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Non-isothermal kinetic studies on co-processing of vacuum residue, plastics, coal and petrocrop

机译:真空残渣,塑料,煤炭和石油作物共处理的非等温动力学研究

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Co-processing of petroleum vacuum residue (BVR) with plastics (polypropylene, bakelite), coal (Samla coal), and biomass (bagasse, Calotropis procera) was carried out in a thermogravimetric analyzer (TGA) reaction system in nitrogen atmosphere with a view to comparing the process of the mixture with those of the individual components. Experiments were conducted at heating rate of 40℃/min, in the temperature range of 30-900℃. Based on the results obtained, three temperature regimes were selected for studying the non-isothermal kinetics of TGA of individual BVR, plastics, coal, biomass as well as of the co-processing of these with BVR, i.e., below 400℃, between 400 and 500℃ and above 500℃. The kinetic studies were performed using Coats and Redfern kinetic-modeling equations. The overall activation energies were 60.83 kJ/mole for petroleum residue, 99.41 kJ/mole for polypropylene, 21.08 kJ/mole for coal, 22.68 kJ/mole for C. procera and 31.9 kJ/mole for the mixture of these four materials. Thus, it has been found that there exists an overall synergy, when four materials were co-processed together. The overall orders and activation energies change during co-processing of two, three or four different macromolecules including petroleum residue as observed presently. The results obtained are being reported.
机译:石油真空残渣(BVR)与塑料(聚丙烯,电木),煤(Samla煤)和生物质(甘蔗渣,Calotropis procera)在氮气氛下的热重分析仪(TGA)反应系统中进行共处理。比较混合物的过程和各个成分的过程。实验是在30-900℃的温度范围内以40℃/ min的升温速率进行的。根据获得的结果,选择了三种温度模式来研究单个BVR,塑料,煤炭,生物质的TGA的非等温动力学以及它们与BVR的共处理,即在400℃以下,400至400 500℃及500℃以上。使用Coats和Redfern动力学模型方程式进行动力学研究。石油残余物的总活化能为60.83 kJ /摩尔,聚丙烯为99.41 kJ /摩尔,煤为21.08 kJ /摩尔,过程链霉菌为22.68 kJ /摩尔,这四种材料的混合物为31.9 kJ /摩尔。因此,已经发现当将四种材料一起共同加工时,存在总体协同作用。如目前观察到的,在共处理包括石油残留物的两种,三种或四种不同的大分子期间,总阶数和活化能发生变化。正在报告获得的结果。

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