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城镇杂用再生水的水质安全评价关键指标探讨 总被引:2,自引:0,他引:2
污水再生利用是解决中国淡水资源短缺的有效途径,再生水的水质安全问题一直以来受到广泛关注.以城镇杂用再生水的水质安全为目标,从再生水中残留的化学污染物和病原微生物出发,通过全面分析污染物在回用过程中危害人体健康和生态环境的可能途径,结合当前国内外城镇杂用水的水质标准,提出了包括综合毒性指标、生物学指标、可吸附有机卤化物指标、挥发性有机物指标等在内的城镇杂用再生水水质安全评价关键指标. 相似文献
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大量未经处理的污水排入水体时 ,会导致地面水体严重污染。受污染水体的水质恢复方法有物理法、化学法和生物法 ,它们能控制水体外源性和内源性污染物的排入量、人工强化水体自身的净化能力 ,以降低水体中污染物的浓度、提高溶解氧浓度 ,恢复水生生物的多样性 相似文献
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河流水环境中的非突发性水质风险模型研究 总被引:6,自引:0,他引:6
把影响水质模型的随机因素看成一个具有零均值的维纳过程,建立一个研究非突发性水质风险的随机微分动态模型,并对该维纳过程强度进行了估值。研究表明,水环境中的随机因素是引起非突发性风险的一个重要原因。 相似文献
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以城市给水厂污泥为原料,制备了2种不同粒径的颗粒状吸附剂,探讨了这2种颗粒吸附剂不同应用方式动态吸附初沉池水中磷的效果,并对吸附的影响因素进行了探究。结果表明,在使用2 mm粒径的吸附剂进行动态吸附时,在颗粒投加量固液比为20 g·L~(-1)的条件下,运行8 h后,出水磷浓度最低,总磷、可溶性总磷、可溶性活性磷酸盐的出水浓度分别可达到1.52、0.27、0.16 mg·L~(-1)。干化大颗粒的固定床吸附实验结果表明,空床停留时间应控制在30 min左右,有效滤层高度为11.5 cm,滤柱连续运行前80 h,对初沉池水有良好的处理效果,为该吸附剂投入使用提供了初步依据。对给水厂污泥颗粒吸附剂进行了技术经济分析,得出颗粒吸附剂理论上处理初沉池水所需药剂费用为0.021 2元·t~(-1),具有较高的经济效益。以上结果可为给水厂的污泥在实际生产中的应用提供参考。 相似文献
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《国际环境与污染杂志》2011,26(4):379-397
Lebanon in general and its capital, Beirut, suffer from water shortage due to the increasing water demand and the lack of proper management despite its abundant water resources. An intermittent water supply strategy was implemented in order to minimise deficiency problems. This, however, can seriously affect water quality due to the potential suction of non-potable water by negative pressures, biofilm detachment, and microbial re-growth especially when static conditions occur. Intermittent supplies also entail storing water in household tanks to satisfy demand during no-flow periods, and these tanks often encourage bacterial re-growth. Dumping of disinfectants in order to circumvent bacterial presence and the subsequent formation of undesirable byproducts is another concern. A study was conducted in Beirut over an eight-month period, during which samples were collected from household tanks and drinking water taps of Beirut's network. This paper presents the findings of the study and highlights key aspects in intermittent water supply systems. 相似文献
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E E Geldreich 《Journal - Water Pollution Control Federation》1972,44(6):1159-1172
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The use of the octanol/water partition constant (Kow) as a surrogate parameter for lipid/water partitioning of persistent organic pollutants (POPs) was reassessed by comparing the measured Kow of 12 selected polychlorinated biphenyl congeners (PCBs) with partition constants in triolein/water (Ktw) and membrane/water (Kmw) systems. Kow and Ktw were measured by the slow-stirring method. Kmw was measured by an adaptation of the slow-stirring method using suspensions of phosphatidylcholine and phosphatidylserine liposomes. Partitioning of POPs to octanol, triolein, and liposomes is similar but not equal. The log-log correlation for Kow and Ktw is excellent (r2 = 0.982) and that for Kow and Kmw is somewhat weaker (r2 = 0.856). Ktw values are greater than Kow by a factor of 1.6. Kmw of some PCB congeners exceed both Kow and Ktw by an order of magnitude. The differences are attributed to different PCB activity coefficients in the different lipid phases. The results imply that Kow can be used as a reasonable conservative estimate of lipid/water partitioning. But the observed differences between Kow and Kmw also indicate that using Kow to predict accumulation of POPs, particularly highly hydrophobic ones, in the polar lipids of organisms will underestimate their concentrations at equilibrium. 相似文献
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Decomposition of dihaloacetonitriles in water solutions and fortified drinking water samples 总被引:3,自引:0,他引:3
An investigation of the decomposition of dihaloacetonitriles (DHANs) in water solutions and fortified drinking water samples was conducted. The concentrations of dichloroacetonitrile (CHCl2CN, DCAN), bromochloroacetonitrile (CHBrClCN, BCAN) and dibromoacetonitrile (CHBr2CN, DBAN) were determined by a gas chromatography mass spectrometry (GC-MS) method at regular time intervals and different temperatures. The effect of sodium thiosulfate (Na2S2O3), which is used as a preservative in water samples, was also examined. The rates of decomposition were determined for each compound. The results show that the reactions are faster in fortified drinking water samples than in ultrapure water solutions. They are also favored at higher temperature, especially when sodium thiosulfate is present. The highest decomposition rate is shown by DCAN, followed by BCAN and DBAN, while at the presence of sodium thiosulfate the decomposition of DBAN is the fastest. 相似文献