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131.
卤系阻燃剂在东江鱼体中的生物富集 总被引:1,自引:0,他引:1
准确获取化合物的生物富集因子(BAF)对于判定化合物是否属于潜在毒害性污染物、评价其生态环境风险都具有重要的意义.本文以东江水体为研究区域,以PBDEs、DBDPE、DP、TBBPA和HBCDs为目标化合物,研究了其在3种鱼体中的富集特征.结果表明,5种化合物的lg BAF的变化范围分别为5.0~7.4、6.1~7.1、4.6~7.9、2.6~4.6和4.8~7.7.在本研究中,大多的化合物lg BAF值均大于3.7,说明这些污染物都具有生物富集能力.HFRs的BAF值总体随着lg Kow值的增加而增加,但当lg Kow7时,生物对PBDEs的生物富集能力有所下降.γ-HBCD向α-HBCD的生物转化以及生物体对BDE66和BDE99的代谢导致这几种单体偏离了这个模型预测趋势.DBDPE的BAF值大于BDE209的BAF值,作为大分子污染物,DBDPE的生物富集能力应该值得关注.通过对污染物的生物沉积物富集因子(BSAF)的计算,发现绝大多数的污染物的BSAF值均小于1,表明沉积物不太可能作为水生生物的污染源. 相似文献
132.
本研究利用火焰原子吸收法测定了重庆主城与郊区居民头发中镉、铜、镍、铅和锌等5种重金属的浓度水平,比较分析了人发中5种重金属含量水平及与年龄、性别和吸烟与否的关系,最后通过相关性分析和主成分分析初步了解重庆居民人发中重金属可能的来源.结果表明,重庆主城人发中Cd、Cu、Ni、Pb和Zn的平均含量分别为3.1、24.3、9.7、42.8和209.6 μg·g-1,郊区居民人发的平均含量分别为0.9、15.8、5.6、15.2和173.4 μg·g-1;5种重金属在主城居民头发中的含量均显著高于郊区居民头发中含量(t-检验,P<0.01),并且其组成与居民附近土壤样品的组成基本一致;5种重金属的含量在不同年龄段人群中的分布没有明显趋势,只是在郊区居民头发中的Cu和Zn含量随着年龄增长而减少;主城和郊区男性头发中Cd和Pb含量均显著高于女性(P<0.01),并且在主城和郊区吸烟者头发中的Cd和Pb显著高于非吸烟者(P<0.01);通过相关性分析发现主城和郊区中Cd、Cu、Ni和Pb之间具有相似的相关性模式,并且主成分分析结果显示,在主城中,人发Cu、Ni和Pb具有相似的来源,而在郊区中,人发Cd、Ni和Pb具有相似的来源. 相似文献
133.
Fe3O4/TiO2-H2O2非均相类Fenton体系对3,4-二氯三氟甲苯的降解 总被引:1,自引:1,他引:0
用Fe_3O_4/Ti O_2-H_2O_2体系对3,4-二氯三氟甲苯(3,4-DCBTE)进行降解反应研究,同时考察了pH值、催化剂投加量、H_2O_2投加量、温度等因素对3,4-DCBTE降解效率的影响.实验结果表明,Fe_3O_4/Ti O_2-H_2O_2非均相类Fenton体系对3,4-二氯三氟甲苯的处理效果极佳;并且在H_2O_2投加量为45.0 mg·L~(-1)、Fe_3O_4/TiO_2的物质的量比为1∶1、pH=3.0、温度为40.0℃的条件下反应效果最佳,去除率高达99.1%.同时从实验结果可以看出,pH在2.0~7.0范围内该体系对3,4-二氯三氟甲苯均有降解效果,说明该体系相比于传统的Fenton体系有较宽的pH适用范围.目标污染物的降解符合一级反应动力学,其发生反应所需的活化能为36.9 k J·mol~(-1). 相似文献
134.
不同铁营养状况下根系特征及蒸腾对黄瓜幼苗吸收镉的影响 总被引:3,自引:0,他引:3
采用营养液培养方法,研究了不同铁营养状况下的根系形态变化及蒸腾作用对不同品种黄瓜幼苗吸收镉的影响.结果表明,不加铁处理对地上部生物量的影响大于对根系的影响,并且不同品种间生物量差异显著.不加铁处理和低水平铁处理时,黄瓜根长变长、根表面积变大.与不加铁处理相比,加铁处理显著抑制了黄瓜根系对镉的吸收,中农5号(缺铁敏感黄瓜品种)和津春4号(缺铁不敏感黄瓜品种)每克根对镉的吸收量分别降低了25.5%~45.5%和28.8%~55.0%;但却增加了镉向地上部的转运,镉在叶中的分配系数分别增加了2.2~3.6倍(中农5号)和2.6~3.7倍(津春4号).缺铁敏感的中农5号吸镉总量与根长、根表面积都呈显著正相关性,而缺铁不敏感的津春4号吸镉总量与根长、根表面积之间的关系不显著.不管是中农5号还是津春4号,其蒸腾速率与每克根吸收镉的量均呈显著的正相关关系.不同铁营养状况影响了黄瓜幼苗的根系形态和蒸腾速率,从而影响了根系对镉的吸收,高铁水平显著抑制了黄瓜根系对镉的吸收. 相似文献
135.
针对压力容器制造监检中某些受检单位在法规标准的理解上存在误区或者疏忽、不知如何进行后续整改工作的现状,笔者结合多年压力容器监督检验的工作经验,提出自己的解决方案,以供参考,也希望广大读者在遇到类似情况时能够正确理解并执行相关法规标准. 相似文献
136.
通过模拟硫酸厂的沸腾焙烧炉,考察了黄铁矿焙烧过程中铊(T1)析出的影响因素.并通过分级提取法考察了黄铁矿烧渣中重金属的相态分布.结果表明,T1释放率随焙烧温度的升高而增加,随停留时间的增长而增加;当O2流量在20~300 mL/mi.范围变化时,T1释放率先增后减.环境中备受关注的重金属(如Pb、Cd、Cr等)在黄铁矿烧渣中以Pb为主,各相态Pb的总量达到1 429.20 μg/g,且黄铁矿烧渣中的重金属(除Cu和Sr外)主要是以分布于硅酸盐矿物相中的残余态形式存在,因此在环境中不易迁移释放.尽管黄铁矿烧渣中的重金属(除Cu和Sr外)不是以非残余态分布为主,但非残余态重金属的总量也不少,因此黄铁矿烧渣在环境中的潜在污染风险应当引起重视. 相似文献
137.
138.
Modulation of steroidogenesis by coastal waters and sewage effluents of Hong Kong, China, using the H295R assay 总被引:2,自引:1,他引:1
Gracia T Jones PD Higley EB Hilscherova K Newsted JL Murphy MB Chan AK Zhang X Hecker M Lam PK Wu RS Giesy JP 《Environmental science and pollution research international》2008,15(4):332-343
BACKGROUND, AIM, AND SCOPE: The presence of a variety of pollutants in the aquatic environment that can potentially interfere with the production of sex steroid hormones in wildlife and humans has been of increasing concern. The aim of the present study was to investigate the effects of extracts from Hong Kong marine waters, and influents and effluents from wastewater treatment plants on steroidogenesis using the H295R cell bioassay. After exposing H295R cells to extracts of water, the expression of four steroidogenic genes and the production of three steroid hormones were measured. MATERIALS AND METHODS: Water samples were collected during the summer of 2005 from 24 coastal marine areas and from the influents and effluents of two major waste water treatment plants (WWTPs) in Hong Kong, China. Samples were extracted by solid phase extraction (SPE). H295R cells were exposed for 48 h to dilutions of these extracts. Modulations of the expression of the steroidogenic genes CYP19, CYP17, 3betaHSD2, and CYP11beta2 were determined by measuring mRNA concentrations by real-time polymerase chain reaction (Q-RT-PCR). Production of the hormones progesterone (P), estradiol (E2), and testosterone (T) was quantified using enzyme linked immunosorbent assays (ELISA). RESULTS: Extracts from samples collected in two fish culture areas inhibited growth and proliferation of H295R cells at concentrations greater or equal to 10(5) L equivalents. The cells were exposed to the equivalent concentration of active substances in 10,000 L of water. Thus, to observe the same level of effect as observed in vitro on aquatic organisms would require a bioaccumulation factor of this same magnitude. None of the other 22 marine samples affected growth of the cells at any dilution tested. Twelve of the marine water samples completely inhibited the expression of CYP19 without affecting E2 production; inhibition of CYP17 expression was observed only in one of the samples while expression of CYP11beta2 was induced as much as five- and ninefold after exposure of cells to extracts from two locations. The expression of the progesterone gene 3betaHSD2 was not affected by any of the samples; only one sample induced approximately fourfold the production of E2. Although more than twofold inductions were observed for P and T production, none of these values were statistically significant to conclude effects on the production of these two hormones. While influents from WWTPs did not affect gene expression, an approximately 30% inhibition in the production of E2 and a 40% increase in P occurred for the exposure with influents from the Sha Tin and Stonecutters WWTPs, respectively. Effluents from WWTPs did not affect the production of any of the studied hormones, but a decrement in the expression of the aldosterone gene CYP11beta2 was observed for the Sha Tin WWTP exposure. No direct correlation could be established between gene expression and hormone production. DISCUSSION: Observed cytotoxicity in the two samples from fish culture areas suggest the presence of toxic compounds; chemical analysis is required for their full identification. Although effluents from WWTPs did not affect hormone production, other types of endocrine activity such as receptor-mediated effects cannot be ruled out. Interactions due to the complexity of the samples and alternative steroidogenic pathways might explain the lack of correlation between gene expression and hormone production results. CONCLUSIONS: Changes observed in gene expression and hormone production suggest the presence in Hong Kong coastal waters of pollutants with endocrine disruption potential and others of significant toxic effects. The aromatase and aldosterone genes seem to be the most affected by the exposures, while E2 and P are the hormones with more significant changes observed. Results also suggest effectiveness in the removing of compounds with endocrine activity by the WWTPs studied, as effluent samples did not significantly affect hormone production. The H295R cell showed to be a valuable toll in the battery required for the analysis of endocrine disrupting activities of complex environmental samples. RECOMMENDATIONS AND PERSPECTIVES: Due to the intrinsic complexity of environmental samples, a combination of analytical tools is required to realistically assess environmental conditions, especially in aquatic systems. In the evaluation of endocrine disrupting activities, the H295R cell bioassay should be used in combination with other genomic, biological, chemical, and hydrological tests to establish viable modes for endocrine disruption and identify compounds responsible for the observed effects. 相似文献
139.
140.
Comparative on Causes and Accumulation of Selenium in the Tree-rings Ambient High-selenium Coal Combustion Area from Yutangba, Hubei, China 总被引:1,自引:0,他引:1
Liu G Zhang Y Qi C Zheng L Chen Y Peng Z 《Environmental monitoring and assessment》2007,133(1-3):99-103
Toxic trace elements emitted during coal combustion are the main sources of air pollution. They are released into the atmosphere
mainly in the forms of fine ash, smoke and flue, and thus adversely affect plant, animal and human health. Selenium is one
of toxic and the most volatile in coal. Large amount of atmospheric emission of selenium, as well as selenium present and
scrubber stockpiles in ash may create serious environmental problems. In the paper, on the basis of investigating the abundance
and distribution of selenium in plant-rings during recent 20 years, the bioaccumulation of selenium is explained that selenium
in plant, which were collected from the village of selenium-rich coal combustion, is much higher than that in plants collected
away from the village of selenium-rich coal combustion. The main origins of selenium are selenium-rich coal combustion and
high-selenium rock weathered. The selenium recycle by food chain and selenium will accumulate and redistribute in environments. 相似文献