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941.
Huang Xianfeng Wang Xiran Guan Dong-Xing Zhou Huabin Bei Ke Zheng Xiangyong Jin Zhan Zhang Yejian Wang Qi Zhao Min 《Environmental science and pollution research international》2019,26(9):8516-8524
Environmental Science and Pollution Research - Most prevailing processes are incapable of removing Cr(III)-organic complexes efficiently and facing the problem of in-process formation of highly... 相似文献
942.
Wei Chen Mingming Jing Jianwei Bu Julia Ellis Burnet Shihua Qi Qi Song Yibing Ke Jinjie Miao Meng Liu Chen Yang 《Environmental monitoring and assessment》2011,177(1-4):1-21
Fourteen surface water and nine surface sediment samples were collected from the Peacock River and analyzed for organochlorine pesticides (OCPs) by gas chromatograph?Celectron capture detector (GC-ECD). All the analyzed organochlorine pesticides, except o,p ??-DDT, were detected in sediments from the Peacock River; but in the water samples, only ??-HCH, HCB, p,p ??-DDD, and p,p ??-DDT were detected at some sites. The ranges for total OCPs in the water and sediments were from N.D. to 195 ng l???1 and from 1.36 to 24.60 ng g???1, respectively. The only existing HCH isomer in the water, ??-HCH, suggested that the contamination by HCHs could be attributed to erosion of the weathered agricultural soils containing HCHs compounds. Composition analyses showed that no technical HCH, technical DDT, technical chlordanes, endosulfans, and HCB had been recently used in this region. However, there was new input of ??-HCH (lindane) into the Peacock River. The most probable source was water flowing from Bosten Lake and/or agricultural tailing water that was returned directly into the Peacock River. DDT compounds in the sediments may be derived mainly from DDT-treated aged and weathered agricultural soils, the degradation condition was aerobic and the main product was DDE. HCB in the sediment might be due to the input from Bosten Lake and the lake may act as an atmospheric deposition zone. There was no significant correlation between the concentrations of OCPs (including ??HCH, ??DDT, chlordanes, endosulfans, HCB and total OCPs) and the content of fine particles (<63 ??m). The concentrations of OCPs were affected by salinity. 相似文献
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第三代新烟碱类农药呋虫胺作为超高效、广谱性杀虫剂在水稻、蔬菜和水果上广泛应用,因其水溶性高,对水生生物的毒性不容忽视。本研究以斑马鱼胚胎为对象,参考OECD标准,在胚胎受精后30 min内,采用静态法染毒,观察其24 h、48 h、72 h、96 h的生长发育情况,根据死亡数计算呋虫胺对斑马鱼96 h-LC_(50),采用吖啶橙染色(acridine orange fluorescent,AO-F)和原位末端标记法(TUNEL)2种方法,检测其对斑马鱼96 hpf(hour post-fertilization,hpf)幼鱼的细胞凋亡情况。结果表明:呋虫胺对斑马鱼胚胎的96 h-LC_(50)为10.36 g·L~(-1)(95%置信区间为7.76~12.93 g·L~(-1)),属于微毒;较高浓度的呋虫胺能使斑马鱼的摆尾数、内心率、孵化率降低,对生长发育有延迟的作用,可导致部分斑马鱼色素褪去,出现心包囊肿、卵黄囊肿和尾部畸形的现象。且随着浓度的升高,在斑马鱼头部、腹部、尾部均有明显的细胞凋亡情况加重,其中以心脏和内耳尤为明显,呈规律的剂量-效应关系。 相似文献
945.
农药作为农业生产过程中的一类重要生产资料,主要用作杀虫剂、杀菌剂和除草剂等。由于农药的大量使用,目前在各类农产品及各种环境介质中都能被检测到,对饮食安全和环境健康带来潜在危害。研究发现,许多农药为内分泌干扰物,其能够干扰人类和其它生物体的内分泌系统正常功能。本文在总结国内外相关研究的基础上,对农药内分泌干扰效应的作用机理及筛选模型进行总结,对有机氯、有机磷和拟除虫菊酯等各类农药的内分泌干扰效应研究进展进行综述,并提出深入探究农药致毒作用机制和低剂量下多种农药联合毒性是本领域的重要研究方向。 相似文献
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947.
948.
高效降氰菌群的构建及降解特性 总被引:1,自引:0,他引:1
从筛选到的降氰菌中构建出了优于单一菌种降氰活性的复配菌群CNR.研究了该复合菌群的生长条件,探讨了温度、pH、接种量、氰化物初始浓度及降解时间等因素对CNR降氰的影响.研究表明,复配菌群CNR适应碱性环境,可降解高浓度氰化物(CN-11 000 mg/L),并对金属氰化物和脂肪族腈具有极强的降解能力.在有氧、pH 11、33 ℃和接种量10%条件下.含CN-11 000 ng/L培养液经60 h降解后,CN-1浓度降为0.49 mg/L,降氰率高达99.96%,达到国家一级排放标准. 相似文献
949.
Particle-facilitated lead and arsenic transport in abandoned mine sites soil influenced by simulated acid rain 总被引:1,自引:0,他引:1
The role of acid rain in affecting Pb and As transport from mine tailings was investigated by pumping simulated acid rain at a infiltration rate of 10.2 cm/h through soil columns. Simulated acid rain with pH of 3.0, 4.5 and 5.6 were used as leaching solutions. Results showed that 86.9–95.9% of Pb and 90–91.8% of As eluted from the columns were adsorbed by particles in the leachates. Scanning electron microscopy (SEM) analysis showed that particles released from the columns were mainly composed of flocculated aggregates and plate or rod shaped discrete grains. Transmission electron microscopy (TEM) coupled with energy dispersive X-ray analysis (EDX) showed that these particles were predominantly silicate minerals. Results from our experiments demonstrated that when rapid infiltration conditions or a rainstorm exist, particle-facilitated transport of contaminants is likely to the dominant metal transport pathway influenced by acid rain. 相似文献
950.