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The comprehensive control efficiency for the formation potentials(FPs) of a range of regulated and unregulated halogenated disinfection by-products(DBPs)(including carbonaceous DBPs(C-DBPs), nitrogenous DBPs(N-DBPs), and iodinated DBPs(I-DBPs)) with the multiple drinking water treatment processes, including pre-ozonation, conventional treatment(coagulation–sedimentation, pre-sand filtration), ozone-biological activated carbon(O_3-BAC) advanced treatment, and post-sand filtration, was investigated. The potential toxic risks of DBPs by combing their FPs and toxicity values were also evaluated.The results showed that the multiple drinking water treatment processes had superior performance in removing organic/inorganic precursors and reducing the formation of a range of halogenated DBPs. Therein, ozonation significantly removed bromide and iodide,and thus reduced the formation of brominated and iodinated DBPs. The removal of organic carbon and nitrogen precursors by the conventional treatment processes was substantially improved by O_3-BAC advanced treatment, and thus prevented the formation of chlorinated C-DBPs and N-DBPs. However, BAC filtration leads to the increased formation of brominated C-DBPs and N-DBPs due to the increase of bromide/DOC and bromide/DON.After the whole multiple treatment processes, the rank order for integrated toxic risk values caused by these halogenated DBPs was haloacetonitriles(HANs)》haloacetamides(HAMs) haloacetic acids(HAAs) trihalomethanes(THMs) halonitromethanes(HNMs) 》I-DBPs(I-HAMs and I-THMs). I-DBPs failed to cause high integrated toxic risk because of their very low FPs. The significant higher integrated toxic risk value caused by HANs than other halogenated DBPs cannot be ignored. 相似文献
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Zhang Xianqi Wu Xilong Xiao Yimeng Shi Jingwen Zhao Yue Zhang Minghui 《Environmental science and pollution research international》2022,29(35):52806-52817
Environmental Science and Pollution Research - Runoff forecasting is essential for the reasonable use of regional water resources, flood prevention, and mitigation, as well as the development of... 相似文献
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Beilei Lei Yimeng Ma Jiazhong Li Huanxiang Liu Xiaojun Yao Paola Gramatica 《Atmospheric environment (Oxford, England : 1994)》2010,44(25):2954-2960
Accurate quantitative structure–property relationship (QSPR) models based on a large data set containing a total of 3483 organic compounds were developed to predict chemicals’ adsorption capability onto activated carbon in gas phrase. Both global multiple linear regression (MLR) method and local lazy regression (LLR) method were used to develop QSPR models. The results proved that LLR has prediction accuracy 10% higher than that of MLR model. By applying LLR method we can predict the test set (787 compounds) with Q2ext of 0.900 and root mean square error (RMSE) of 0.129. The accurate model based on this large data set could be useful to predict adsorption property of new compounds since such model covers a highly diverse structural space. 相似文献
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针对我国农村地区污水量波动和断流的排放特性,提出了一种在断流时段补给污水处理系统自身产出的尾水与污泥发酵液混合液的运行模式,以中试A2/O为对象,研究了系统在该运行模式下的污染物去除特性,以期为今后我国农村地区污水处理装置的设计和运行提供新的思路.结果表明,尾水与发酵液以12:1的比例混合后作为碳源与原水相比具有更好的反硝化和释/吸磷特性,具有强化脱氮除磷的功能;以尾水与发酵液混合液在断流时段作为补给碳源可改善系统对TN和TP的去除效率,其平均去除率分别由69.27%和86.94%提升到73.34%和89.94%,相应地平均出水浓度分别由15.77 mg ·L-1和0.80 mg ·L-1降低到13.76 mg ·L-1和0.64 mg ·L-1.16S rRNA基因测序结果表明,随着实验的进行,系统中5种常见的水解酸化菌属、6种聚磷菌属和4种反硝化菌属的相对丰度得到提升;通过对系统活性污泥性状的长期监测可以看出,以尾水与发酵液混合液在断流时段作为补给碳源会恶化系统活性污泥的沉降性能,系统活性污泥的平均SVI由阶段Ⅰ的106 mL ·g-1上升至阶段Ⅱ的131 mL ·g-1,然而这种恶化程度并不会对系统的污泥活性和污染物去除性能造成不利影响,在整个实验过程中系统均未出现污泥膨胀的现象. 相似文献
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以酸性矿山废水生成的铁絮体和秸秆生物炭为原料,采用化学改性和紫外辐射联用技术制备改性生物炭,并通过正交试验确定最佳改性条件,同时利用FTIR、SEM和BET等方法对吸附材料的形貌特征、孔隙结构及其表面化学性质进行表征.结果表明,通过改性使吸附材料比表面积增大,吸附位点增多,在25℃、pH为7时,吸附材料改性后比表面积为295.71 m2·g-1,对Pb(II)的拟合吸附量可达278 mg·g-1.改性材料对Pb(II)的吸附过程符合Langmuir吸附等温线模型和准二级动力学模型,主要为单分子层吸附,受化学吸附控制. 相似文献
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