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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Insight into in-situ radical and non-radical oxidative degradation of organic compounds in complex real matrix during electrooxidation with boron doped diamond electrode: A case study of oil sands process water treatment
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Insight into in-situ radical and non-radical oxidative degradation of organic compounds in complex real matrix during electrooxidation with boron doped diamond electrode: A case study of oil sands process water treatment

机译:在用硼掺杂金刚石电极的电氧化过程中洞察复合实际基质中有机化合物的原位自由基和非自由基氧化降解:油砂工艺水处理的案例研究

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摘要

Radical and non-radical oxidants identification and transformation mechanisms in electrooxidation using boron doped diamond electrode (EO-BDD) have been limited to synthetic solutions with little attention given to real complex matrix. In this study, electron paramagnetic resonance spectrometry (EPR) and spectrophotometry were used to identify/quantify the radical and non-radical oxidants generated during the EO treatment of oil sands process water (OSPW). The EPR spectra confirmed the direct electrogeneration of BDD((OH)-O-center dot), SO4 center dot- and CO3 center dot- as radical oxidants from H2O, SO42- and CO32- oxidation, respectively, in both OSPW and ultra-pure water containing either SO42- or CO32-. There was also accumulation of S2O82-, C2O62- and active chlorine as non-radical oxidants from the oxidation of SO42-, CO32- and Cl-, respectively. The degradation of organic contents of the OSPW was by both radical and non-radical oxidation pathways, achieving complete degradation and mineralization of dissolved organic contents at current density >= 5 mA cm(-)(2).
机译:使用硼掺杂金刚石电极(EO-BDD)的电氧化中的自由基和非自由基氧化剂鉴定和转化机制被限制为合成溶液,其关注很少给予真正的复杂基质。在该研究中,电子顺磁共振光谱法(EPR)和分光光度法用于鉴定/量化在油砂处理水(OSPW)的EO处理期间产生的自由基和非自由基氧化剂。 EPR光谱分别证实了BDD((OH)-O-中心点),SO4中心点和CO3中心点的直接电磁分别在OSPW和超出中,分别在H2O,SO42和CO32-氧化中为自由基氧化剂。纯水含有SO42-或CO32-。从SO42-,CO32和CL-的氧化分别,还存在S2O82-,C2O62-和活性氯作为非自由基氧化剂。 OSPW的有机含量的降解是由基团和非自由基氧化途径,在电流密度> = 5 mA cm( - )(2)下实现溶解的有机含量的完全降解和矿化。

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