机译:本研究的目的是提供熔融KCl(40mol%) - LiCl(60mol%)中的稻草热解的背景日期。研究了热解温度和扫气液流速对热解产物产量及其化学组成的影响。热解和扫描气体流速的温度分别在380℃-540℃和60L / H-260L / h的范围内变化。通过气相色谱分析气态产物的组合物,并使用气相色谱 - 质谱(GC-MS)技术研究获得的生物油。气态产物的产量随着温度的增加而增加,炭产率已经证明了下降趋势,并且生物油的最大收率高达15.43重量%。%在460℃下。用扫描流速的炭降低,气态具有100μl/ h的最小产率,生物油的最大收率为15.43wt。%在100L / h。主要气态产物是CO,CO_2,H_2和ch_4。酮和苯酚是生物油中的主要化合物,熔融栖息地的存在形成,促进糠醛的产生。从热解中获得的生物油是可再生燃料和化学原料的潜在来源。

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