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Determination of the Carbon-Bound Electron Composition of Microbial Cells and Metabolites by Dichromate Oxidation

机译:重铬酸盐氧化法测定微生物细胞和代谢产物的碳键电子组成

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摘要

The applicability of the silver sulfate-acid dichromate oxidation (chemical oxygen demand) method for determining the carbon-bound electron compositions of microbial cells, substrates, and metabolic by-products was evaluated. An approach for approximating the carbon-bound electron composition of microbial cells from CHN data is also presented. Ten aliphatic and aromatic carboxylic acids, 17 amino acids, and 8 sugars generally gave 96 to 101% (mainly ≥98%) recovery with 0.0625 N dichromate (digestion mixture of 10 ml of sample-10 ml of 0.25 N dichromate-20 ml of Ag2SO4-amended concentrated H2SO4). Recoveries of nicotinic acid (5%) and methionine (65%) were incomplete; arginine (125%) and two purine and three pyrimidine bases (105 to 120%) were overestimated. The validity of 0.0625 N dichromate for determining the carbon-bound electron composition of bacterial cells was supported by theoretical analysis of the carbon-bound electron composition of hypothetical bacterial cell material (defined monomer composition) and by the compatibility of elemental and dichromate oxidation-derived carbon-bound electron compositions of typical bacterial cells.
机译:评估了硫酸银-酸性重铬酸盐氧化(化学需氧量)方法用于确定微生物细胞,底物和代谢副产物碳结合电子组成的适用性。还提出了一种从CHN数据近似微生物细胞碳结合电子组成的方法。十种脂肪族和芳香族羧酸,17种氨基酸和8种糖通常用0.0625 N重铬酸盐(10毫升样品的样品混合物10毫升0.25 N重铬酸盐的20毫升溶液的消化混合物)回收率为96%至101%(主要≥98%)。 Ag2SO4修正的浓H2SO4)。烟酸(5%)和蛋氨酸(65%)的回收不完全;精氨酸(125%)和两个嘌呤和三个嘧啶碱基(105至120%)被高估了。假设细菌细胞材料(定义的单体组成)的碳结合电子组成的理论分析以及元素和重铬酸盐氧化衍生的相容性支持0.0625 N重铬酸盐用于确定细菌细胞的碳结合电子组成的有效性典型细菌细胞的碳结合电子组成。

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