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1.
污水处理厂尾水中有机氯化物的活性炭吸附深度处理   总被引:3,自引:0,他引:3  
考虑到经氯消毒的城市污水处理厂尾水中可能存在的副产物,选择广东省东莞市两个典型污水处理厂尾水为研究对象,采用GC-MS分析其中的有机氯化物,并以某种粉末活性炭进行吸附深度处理及考察其效果.分析结果表明,尾水中存在二氯甲烷、三氯甲烷、四氯化碳、二氯一溴甲烷、二澳一氯甲烷、二氯硝基甲烷等多种有机氯化物,其中,三氯甲烷和四氯化碳在所取样品中都存在且相对含量之和超过80%;吸附结果表明,所选择的活性炭样在1 g·L-1投加量下,尾水中未检出有机氯化物.说明适宜的活性炭能够应用于污水处理厂尾水中多种有机氯化物的分离去除.  相似文献   

2.
The lack and pollution of water resource make wastewater reuse necessary. The pilot scale long-term tests for submerged membrane bioreactor were conducted to treat the effluents of anaerobic or aerobic treatment process for the high-strength Chinese traditional medicine wastewater. This article was focused on the feasibility of the wastewater treatment and reuse at shorter hydraulic retention time (HRT) of 5.0, 3.2 and 2.13 h. MLSS growth, membrane flux, vacuum values and chemical cleaning periods were also investigated. The experimental results of treating two-phase anaerobic treatment effluent demonstrated that the CODfilt was less than 100 mg/L when the influent COD was between 500-10000 mg/L at HRT of 5.0 h, which could satisfy the normal discharged standard in China. The experimental results to treat cross flow aerobic reactor effluent demonstrated that the average value of CODfilt was 17.28 mg/L when the average value of influent COD was 192.84 mg/L at HRT of 2.13 h during 106 d, which could completely meet the normal standard for water reuse. The maximum MLSS and MLVSS reached 24000 and 14500 mg/L at HRT of 3.2 h respectively. Membrane flux had maximal resume degrees of 94.7% at vacuum value of 0.02 MPa after cleaning. Chemical cleaning periods of membrane module were 150 d. A simulation model of operational parameters was also established based on the theory of back propagation neural network and linear regression of traditional mathematical model. The simulation model showed that the optimum operational parameters were suggested as follows: HRT was 5.0 h, SRT was 100 d, the range of COD loading rate was between 10.664-20.451 kg/(m3.d), the range of MLSS was between 7543-13694 mg/L.  相似文献   

3.
污水处理厂传统的二级生化处理对药品及个人护理用品(Pharmaceutical and Personal Care Products, PPCPs)等新兴污染物的去除率较低, PPCPs随出水排放会给生态环境带来较大的风险,并会经过生物富集最终危害到人体健康,因此需要通过进一步的深度净化以削减其风险.本文综述了常见PPCPs在污水处理系统的分布特征及生态风险,阐述了高级氧化工艺(Advanced oxidation processes, AOPs)、生物活性炭工艺(Biological activated carbon, BAC)以及高级氧化联合生物活性炭工艺(AOPs-BAC)深度净化PPCPs的净化原理,在此基础上,综述了AOPs-BAC工艺对污水中PPCPs的深度净化效果及主要影响因素,并探讨了AOPs-BAC工艺对污水中PPCPs的风险削减能力,为污水中PPCPs深度净化工艺的研发及PPCPs的生态风险控制提供了参考.  相似文献   

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