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Decomposition of reaction networks: the initial phase of the permanganate/oxalic acid reaction

机译:反应网络分解:高锰酸盐/草酸反应的初始阶段

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The determination of all chemical reaction networks composed of elementary reactions for a given net chemical reaction is one of the fundamental problems in chemistry, since the decomposition elucidates the reaction mechanism. It is essential in a wide range of applications: from the derivation of rate laws in physical chemistry to the design of large-scale reactors in process engineering where presence of unexpected side products can disturb operation. As an example we consider the well-known permanganate/oxalic acid reaction. We characterize all intermediate substances that can in principle act (auto-)catalytic, list all possible additional intermediate substances that would suffice to start the reaction without assuming presence of any autocatalyst. In particular, we propose for the first time a minimal network in which the well-known autocatalyst Mn2+ is produced. To derive our results we present an automatic method to determine whether a net chemical reaction can be explained by some reaction network with a given list of intermediate substances, how to generate all such networks, and how to suggest more intermediate substances if no network with the initially given substances exists.
机译:对于给定的净化学反应,由基本反应组成的所有化学反应网络的确定是化学中的基本问题之一,因为分解阐明了反应机理。它在广泛的应用中必不可少:从物理化学中的速率定律的推导到过程工程中大型反应器的设计,在这些过程中意外副产物的存在会干扰操作。例如,我们考虑众所周知的高锰酸盐/草酸反应。我们对原则上可以起到(自动)催化作用的所有中间物质进行了表征,列出了所有可能在不假定存在任何自动催化剂的情况下足以开始反应的其他中间物质。特别是,我们首次提出了一种最小网络,在该网络中会生成著名的自催化剂Mn 2 + 。为了得出我们的结果,我们提出了一种自动方法,用于确定是否可以通过具有给定中间物质列表的某些反应网络来解释净化学反应,如何生成所有此类网络以及如何在没有网络的情况下建议更多中间物质最初给定的物质存在。

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