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Advance electrochemical oxidation of fipronil contaminated wastewater by graphite anodes and sorbent nano hydroxyapatite

机译:石墨阳极和吸附剂纳米羟基磷灰石预先推进铁鼻污染废水的电化学氧化

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摘要

Degradation of C12H4Cl2F6N4OS phenylpyrazole insecticide (Fipronil) by advance electrochemical oxidation in aqueous water solution was studied. The process efficiency was figured based on the COD, chloride, and fluoride reduction from fipronil. Further, we tried to highlight the importance of nano-hydroxyapatite (n-Hap) as a cost-effective nano sorbent for removal of fluoride from fipronil. From the advance electrochemical oxidation experiment, it was found that the COD removal was 79%, chloride 52%, and fluoride 80%. The intermediate of fipronil compounds was examined by GC-MS. The final results conclude that advance electrochemical oxidation process was effective for removal of fipronil synthetic wastewater.
机译:研究了通过预先电化学氧化在水性水溶液中的C12H4Cl2F6N4OS苯吡唑杀虫剂(FIPRONIL)的降解。基于FIPRONIL的COD,氯化物和氟化物减少来设计工艺效率。此外,我们试图突出纳米羟基磷灰石(N-HAP)作为用于从氟镍的氟化物去除氟化物的经济型纳米吸附剂的重要性。从先进的电化学氧化实验,发现鳕鱼去除为79%,氯化物52%,氟化物80%。通过GC-MS检测FiPronil化合物的中间体。最终结果得出结论,前提电化学氧化过程对去除氟镍硅合成废水是有效的。

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