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Supercritical Fenton Oxidation: A New Method for Total Organic Carbon Measurement

机译:超临界芬顿氧化:全面有机碳测量方法

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A new method for total organic carbon (TOC) measurement was established based on supercritical Fenton oxidation. The organic pollutants in wastewater were oxidized to carbon dioxide in supercritical water by Fenton reagents that was detected using a nondispersive infrared detector. The influence of temperature from 380 to 480 degrees C, oxidant coefficient from 1 to 20, pH from 2.2 to 5.2, and Fe2+ concentration from 0.2 to 0.8mgL(-1) was characterized; the optimal conditions were at 420 degrees C, an oxidant coefficient n5, a pH of 4.4, and Fe2+ concentration of 0.8mgL(-1). Using these parameters, the recovery of potassium hydrogen phthalate exceeded 98.2%. The introduction of Fenton oxidation based on supercritical water lowered the temperature and reduced the oxidant coefficient required for TOC determination.
机译:基于超临界芬顿氧化建立了一种全新的有机碳(TOC)测量方法。 废水中的有机污染物通过使用非渗透红外探测器检测的FENTON试剂在超临界水中氧化成二氧化碳。 将温度从380〜480℃,氧化剂系数从1〜20,pH从0.2-5.2和0.2-0.8mg(-1)的氧化系数为2.2-5.2的影响; 最佳条件为420℃,氧化剂系数N5,pH为4.4和Fe 2 +浓度为0.8mg1(-1)。 使用这些参数,邻苯二甲酸钾的回收率超过98.2%。 基于超临界水的芬顿氧化引入降低了TOC测定所需的氧化系数。

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