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首页> 外文期刊>Ultrasonics sonochemistry >Intensification of industrial wastewater treatment using hydrodynamic cavitation combined with advanced oxidation at operating capacity of 70 L
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Intensification of industrial wastewater treatment using hydrodynamic cavitation combined with advanced oxidation at operating capacity of 70 L

机译:使用液压动力空化加入工业废水处理的强化与70升的运行能力联合加强氧化

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The present work deals with treatment of industrial wastewater with hydrodynamic cavitation (HC) combined with advanced oxidation processes (AOPs) at a pilot plant operating at a capacity of 70 L. Initially approach of only HC was studied with understanding into the effect of parameters like inlet pressure (range of 2-8 bar) and dilution factor (two cases with dilution ratio as 1:1 and 1:3). Only HC was found to give minimal chemical oxygen demand (COD) removal within 180 min and the further focus of the study was aimed to test efficiency of different oxidants in combination with HC. Oxidants used in treatment were hydrogen peroxide (H2O2), Fenton's reagent, air and oxygen. Effect of H2O2 loading wasanalyzed with variation of loading in the range of 5-15 g.L-1 and maximum COD removal of 30% was achieved at 15 g.L-1 loading of H2O2. Keeping 15 g.L-1 as the constant loading of H2O2, optimization of Fenton based treatment was performed with variation of Fe2+/H2O2 molar ratio in the range of 1:10-1:30. Maximum COD removal of 42% was achieved at best molar ratio of 1:20. For the very first time, air and oxygen injection were tested in combination of HC giving 15.5% and 42% COD removal respectively. Combination study of oxygen + Fenton + HC was performed at H2O2 loading of 15 g.L-1 and Fenton molar ratio as 1:20, which resulted in 63% COD removal within 180 min of treatment. Energy efficacy analysis in terms of COD reduction per unit energy and cost calculations were also performed and for process giving maximum of 63% COD removal in 180 min, cost of treatment obtained was 398 US$/m(3). It was clearly established that HC in combination of Fenton and oxygen is the best approach for treatment of complex industrial wastewater.
机译:目前的工作涉及使用流体动力空化(HC)的工业废水处理,该工业废水与先进的氧化过程(AOP)在以70L的容量运行的飞行员工厂中,最初对仅限参数的效果进行了研究的初步方法入口压力(2-8巴的范围)和稀释因子(两种稀释比例为1:1和1:3)。仅发现HC在180分钟内提供最小的化学需氧量(COD)去除,并且该研究的进一步重点旨在测试不同氧化剂与HC的效率。用于治疗的氧化剂是过氧化氢(H2O2),Fenton的试剂,空气和氧气。在5-15g-1 -1和最大鳕鱼中的载荷范围内的H 2 O 2装载的效果在15g1 -1加载H 2 O 2的15g1-1负载下实现。保持15 G.L-1作为H 2 O 2的恒定负载,在1:10-1:30的范围内进行FE2 + / H2O2摩尔比的变化进行基于FENTON的处理的优化。以最佳摩尔比为1:20实现42%的最大鳕鱼去除。对于第一次,HC的组合测试空气和氧注射,分别为15.5%和42%COD去除。氧+ FENTON + HC的组合研究在15g1-1和FENTON摩尔比为1:20的H 2 O 2负载下进行,导致在180分钟内切除63%的COD去除。在每单位能量和成本计算的COD降低方面的能量效能分析也进行了一次,并且在180分钟内最高可达63%的COD去除,得到的治疗成本为398美元/ m(3)。清楚地确定了芬顿和氧气组合的HC是治疗复杂工业废水的最佳方法。

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