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首页> 外文期刊>Journal of Environmental Management >Simultaneous removal of NH_3-N and COD from shale gas distillate via an integration of adsorption and photo-catalysis: A hybrid approach
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Simultaneous removal of NH_3-N and COD from shale gas distillate via an integration of adsorption and photo-catalysis: A hybrid approach

机译:通过吸附和光催化相结合同时去除页岩气馏分中的NH_3-N和COD:一种混合方法

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摘要

In view of the circulation cooling water (CCW) quality for refining and petrochemical enterprises, distillates obtained from shale gas produced water after alkali precipitation, filtration and multi-effect evaporation required further purification to remove NH3-N and COD. Illumination, adsorption, photocatalysis after adsorption equilibrium (AP) and integration of adsorption and photocatalysis (IOAP) were carried out to optimize the distillates treatment. AP and IOAP treatments were feasible for the simultaneous removal of NH3-N and COD from the target distillate, while IOAP treatment had much better adaptability and practicability due to its economic cost and easy operation. In IOAP, the removal rate of COD and NH3-N was high up to 59.0% and 88.9%, respectively, under Xenon lamp illumination (25 A) for 60 min with 10 g/L zeolite. The residual concentration of COD and NH3-N were 73.9 mg/L and 23.0 mg/L, respectively, which could well meet the CCW quality. Furthermore, the results of zeolites characterization (SEM-EDX, BET and FTIR) and kinetics analysis showed that the removal of COD in IOAP process mainly depended on the effect of photocatalysis excited by zeolite, while the removal of NH3-N was in virtue of the synergistic effect of photocatalysis and adsorption.
机译:考虑到炼油和石化企业的循环冷却水质量,碱沉淀,过滤和多效蒸发后从页岩气采出水中获得的馏出液需要进一步纯化以去除NH3-N和COD。进行了照明,吸附,吸附平衡(AP)后的光催化以及吸附和光催化的整合(IOAP),以优化馏出液的处理。 AP和IOAP处理对于从目标馏出物中同时去除NH3-N和COD是可行的,而IOAP处理由于其经济成本和易于操作而具有更好的适应性和实用性。在IOAP中,用10 g / L沸石在氙灯(25 A)下照射60分钟,COD和NH3-N的去除率分别高达59.0%和88.9%。 COD和NH3-N的残留浓度分别为73.9 mg / L和23.0 mg / L,完全可以满足CCW的质量要求。此外,沸石的表征结果(SEM-EDX,BET和FTIR)和动力学分析表明,IOAP过程中COD的去除主要取决于沸石激发的光催化作用,而NH3-N的去除则取决于光催化与吸附的协同作用。

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