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Polyvinyl acetate processing wastewater treatment using combined Fenton's reagent and fungal consortium: Application of central composite design for conditions optimization

机译:Fenton试剂和真菌联合体处理聚乙酸乙烯酯废水的处理:中央复合设计在条件优化中的应用

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摘要

The Fenton reaction as an oxidative degradation process was used for industrial chemical wastewater (ICW) pretreatment. The biodegradation of pretreated ICW was performed, in aqueous environment under aerobic condition, by a defined fungal consortium. The central composite design (CCD) was used to study the effect of nitrogen and phosphorus addition and the concentration of the pollution on the removal of polyvinyl alcohol (PVA) and organic compounds. The interaction between parameters was modeled using the response surface methodology (RSM). Results of optimization showed COD, PVA and color removal yields of 97.8%, 98.5% and 99.75%, respectively with a supplementof 1.4 gL−1of (NH4)2SO4, 1.2 gL−1of KH2PO4and 75% of concentrated ICW. Enzymatic analysis proved that laccase and lignin peroxidase were involved in the biodegradation with 45 UIL-1and 450 UIL-1, respectively. Furthermore, the analysis of metabolic products using Fourier transforms infrared spectroscopy (FTIR) and nuclear magnetic resonance (1HNMR) showed clearly the mineralization of organic compounds and the formation of formic acid and ethanol. Therefore, the effective treatment of ICW was achieved by developing an integrated chemical and biological process which met the requirement for a safety effluent respectful for environment without risks for public health.
机译:Fenton反应作为一种氧化降解过程被用于工业化学废水(ICW)的预处理。预处理的ICW在有氧条件下的水性环境中,由特定的真菌财团进行生物降解。中央复合设计(CCD)用于研究氮和磷的添加以及污染物浓度对聚乙烯醇(PVA)和有机化合物的去除的影响。使用响应面方法(RSM)对参数之间的交互进行建模。优化结果表明,分别添加1.4 gL-1的(NH4)2SO4、1.2 gL-1的KH2PO4和75%的浓缩ICW可以分别使COD,PVA和除色率分别为97.8%,98.5%和99.75%。酶分析表明,漆酶和木质素过氧化物酶分别参与了45 UIL-1和450 UIL-1的生物降解。此外,使用傅里叶变换红外光谱(FTIR)和核磁共振(1HNMR)进行的代谢产物分析清楚地表明了有机化合物的矿化以及甲酸和乙醇的形成。因此,通过开发一种综合的化学和生物工艺来实现对ICW的有效处理,该工艺可以满足对环境安全,无公害健康的安全要求。

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