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Biodegradability of nitrogenous compounds under anaerobic conditions and its estimation

机译:含氮化合物在厌氧条件下的生物降解能力及其估算

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The anaerobic biodegradability of 23 nitrogenous compounds, including nitrogenous heterocyclic compounds and aliphatic amines, was tested and assessed in integration. These nitrogenous compounds were classified into readily, partially, and poorly biodegradable compounds after calculation of their integrated assessment indices (IAIs), Rules for anaerobic biodegradation of these compounds were also drawn. Stepwise regression and backpropagation artificial neural network (BP-ANN) methods were applied to establish quantitative structure-biodegradability relationships (QSBRs) based on the assessment results. In QSBR models, three molecular structure descriptors—second-order molecular connectivity index (~2χ~(v3)χ_p~v), and energy of the highest occupied molecular orbital (EHOMO)—were included. After analysis of the sensitivity of variables in QSBR models, it was found that the key molecular structure descriptor affecting anaerobic biodegradability of nitrogenous compounds is EHOMO, which is directly proportional to the anaerobic biodegradability of nitrogenous compounds.
机译:综合测试并评估了23种含氮化合物的厌氧生物降解性,包括含氮杂环化合物和脂肪族胺。在计算了它们的综合评估指数(IAI)后,将这些含氮化合物分为容易,部分和难生物降解的化合物,还绘制了这些化合物的厌氧生物降解规则。应用逐步回归和反向传播人工神经网络(BP-ANN)方法,根据评估结果建立定量的结构-生物降解性关系(QSBR)。在QSBR模型中,包括了三个分子结构描述符-二阶分子连接指数(〜2χ〜(v3)χ_p〜v)和最高占据分子轨道的能量(EHOMO)。通过对QSBR模型中变量的敏感性进行分析后,发现影响含氮化合物厌氧生物降解性的关键分子结构描述符是EHOMO,它与含氮化合物的厌氧生物降解性成正比。

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