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251.
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253.
高分子重金属絮凝剂对 Hg2+的捕集及性能 总被引:4,自引:2,他引:4
以含Hg^2 废水作为处理对象,研究了几个影响高分子重金属絮凝剂去除水中Hg^2 的因素,实验表明:(1)pH值对Hg^2 的去除率影响不大;(2)水中某些二价离子的存在不仅不会消耗高分子重金属絮凝剂的用量,而且会促进螯合体MHM-Hg^2 絮凝沉淀,Hg^2 的去除率在99%以上,而一价金属离子对处理效果影响不大;(3)Hg^2 和致浊物质会互相促进彼此的去除,浊度的去除率在98%以上,Hg^2 的去除率在99%以上;(4)高分子重金属絮凝剂对重金属离子具有选择性,可将部分重金属离子从其它离子中分离开、回收再利用. 相似文献
254.
硫化氢废气治理研究进展 总被引:9,自引:0,他引:9
综合评述了硫化氢废气的各类净化方法及最新的研究进展。硫化氢废气的净化有吸收法、吸附法、氧化法、分解法和生物法。本文对超级克劳斯法和分解法研究进展进行了重点阐述。 相似文献
255.
256.
Metal contamination and solid phase partitioning of metals in urban roadside sediments 总被引:3,自引:0,他引:3
This study was undertaken to assess the anthropogenic impact on metal concentrations of urban roadside sediments (N = 633) in Seoul city, Korea and to estimate the potential mobility of selected metals (Zn, Cu, Pb, Cr, Ni, and Cd) using sequential extraction. Comparison of metal concentrations in roadside sediments with mean background values in sediments collected from first- or second-order streams in Korea shows that Zn, Cu and Pb are most affected by anthropogenic inputs. The 206Pb/207Pb ratios of roadside sediments (range = 1.1419-1.1681; mean 1.1576 +/- 0.0068) suggest that Pb is mainly derived from industrial sources rather than from leaded gasoline. A five-step sequential extraction of roadside sediments showed that Zn, Cd and to a lesser degree Ni occur predominantly in the carbonate bound fraction, while Pb is highest in the reducible fraction, Cu in the organic fraction, and Cr in the residual fraction. It was found that the concentrations in the readily available exchangeable fraction were generally low for most metals examined, except for Ni whose exchangeable fraction was appreciable (average 15.2%). Considering the proportion of metals bound to the exchangeable and carbonate fractions, the comparative mobility of metals probably decreases in the order of Zn > Ni > Cd > Pb > Cu > Cr. As potential changes of redox state and pH may remobilize the metals bound to carbonates, reducible, and/or organic matter, and may release and flush them through drain networks into streams, careful monitoring of environmental conditions appears to be very important. With respect to ecotoxicity, it is apparent the Zn and Cu pollution is of particular concern in Seoul city. 相似文献
257.
Occurrence of PAHs, PCBs and organochlorine pesticides in the Tonghui River of Beijing, China 总被引:48,自引:0,他引:48
Tonghui River, a typical river in Beijing, People's Republic of China, was studied for its water and sediment quality, by determining the levels of 16 polycyclic aromatic hydrocarbons (PAHs), 12 polychlorinated biphenyls (PCBs) and 18 organochlorine pesticides in water and sediment samples. Total PAHs, PCBs and organochlorine pesticides concentrations in water varied from 192.5 to 2651 ng/l, 31.58-344.9 ng/l and 134.9-3788 ng/l, respectively. The total PAHs, PCBs and organochlorine pesticides concentrations in surficial sediments were 127-928 ng/g, 0.78-8.47 ng/g and 1.79-13.98 ng/g dry weight, respectively. The results showed that the concentration of these selected organic pollutants in sediment was higher than those in surface water. It may be due to the fact that organic hydrophobic pollutants tend to stay in the sediments. The PAHs were dominated by 2-, 3-ring components in water samples and by 3- and 4-ring compounds in sediment. For organochlorines, alpha-HCH, delta-HCH, Heptachlor, Endosulfan II, DDT are the major organochlorine pesticides in water while Heptachlor, Dieldrin and DDE composed of 95% of total organochlorine pesticides in sediment. For HCHs (HCHs=alpha-HCH+beta-HCH+gamma-HCH+delta-HCH), the predominance of alpha-HCH of total HCHs were clearly observed in water and sediment. PCB18, PCB31 and PCB52 were predominant in water, on average these compounds collectively accounted for 67% of total PCBs. But in sediment, the predominant compounds were PCB28, PCB31 and PCB153, which accounted for 71% of total PCBs in sediment. The levels of micro pollutants in our study areas were compared with other studies. 相似文献
258.
Song Qiulai Zhu Jie Gong Zhenping Feng Yanjiang Wang Qi Sun Yu Zeng Xiannan Lai Yongcai 《Environmental science and pollution research international》2021,28(39):54792-54801
Environmental Science and Pollution Research - Inappropriate farm management practices can lead to increased agricultural inputs and changes in atmospheric greenhouse gas (GHG) emissions, impacting... 相似文献
259.
采用A/O-MBR系统,逐步提高进水氨氮浓度富集了硝化活性污泥(NAS),在此基础上,考察了COD、烯丙基硫脲(ATU)、氨氮初始浓度及氨氧化速率对NAS降解氧氟沙星(OFL)的影响。结果表明:富集的NAS的氨氧化速率达到了20 mg/(g SS·h)以上,对OFL具有明显降解作用;ATU存在条件下,COD对OFL的去除作用没有影响;提高初始氨氮浓度和NAS氨氧化速率均可以提高OFL降解量;初始氨氮浓度由50 mg/提升至150 mg/L时,OFL降解量由67.26 μg/g提高到82.11 μg/g;氨氧化速率由小于2.5 mg/(g SS·h)提升至大于20 mg/(g SS·h)时,OFL降解量由30.71 μg/g提高到75.16 μg/g。 相似文献
260.
Photocatalytic oxidation of triclosan 总被引:1,自引:0,他引:1
In the spring of 2003, there was an outbreak of the severe respiratory syndrome (SARS) in Hong Kong. Health concerns have thus triggered an increased and predominant use of various types of household cleansing agents such as triclosan (5-chloro-2-(2,4-dichlorophenoxy)phenol). However, it has been reported recently that triclosan could be photochemically converted to toxic 2,8-dichlorodibenzo-p-dioxin (2,8-Cl(2)DD) in the environment. It is therefore necessary to develop environmentally friendly methods for the treatment of triclosan. To this end, photocatalytic degradation of triclosan in aqueous solution was conducted using TiO(2) (Degussa P25) under irradiation of UV light (lambda < 365 nm). It was found that triclosan could be degraded by this approach. Hydrogen peroxide was added to enhance the degradation process, and the optimal initial hydrogen peroxide concentration for triclosan degradation was 0.005% (w/v). Product identification indicated that triclosan oxidation occurred at its phenol moiety and yielded quinone and hydroquinone intermediates. The formation of a dichlorophenol intermediate in triclosan degradation suggested bond-breaking of the ether linkage occurred during the process. Moreover, no chlorinated dibenzo-p-dioxin congener was detected. These findings confirm that the photocatalytic degradation of triclosan is an environmentally friendly process. 相似文献