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Hydrocarbon Biofuel Production by Hydrocracking Process with Nickel-Iron Supported on HZSM-5 Catalyst

机译:通过在HZSM-5催化剂上负载镍铁加氢裂化方法的烃类生物燃料生产

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The production of hydrocarbon biofuel from coconut oil can substitute for fossil fuels to reduce the environmental issues. Hydrocracking is an effective method that can convert vegetable oil into biofuel using catalyst. In this experiment, nickel-iron was combined with HZSM-5 catalyst to produce biofuel. Hydrocracking of coconut oil was earned out in a batch reactor over Ni-Fe/HZSM-5 catalyst at a temperature of 350 and 400 °C for 2 h. Liquid hydrocarbon biofuel product was analyzed by gas chromatography-mass spectrometry (GC-MS). Based on GC-MS analysis, processing at the temperature of 350 °C produced sample containing 72.56% carboxylic acids. When the temperature increased to 400 °C, the carboxylic acids decreased rapidly from 72.56% to 24.83%. Analysis results suggested that increase of temperature promoted to the increase of desirable content, hydrocarbon compounds. At the same like, it also suppressed formation of undesirable compounds: acids, ketones, phenols, alcohols, and esters. Overall, synthesized catalyst in this study improved production of n-paraffin compounds such as (tridecane (n-C_(13)), tetradecane (n-C_(14)) and pentadecane (n-C_(15))) as high 71.85%.
机译:从椰子油中生产碳氢化合物生物燃料可以替代化石燃料以减少环境问题。加氢裂化是一种有效的方法,可以使用催化剂将植物油转化为生物燃料。在该实验中,镍铁与HzSM-5催化剂联合以产生生物燃料。椰子油的加氢裂化在批量反应器中以350和400℃的温度在350和400℃的催化剂上赢得2小时。通过气相色谱 - 质谱(GC-MS)分析液态烃生物燃料产物。基于GC-MS分析,在350℃的温度下加工,产生含有72.56%羧酸的样品。当温度升至400℃时,羧酸从72.56%迅速下降至24.83%。分析结果表明,促进了温度的增加,促进了所需含量的烃类化合物。与此同样相,它还抑制了不希望的化合物的形成:酸,酮,酚,醇和酯。总体而言,在该研究中,合成催化剂改善了N-石蜡化合物的生产,例如(环烷(N-C_(N-C_(13)),四癸烷(N-C_(14))和戊二烷(N-C_(15)))为高71.85 %。

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