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首页> 外文期刊>The Korean journal of chemical engineering >A comparative unit production cost prediction on isomerization by AlCl_(3) in comparison with HY(30) zeolite for the synthesis of tetrahydro tricyclopentadiene through a two-step process
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A comparative unit production cost prediction on isomerization by AlCl_(3) in comparison with HY(30) zeolite for the synthesis of tetrahydro tricyclopentadiene through a two-step process

机译:与HY(30)沸石通过两步工艺合成四氢三环戊二烯的HY(30)沸石对比较单位生产成本预测

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摘要

In our previous study, we verified that a two-step process was superior to the one-pot process for the manufacture of THTCPD, assuming the pilot-scale production aspect of a comparative economic analysis by using an engineering estimation method to predict the unit manufacturing cost. Among the processes of the two-step process, our study was intended to focus on the isomerization to produce the final THTCPD products with outstanding physical properties including a specific gravity, a heat of combustion, a viscosity and a freezing point. Although HY(30) was used as an isomerization catalyst in the previous study, the catalytic activity of HY(30) did not surpass that of AlCl3 in terms of isomerization conversion, possibly due to lower exo-THTCPD selectivity by Bronsted acid sites of HY(30) than that by Lewis acid sites of AlCl3. However, AlCl3 has some drawbacks of the impossibility for the catalyst regeneration during the manufacturing process due to the difficulty of the catalyst separation and recovery after isomerization, which causes environmental problems and biological toxicity issues due to its corrosivity. Therefore, our study concentrated on catalyst regeneration assuming the real production process in a pilot scale using AlCl3 in comparison with HY(30). Then, we investigated whether the isomerization catalyst AlCl3 or HY(30) was more commercially favorable through a comparative unit production cost prediction applying an engineering estimation in this study. In conclusion, the unit production cost for AlCl3 was lower than that for HY(30) with the fresh catalyst. Reversely, unit production costs for HY(30) with increase in catalysts regeneration number (N) were lower than those for AlCl3 due to the drastic decrease in the unit material cost of HY(30) unlikely with that of AlCl3 due to its non-reusability.
机译:在我们以前的研究中,我们验证了两步过程优于一种用于制造THTCPD的一锅工艺,假设通过使用工程估计方法来预测单元制造的比较经济分析的试验规模生产方面成本。在两步过程的过程中,我们的研究旨在专注于产生具有优异物理性质的异构化,包括特异性重力,燃烧热,粘度和冷冻点。尽管在先前的研究中使用HY(30)作为异构化催化剂,但HY(30)的催化活性在异构化转化方面没有超过ALCL3,可能是由于HY的刚性酸位点的exo-thtcpd选择性较低(30)比AlCl3的Lewis酸部位。然而,ALCL3由于异构化催化剂分离和恢复的难度,因此在制造过程中对催化剂再生产生的一些缺点是由于异构化且导致环境问题和生物毒性问题引起的催化剂的分离和腐蚀性。因此,我们的研究集中在催化剂再生上,假设使用ALCL3与HY(30)相比使用ALCL3的实际生产过程。然后,我们研究了异构化催化剂ALCL3或HY(30)是否通过对比较单位生产成本预测应用了本研究的工程估计的比较单位生产成本预测更有商业。总之,AlCl3的单位生产成本低于HY(30)与新鲜催化剂的生产成本。相反,由于HY(30)的单位材料成本的急剧下降,由于其非 - 而不是ALCL3的单位材料成本的急剧降低,因此催化剂再生数(N)的单位生产成本低于ALCL3的单位生产成本。由于其非可重用性。

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