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Techno-Economic Analysis of Biocatalytic Processes for Production of Alkene Epoxides

机译:生产烯烃环氧化物生物催化工艺的技术经济分析

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A techno-economic analysis of two different bioprocesses was conducted, one for the conversion of propylene to propylene oxide (PO) and other for conversion of styrene to styrene epoxide (SO). The first process was a lipase-mediated chemo-enzymatic reaction, whereas the second one was a one-step enzymatic process using chloroperoxidase. The PO produced through the chemo-enzymatic process is a racemic product, whereas the latter process (based on chloroperoxidase) produces an enantio-pure product. The former process thus falls under the category of high-volume commodity chemical (PO); whereas the latter is a low-volume, high-value product (SO),A simulation of the process was conducted using the bioprocess engineering software SuperPro Designer v6.0 (Intelligen, Inc., Scotch Plains, NT) to determine the economic feasibility of the process The purpose of the exercise was to compare biocatalytic processes with existing chemical processes for production of alkene expoxides, The results show that further improvements are needed in improving biocatalyst stability to make these bioprocesses competitive with chemical processes.
机译:进行了两种不同的生物处理的技术经济分析,一个用于将丙烯转化为环氧丙烷(PO)和其他苯乙烯转化为苯乙烯环氧化物(SO)。第一个方法是脂肪酶介导的化学酶反应,而第二种方法是使用氯氧化酶的一步酶法。通过化学酶法生产的PO是一种外消旋产品,而后一种方法(基于氯氧化酶)产生肾纯产物。因此,前进程属于大批量商品化学(PO)的类别;虽然后者是低容量,高价值产品(SO),使用生物过程工程软件Superpro Designer V6.0(Intelligent,Inc.,Scotch Plains,NT)进行该过程的模拟来确定经济可行性该方法的目的是将生物催化过程与现有的化学方法进行比较,用于生产烯烃氧化烯烃,结果表明,需要进一步改进,以改善生物催化剂稳定性,使这些生物处理与化学过程竞争。

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