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首页> 外文期刊>Journal of Environmental Management >Electrocoagulation of commercial naphthalene sulfonates: Process optimization and assessment of implementation potential
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Electrocoagulation of commercial naphthalene sulfonates: Process optimization and assessment of implementation potential

机译:商业萘磺酸盐的电凝:工艺优化和实施潜力评估

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The commercially important naphthalene sulfonate K-acid (C_(10)H_9NO_gS_3; 2-naphthylamine 3,6,8-tri sulfonic acid) was subjected to electrocoagulation employing stainless steel electrodes. An experimental design tool was used to mathematically describe and optimize the single and combined influences of major process variables on K-acid and its organic carbon (COD and TOC) removal efficiencies as well as electrical energy consumption. Current density, followed by treatment time were found to be the parameters affecting process responses most significantly, whereas initial K-acid concentration had the least influence on the electrocoagulation performance. Process economics including sludge generation, electrode consumption, and electrochemical efficiency, as well as organically bound adsorbable halogen formation and toxicity evolution were primarily considered to question the feasibility of K-acid electrocoagulation. Considering process economics and ecotoxicological parameters, process implementation appeared to be encouraging.
机译:使用不锈钢电极对商业上重要的萘磺酸钾酸(C_(10)H_9NO_gS_3; 2-萘胺3,6,8-三磺酸)进行电凝。实验设计工具用于数学描述和优化主要工艺变量对K酸及其有机碳(COD和TOC)的去除效率以及电能消耗的单一和综合影响。发现电流密度和随后的处理时间是最显着影响工艺响应的参数,而初始K-酸浓度对电凝性能的影响最小。主要考虑工艺经济学,包括污泥的产生,电极消耗和电化学效率,以及有机结合的可吸附卤素的形成和毒性的演变,从而质疑了K-酸电凝的可行性。考虑到过程经济学和生态毒理学参数,过程实施似乎令人鼓舞。

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