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Hydraulic fracturing flow-back fluid treatment by ZVI/H_2O_2 process

机译:ZVI / H_2O_2工艺处理水力压裂返排液

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Hydraulic fracturing flow-back fluid (HFFBF) was treated by a zero-valent iron (ZVI)/H2O2 process. The initial HFFBF chemical oxygen demand (COD) was 3,440 mg/L and the 5-d biochemical oxygen demand (BOD5)/COD ratio was 0.259. Under the optimal 500/6,884 mg/L of ZVI/H2O2 reagent doses, and a 120-min process time, COD was decreased to 680 mg/L (80.2% removal). Additionally, as a result of pollutants' chemical oxidation, the wastewater's susceptibility for biodegradation was essentially increased to BOD5/COD 0.971. To assess the maximum share of coagulation in the total ZVI/H2O2 process treatment effect, a coagulation process was additionally employed. The coagulation for an optimal 1.5mL/L of iron-based PIX 111 coagulant dose obtained 1,200 mg/L of COD, 65.1% removal. The use of coagulation only allowed an increase in BOD5/COD to 0.625. As a result of the oxidation step during ZVI/H2O2 process, the persistent compounds were transformed to more vulnerable ones.
机译:通过零价铁(ZVI)/ H2O2工艺处理了水力压裂返排液(HFFBF)。初始HFFBF化学需氧量(COD)为3,440 mg / L,5-d生化需氧量(BOD5)/ COD比为0.259。在最佳ZVI / H2O2试剂剂量500 / 6,884 mg / L和120分钟的处理时间下,COD降至680 mg / L(去除率80.2%)。此外,由于污染物的化学氧化作用,废水的生物降解敏感性从本质上提高至BOD5 / COD 0.971。为了评估在全部ZVI / H2O2工艺治疗效果中最大的凝结份额,另外采用了凝结工艺。最佳1.5mL / L铁基PIX 111凝结剂的凝结获得了1200 mg / L的COD,去除了65.1%。凝血的使用仅使BOD5 / COD增加至0.625。由于在ZVI / H2O2过程中进行了氧化步骤,持久性化合物被转化为更易破坏的化合物。

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