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Treatment of Pharmaceutical Wastewaters by Hydrogen Peroxide and Zerovalent Iron

机译:过氧化氢和零价铁处理制药废水

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Fenton reaction with zerovalent iron (ZVI) and Fe~(2+) ions was studied to treat pharmaceutical wastewaters (PhWW) including antibiotics and non-biodegradable organics. Incremental biodegradability was assessed by monitoring biochemical oxygen demand (BOD) changes during Fenton reaction. Original undiluted wastewater samples were used as collected from the pharmaceutical factory. Experiments were carried out to obtain optimal conditions for Fenton reaction under different H_2O_2 and ion salts (ZVI and Fe~(2+)) concentrations. The optimal ratio and dosage of H_2O_2/ZVI were 5 and 25/5 g/L (mass basis), respectively. Also, the optimal ratio and dosage of H_2O_2/Fe~(2+) ions were 5 and 35/7 g/L (mass basis), respectively. Under optimized conditions, the chemical oxygen demand (COD) removal efficiency by ZVI was 23% better than the treatment with Fe~(2+) ion. The reaction time was 45 min for ZVI and shorter than 60 min for Fe~(2+)ion. The COD and total organic carbon (TOO were decreased, but BOD was increased under the optimal conditions of H_2O_2/ZVI = 25/5 g/L, because organic compounds were converted into biodegradable intermediates in the early steps of the reaction. The BOD/ TOC ratio was increased, but reverse-wise, the COD/TOC was decreased because of generated intermediates. The biodegradability was increased about 9.8 times (BOD/TOC basis), after treatment with ZVI. The combination of chemical and biological processes seems an interesting combination for treating PhWW.
机译:研究了Fenton与零价铁(ZVI)和Fe〜(2+)离子的反应技术,用于处理制药废水(PhWW),包括抗生素和不可生物降解的有机物。通过监测Fenton反应过程中生化需氧量(BOD)的变化来评估生物降解的增量。原始的未稀释废水样品使用了从制药厂收集的样品。进行了实验,以获得在不同浓度的H_2O_2和离子盐(ZVI和Fe〜(2+))下芬顿反应的最佳条件。 H_2O_2 / ZVI的最佳比例和剂量分别为5和25/5 g / L(质量基准)。此外,H_2O_2 / Fe〜(2+)离子的最佳比例和剂量分别为5和35/7 g / L(质量基准)。在最佳条件下,ZVI去除化学需氧量(COD)的效率比Fe〜(2+)离子处理高23%。 ZVI的反应时间为45分钟,Fe〜(2+)离子的反应时间短于60分钟。在H_2O_2 / ZVI = 25/5 g / L的最佳条件下,COD和总有机碳(TOO降低了,但BOD却增加了),因为在反应的早期阶段有机化合物被转化为可生物降解的中间体。 ZVI处理后,TOC比例增加,但反过来,由于生成了中间体,COD / TOC降低了,生物降解性提高了约9.8倍(以BOD / TOC为基础),化学和生物过程相结合似乎很有趣治疗PhWW的组合。

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