Simple mathematical equations for calculating oxidation number of organic carbons, number of transferred electrons, oxidative ratio, and mole of oxygen molecule in combustion reactions

IF 2.2 Q2 EDUCATION, SCIENTIFIC DISCIPLINES
Pong Kau Yuen, C. M. Lau
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引用次数: 1

Abstract

Abstract The oxidation number and number of transferred electrons are two paramount parameters in the study of redox reactions. Their calculations are both important and challenging. The oxidation number of organic carbons is used in organic chemistry, biochemistry, and applied chemistry. Combustion reaction is a classical type of redox reaction, in which the oxygen molecule (O2) is the oxidizing agent. In this article, the integration of three sets of relations is explored by using the method of balancing organic combustion: (i) number of transferred electrons and oxidation number of organic carbons, (ii) mole of oxygen molecule and number of transferred electrons, and (iii) oxidative ratio, oxidation number of organic carbons, and number of transferred electrons. This method can also establish the relationships among the stoichiometric coefficients, mole of oxygen molecule, oxidative ratio, number of transferred electrons, and oxidation number of organic carbons. Furthermore, the oxidation number of organic carbons and the number of transferred electrons of a given organic compound can be determined by the derived mathematical equations.
计算燃烧反应中有机碳氧化数、转移电子数、氧化比和氧分子摩尔数的简单数学方程
摘要氧化数和转移电子数是研究氧化还原反应的两个重要参数。他们的计算既重要又具有挑战性。有机碳的氧化值在有机化学、生物化学和应用化学中都有应用。燃烧反应是一种典型的氧化还原反应,其中氧分子(O2)是氧化剂。本文采用平衡有机燃烧的方法,探索了有机碳的转移电子数与氧化数、氧分子摩尔数与转移电子数、氧化比、有机碳的氧化数与转移电子数这三组关系的整合。该方法还可以建立化学计量系数、氧分子摩尔数、氧化比、转移电子数和有机碳氧化数之间的关系。此外,有机碳的氧化数和给定有机化合物的转移电子数可以由导出的数学方程确定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
3.10
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