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61.
人工湿地对北方城市污水深度处理效果的研究   总被引:2,自引:0,他引:2  
采用三级串联人工湿地试验装置以及无芦苇的空白对照装置在户外自然条件下进行试验,分阶段考察该组合式人工湿地系统对实际城市污水的深度处理效果.第一阶段为装置初运行阶段,采用较长的停留时间,该阶段装置对COD、TN、NH3-N、NO2--N和TP的去除率分别为75%、75%、95%、75%和50%.芦苇的存在使以上各指标相对于空白对照分别提高了10%、40%,20%、20%和50%;第二阶段采用较短的停留时间,该阶段装置对COD、TN、NH3-N、NO2--N和TP的去除率分别为85%、75%、100%、70%和98%,芦苇的存在使以上各指标相对于空白对照分别提高了10%、20%、35%、25%和63%.试验结果表明,该试验装置对城市污水具有较好的深度处理效果,能够有效降低水中的N和P,对改善水质、恢复生态系统和控制水体富营养化问题具有重要意义.  相似文献   
62.
介绍了中国石油克拉玛依石化分公司的污水深度处理及回用工程的工艺流程、特点及运行效果。该工程以该公司的污水处理场二级出水为原水,采用“混凝气浮 BAC 纳滤”进行深度处理及进行脱盐处理,出水水质超过了当地的自来水指标,已经代替自来水被实际应用于循环水系统的补充水。  相似文献   
63.
Ni,Fe氧化物对吐氏酸废水催化臭氧化研究   总被引:7,自引:0,他引:7  
用浸渍法和附着沉淀法制备了6种以Ni、Fe为活性组分,γAl2O3载体的国型催化剂,催化臭经处理难生物降解的典型染料中间体废水-吐氏酸废水。初始CODc浓度为1500mg/L左右的废水,当臭氧投加量为0.8g/L时,在活性最高的催化剂作用下,CODCr去除率大于50%,而没有催化剂作用时小于30%。  相似文献   
64.
烟气循环吸收法脱硫技术   总被引:4,自引:0,他引:4  
介绍了一种先进的半干法烟气脱硫技术 ,对其工艺流程、技术特点进行了较详尽的描述。该工艺具有设备少、工艺简单、投资省、占地面积小、维护费用低等特点。  相似文献   
65.
生活饮用水深度处理工程设计的新发展   总被引:2,自引:0,他引:2  
介绍了臭氧生物活性炭生活饮用水深度处理装置的工程设计特点,论述了当今对臭氧生物活性炭处理工艺原理和发展的认识,并结合本工程情况对臭氧系统的优化设计和系统的控制特点做了简单说明。  相似文献   
66.
INTENTION, GOAL, SCOPE, BACKGROUND: Since the intermediate products of some compounds can be more toxic and/or refractory than the original compund itself, the development of innovative oxidation technologies which are capable of transforming such compounds into harmless end products, is gaining more importance every day. Advanced oxidation processes are one of these technologies. However, it is necessary to optimize the reaction conditions for these technologies in order to be cost-effective. OBJECTIVE: The main objectives of this study were to see if complete mineralization of 4-chlorophenol with AOPs was possible using low pressure mercury vapour lamps, to make a comparison of different AOPs, to observe the effect of the existence of other ions on degradation efficiency and to optimize reaction conditions. METHODS: In this study, photochemical advanced oxidation processes (AOPs) utilizing the combinations of UV, UV/H2O2 and UV/H2O2/Fe2+ (photo-Fenton process) were investigated in labscale experiments for the degradation and mineralization of 4-chlorophenol. Evaluations were based on the reduction of 4-chlorophenol and total organic carbon. The major parameters investigated were the initial 4-chlorophenol concentration, pH, hydrogen peroxide and iron doses and the effect of the presence of radical scavengers. RESULTS AND DISCUSSION: It was observed that the 4-chlorophenol degradation efficiency decreased with increasing concentration and was independent of the initial solution pH in the UV process. 4-chlorophenol oxidation efficiency for an initial concentration of 100 mgl(-1) was around 89% after 300 min of irradiation in the UV process and no mineralization was achieved. The efficiency increased to > 99% with the UV/H2O2 process in 60 min of irradiation, although mineralization efficiency was still around 75% after 300 min of reaction time. Although the H2O2/4-CP molar ratio was kept constant, increasing initial 4-chlorophenol concentration decreased the treatment efficiency. It was observed that basic pHs were favourable in the UV/H2O2 process. The results showed that the photo-Fenton process was the most effective treatment process under acidic conditions. Complete disappearance of 100 mgl(-1) of 4-chlorophenol was achieved in 2.5 min and almost complete mineralization (96%) was also possible after only 45 min of irradiation. The efficiency was negatively affected from H2O2 in the UV/H2O2 process and Fe2+ in the photo-Fenton process over a certain concentration. The highest negative effect was observed with solutions containing PO4 triple ions. Required reaction times for complete disappearance of 100 mgl(-1) 4-chlorophenol increased from 2.5 min for an ion-free solution to 30 min for solutions containing 100 mgl(-1) PO4 triple ion and from 45 min to more than 240 min for complete mineralization. The photodegradation of 4-chlorophenol was found to follow the first-order law. CONCLUSION: The results of this study showed that UV irradiation alone can degrade 4-CP, although at very slow rates, but cannot mineralize the compound. The addition of hydrogen peroxide to the system, the so-called UV/H2O2 process, significantly enhances the 4-CP degradation rate, but still requires relatively long reaction periods for complete mineralization. The photo-Fenton process, the combination of homogeneous systems of UV/H2O2/Fe2+ compounds, produces the highest photochemical elimination rate of 4-CP and complete mineralization is possible to achieve in quite shorter reaction periods when compared with the UV/H2O2 process. RECOMMENDATIONS AND OUTLOOK: It is more cost effective to use these processes for only purposes such as toxicity reduction, enhancement of biodegradability, decolorization and micropollutant removal. However the most important point is the optimization of the reaction conditions for the process of concern. In such a case, AOPs can be used in combination with a biological treatment systems as a pre- or post treatment unit providing the cheapest treatment option. The AOP applied, for instance, can be used for toxicity reduction and the biological unit for chemical oxygen demand (COD) removal.  相似文献   
67.
高级氧化技术降解水中有机磷农药的研究进展   总被引:7,自引:0,他引:7  
综述了近年来发展迅速的高级氧化技术,主要包括臭氧高级氧化技术、光催化氧化法、超声降解法、电化学水处理技术和超临界水氧化法等.结合有机磷农药废水处理方法的进展,介绍了各种高级氧化技术在机理研究和应用方面取得的成果和存在的问题,并指出了高级氧化技术在有机废水处理方面所具有的潜力.  相似文献   
68.
采用混凝沉降-砂滤-活性炭吸附-消毒工艺,对模拟城市污水处理厂二级处理工艺的SBR中试系统的出水进行了深度处理实验研究。实验结果表明,深度处理后的出水所检测的浊度、pH、COD、NH3-N、细菌总数等5项指标已经达到了《生活饮用水卫生标准》(GB5749—2006)。  相似文献   
69.
We sutdied the application of the bacteria Azotobacter vinellandi on the treatment of effluents from pulp and paper industry. Two types of treatment employing this microorganism were studied: biological treatment isolated and combined with stages of pre- or post-treatment using ozonation or photocatalysis processes. In the biological treatment, the siderophores production by A. vinellandi had a major effect on the efficiency of effluents degradation. Among the different combined treatments, the best results were obtained with the photocatalytic pre-treatment.  相似文献   
70.
低温下膜-生物活性炭工艺深度处理回用水的试验研究   总被引:3,自引:0,他引:3  
开展低温下膜-生物活性炭工艺深度处理回用水的试验研究,探讨该工艺低温运行的可行性及作用机制。结果表明,采用HRT为3h的膜-生物活性炭反应器对回用水中有机物具有良好的去除效果,CODcr,UV254、UV410的去除率分别稳定在33%、35%、40%;对NH3-N的去除效果不明显,其平均去除率在15%左右,主要受原水浓度过高的影响。同时与其他工艺进行对比研究,结果表明,由于该工艺结合了膜分离、活性炭吸附、生物降解三者的综合作用而表现出明显的优势。  相似文献   
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