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Surface modification of sludge-derived carbon by phosphoric acid as new electrocatalyst for degradation of acetophenone

机译:磷酸作为新电催化剂的脂肪灭菌碳衍生碳的表面改性

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摘要

Sludge-derived carbons (SCs) were modified by different acids and used as electrocatalyst for electrochemical oxidation degradation of acetophenone. The results showed that SC treated with phosphoric acid (H3PO4-SC) exhibited the highest catalytic activity. The degradation efficiency of acetophenone reached 87.0%, and TOC removal was 72.3% under the conditions of 100 mg L-1 acetophenone, 90 mA cm(-2), and 180 min reaction time. The element content and chemical state of H3PO4-SC were measured by XRF, XRD, TGA, FTIR, and Mossbauer spectra, and the results indicated that ferric iron and phosphate on the surface of H3PO4-SC might play the main role in acetophenone degradation. The carbonyl-C-13-labeled acetophenone was first used to investigate the degradation of acetophenone in electrochemical oxidation by NMR.
机译:通过不同的酸改性污泥衍生的碳(SCS),并用作电化学氧化降解苯乙酮的电化学催化剂。 结果表明,用磷酸(H3PO4-SC)处理的SC表现出最高的催化活性。 苯乙酮的降解效率达到87.0%,并且在100mg L-1苯乙酮的条件下,TOC去除为72.3%,90mA cm(-2)和180min反应时间。 通过XRF,XRD,TGA,FTIR和Mossbauer光谱测量H3PO4-SC的元素含量和化学状态,结果表明,H3PO4-SC表面上的铁和磷酸盐可能在苯乙酮降解中发挥主要作用。 首先使用羰基-C-13标记的苯乙酮来研究通过NMR通过电化学氧化中的苯乙酮的降解。

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