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Simplex Lattice Approach to Optimize Yields of Light Oil Products from Catalytic Cracking of Bio-Oil with Mixed Catalysts

机译:用混合催化剂从生物油催化裂化优化轻质油产品产量的单纯形晶格方法

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Bio-oil is a potential product from the fast pyrolysis of biomass. However, it should be upgraded before being used in subsequent applications and corrosion prevention. In this work, crude bio-oil from fast pyrolysis of Jatropha curcas residues, which has many long-chain compounds, and a high content of carboxylic acid, was catalytically upgraded over mechanically mixed catalysts (normal ZSM-5 and Y-Re-16) in a fixed-bed reactor. The effects of the key parameters on the yields of light oil products were analyzed, including cracking temperature (350-500 degrees C), reaction time (15-60 min), catalyst loading (10-25%), and mixture ratio between Y-Re-16 and ZSM-5 (10-70%). Experimental test cases were based on a simplex lattice design. The gas chromatograph-mass spectrometer (GC-MS) analysis showed that the catalytic cracking of crude bio-oil using mixed catalysts resulted in the successful formation of short-chain acid methyls. The employed analytical fit of the experimental data gave R-2 and the adjusted R-2 of 0.902 and 0.843, respectively. The optimized operation conditions to produce aliphatic hydrocarbons from mechanically mixed catalysts were found to be at 400 degrees C, 15 min of reaction time, 15% of catalyst loading, and a mixture ratio of about 1:5.
机译:生物油是生物质快速溶解的潜在产品。但是,它应该在随后用于后续应用程序和防腐蚀之前升级。在这项工作中,来自麻风菌Curcas残基的粗生物油,其具有许多长链化合物和高含量的羧酸,在机械混合催化剂上催化升级(正常ZSM-5和Y-RE-16 )在固定床反应器中。分析了关键参数对轻油产品产量的影响,包括裂解温度(350-500℃),反应时间(15-60分钟),催化剂负载(10-25%)和Y之间的混合比-RE-16和ZSM-5(10-70%)。实验测试案例基于单纯的晶格设计。气相色谱仪质谱仪(GC-MS)分析表明,使用混合催化剂的粗生物油的催化裂化导致了短链酸甲基的成功形成。实验数据的使用的分析拟合分别产生了R-2和0.902和0.843的调节R-2。发现从机械混合催化剂生产脂族烃的优化操作条件为400℃,反应时间15分钟,催化剂负载的15%,混合比为约1:5。

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