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随着化学工业的快速发展,持久性有机污染物(POPs)的污染愈来愈成为突出的环境问题,对生态和人体健康构成严重威胁。文章从生物学的角度,对POPs的特性、分布和对动物与人体健康的危害等方面作了简要的介绍。对POPs污染与危害,提出了相应的治理措施。 相似文献
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应用物种敏感度分布曲线法(SSD)分别计算了DDT、艾氏剂、狄试剂、异狄氏剂、七氯、毒杀酚、林丹、硫丹等8 类持久性有机污染物(POPs)对保护95%的淡水生物时在淡水环境中的浓度阈值(HC5), 水生生物对不同化学物质的敏感度差异较大, 其中对异狄氏剂敏感度最高, 其HC5 值为0.08 μg·L–1, 对毒杀酚、林丹的敏感性较低, 其HC5分别为1.35 μg·L–1、1.24 μg·L–1。以Sigmoidal 型函数为基本模型, 采用Sigmoid、logistic、Weibull、Gompertz、Hill、Chapman 六种多参数模型分别对DDT 的毒理数据进行了浓度对数累积频率拟合, 最后确定以Sigmoid, 5 parameters 函数进行SSD 拟合, 研究结果表明, 八类污染物质的SSD 拟合曲线R2 均大于0.96, 拟合程度高, 拟合效果较好, 能够反映不同物种毒理数据点的累积概率分布。 相似文献
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某污灌区重金属与两种持久性有机污染物(POPs)污染趋势评价 总被引:5,自引:0,他引:5
对某污灌区的土壤剖面进行采样分析,利用不同的评价方法进行评价,结果表明,土壤中金属元素Cr、As、HG、Cd、Cu、Pb、Ni、Zn和持久性有机污染物BHC、DDT含量有上升趋势,80%以上的表层土壤样品污染物含量超过土壤底层,85%以上的土壤样品污染物含量明显超过当地土壤的自然背景值.通过污染物在土壤中的残留模型预测,两种有机污染物和元素Cr、As、Hg、Cd、Cu会在土壤中累积,持续的污水灌溉可能使在土壤中累积的这些污染物进入地下水或食物链,对环境健康造成危害. 相似文献
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持久性有机污染物(POPs)是伴随着人类工业化发展而产生的合成类污染物,具有高毒性、持久性、长迁移性和高生物富集性等特点,POPs污染物的微生物降解一直是环境科学与技术应用领域的研究热点。微生物降解技术修复POPs污染环境具有无二次污染、成本低、快速简便等优点,拥有广泛的应用前景。本文论述了各种POPs微生物分解代谢的最新研究进展,包括降解性微生物资源以及降解机制。此外,还讨论了计算生物学、合成生物学、基因组学等技术在POPs微生物降解中的潜力和应用,以期为环境中持久性有机污染物的修复提供参考。 相似文献
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尽管南极被认为是远离人类污染的净土,但近年来不断发现有机氯农药、多氯联苯、多溴联苯醚和全/多氟化合物等传统和\"新型\"持久性有机污染物(POPs)存在于南极的非生物及生物环境中,由此引发了全球各国对南极生态系统的不断关注。POPs性质稳定,能够久存于环境中,并具有毒性,易富集于生物体内并产生一定的健康风险。为了解南极和南大洋持久性有机污染物的生物地球化学过程及其对生物种群和生态系统产生的影响,本文以南大洋典型食物链为主线并结合南极海洋生物生活习性,综述了近年来国内外学者对南极海洋食物链不同营养级生物体内POPs的研究现状,并对南极海洋生态系统POPs研究前沿和热点提出了展望。研究显示,南极地区是世界上污染程度最低的地区,但过去几十年有关南极海洋生物中POPs的类型不断增加,表明该地区受到地区内/外活动的影响日益增加。零散的研究数据以及各异的技术方法使得目前仍无法阐析POPs沿食物链传递的机制。有关南极海洋生态系统POPs动态的长期监测与评估计划亟待建立。 相似文献
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随着海岸带快速城市化和经济发展,人类活动对近海生态系统的影响日益增加。通过对国内外大量相关文献的分析和与国际专家的研讨,分别从海洋资源开发、海岸带城市化和环境变化等几个方面概述了陆源人类活动对近海生态系统的影响。目前陆源人类活动导致近海生态系统出现的主要问题有:海洋生物资源过度捕捞、海岸带富营养化、海洋酸化、珊瑚礁退化、海洋垃圾、以及海岸带矿产开采等高强度开发活动引发的重金属和持久性有机污染物污染等。这些问题会直接导致海洋生物群落结构变化、影响水质、降低海洋生物多样性,最终影响海洋生态系统服务功能,威胁海洋生态系统健康。这些问题的根源多来自陆地,必须将海洋和陆地作为一个有机整体,整合海陆系统相互作用的科学计划,推进海洋资源和近海生态系统的可持续管理。 相似文献
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钴对蔬菜毒害的临界值 总被引:4,自引:0,他引:4
采用水培+土培的方法研究了钴对蔬菜的毒害临界值。首先从18种福建常见蔬菜中筛选出钴高敏感蔬菜,再通过土培试验研究土壤钴对高敏感蔬菜的毒害临界浓度。结果表明,在水培条件下钴对蔬菜生长存在较低浓度的刺激效应和高浓度的抑制效应。综合表观症状和蔬菜地上部生物量减少20%的效应浓度值(EC20)确定,早熟5号大白菜(Brassica pekinensis)和黄瓜(Cucumis sativus)为钴高敏感作物。以黄瓜为指示作物的土培试验表明,钴对黄瓜未表现出增产效应,随着钴添加量的增加,黄瓜地上部生物量显著下降。以黄瓜地上部减产10%和野外土壤有效钴和全钴的回归关系为依据,确定土壤钴毒害临界值为:土壤有效钴(DTPA)为2.7mg·kg-1,土壤全钴含量为98mg·kg-1。 相似文献
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随着经济的发展, 分布于热带、亚热带沿海潮间带的红树林遭受到各类污染物的威胁。各种陆源有机污染物严重威胁着红树林湿地的水体、沉积物及生物体。汇总我国红树林生态系统水、沉积物及生物体内多环芳烃、多氯联苯、有机氯农药、抗生素、溴代阻燃剂等机污染物的研究结果, 进而评价我国红树林生态系统的有机污染现状及生态风险。总体来看, 已有多种污染物在红树林水体、沉积物及生物体中检出, 有机污染物含量处于较低水平。红树林水体中有农药及抗生素检出; 沉积物中多环芳烃、多氯联苯含量在珠江口地区最高, 二者在沉积物中的潜在生态风险较低; DDT 在红树林沉积物中的生态风险属于较低水平, 但部分红树林区DDT 含量存在超过ERM 的现象, 应引起重视;多溴联苯醚等“新型”有机污染物在珠江口红树林沉积物中普遍检出。多种有机污染物在红树林植物及林内生物体种存在生物富集效应。红树林是多种有机污染物的重要蓄积地。 相似文献
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Huang Yu-shan 《植物学报(英文版)》1992,34(2)
Heavy metal binding complexes found in the cytoplasm of plant cells are widely reported to be responsible fox metal resistance. It is believed that these metal binding complexes may play an important role in the accumulation of heavy metal and preventing them from entering the ptant metabolic pathways. This review summarizes information on purification, characterization and properties of these molecules. In view of their inducibility, low molecular weight, specific optical characteristics (high absorption at 254nm and low absorption at 280 nm), high cysteine content and high capacity for binding heavy metal, these complexes were once proposed to be metallothionein-like molecules. However differing from metallothionein of animal system, heavy metal binding complexes in plants are comprised mainly of three amino acids with a unique structure of (γ-Glu-Cys)n-Gly ((γ-EC)nG) (n=2—11). With the presence of γ-carboxyl group peptide linkage, the complexes are thought not to be synthesized via mRNA but the product of biosynthetic pathway using glutatkione as precursor. 相似文献
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M. Safiur Rahman Narottam Saha A. Hossain Molla Sharif M. Al-Reza 《Soil & Sediment Contamination》2014,23(4):353-373
Heavy metals (Pb, Cd, Ni, Cr, Cu, Zn, Mn, and As) concentration was investigated in the industrial effluents, water, sediment, and fish samples collected around the Dhaka Export Processing Zone, Savar, Bangladesh, to evaluate the level of contamination. The metals concentration in the industrial effluents of DEPZ and in the water samples of Dhalaibeel (lowland cum lake) and Bangshi River were significantly higher compared to the guideline values for industrial effluents and for drinking water (WHO and USEPA), respectively. The sedimentary metal concentrations were found to be lower than the respective probable effect concentrations (PECs) following the sediment quality guidelines. Furthermore, in comparison with the fish standards, the studied fish species were not found to be contaminated by heavy metals. Principal component analysis and cluster analysis demonstrated that the wastewater from the numerous industries and the domestic sewages around the DEPZ might have a possible impact on heavy metals contamination in the study area. The Pearson correlation analysis showed significant correlations (p < 0.01 and p < 0.05) between most of the metals in the samples of effluents, water, sediments, and fish muscles. The percentage enrichment factor (EF%) and geo-accumulation index () were followed to evaluate metal contamination in the sediment samples. Dhalaibeel sediment was maximally enriched for Cr (53.55%) and Bangshi River sediment for Zn (54.37%). The geo-accumulation index values for the sediment samples were less than zero, indicating that the sediment samples were free from contamination. This study could be used as a model study to assess the impact of anthropogenic activities on heavy metals contamination in aquatic ecosystems. 相似文献
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Heavy metal-resistant bacteria as extremophiles: molecular physiology and biotechnological use of Ralstonia sp. CH34 总被引:2,自引:0,他引:2
Nies DH 《Extremophiles : life under extreme conditions》2000,4(2):77-82
In contrast to thermophilic or psychrophilic organisms, heavy metal-resistant bacteria do not supply enzymes that are active
under harsh conditions, but are themselves tools for the evaluation and remediation of heavy metal-contaminated environments.
Ralstonia sp. CH34 is a gram-negative bacterium with a remarkable set of resistance determinants, allowing this bacterium to live in
extreme environments that are heavily contaminated with toxic metal ions. These heavy metal ions are mostly detoxified by
inducible ion efflux systems that reduce the intracellular concentration of a given ion by active export. Because all metal
resistance determinants in this bacterium are inducible, their regulatory systems can be used to develop biosensors that measure
the biologically important concentrations of heavy metals in an environment. Resistance based on metal ion efflux detoxifies
only the cytoplasm of the respective cell. Therefore, this resistance mechanism cannot be used directly to develop biotechnological
procedures; however, metal ion efflux can protect a cell in a metal-contaminated environment. Thus, the cell can be enabled
to mediate biochemical reactions such as precipitation of heavy metals with the carbon dioxide produced during growth or degradation
of xenobiotics.
Received: July 11, 1999 / Accepted: December 27, 1999 相似文献
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A. Rehman Farah R. Shakoori A. R. Shakoori 《World journal of microbiology & biotechnology》2008,24(1):47-53
The heavy metal resistant ciliate, Stylonychia mytilus, isolated from industrial wastewater has been shown to be potential bioremediator of contaminated wastewater. The ciliate showed tolerance against Zn2+ (30 μg/mL), Hg2+ (16 μg/mL) and Ni2+ (16 μg/mL). The metal ions slowed down the growth of the ciliate as compared with the culture grown without metal stress. The reduction in cell population was 46% for Cd2+, 38% for Hg2+, 23% for Zn2+, 39% for Cu2+ and 51% for Ni2+ after 8 days of metal stress. S. mytilus reduced 91% of Cd2+, 90% of Hg2+ and 98% of Zn2+ from the medium after 96 h of incubation in a culture medium containing 10 μg/mL of the respective metal ions. Besides this, the ciliate could also remove 88% of Cu2+ and 73% Ni2+ from the medium containing 5 μg/mL of each metal after 96 h. The ability of Stylonychia to take up variety of heavy metals from the medium could be exploited for metal detoxification and environmental clean-up operations. 相似文献
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Mohammad I. Al-Wabel Adel R.A. Usman Ahmed H. El-Naggar Anwar A. Aly Hesham M. Ibrahim Salem Elmaghraby Abdulrasoul Al-Omran 《Saudi Journal of Biological Sciences》2015,22(4):503-511
The objective of this study was to assess the use of Concarpus biochar as a soil amendment for reducing heavy metal accessibility and uptake by maize plants (Zea mays L.). The impacts of biochar rates (0.0, 1.0, 3.0, and 5.0% w/w) and two soil moisture levels (75% and 100% of field capacity, FC) on immobilization and availability of Fe, Mn, Zn, Cd, Cu and Pb to maize plants as well as its application effects on soil pH, EC, bulk density, and moisture content were evaluated using heavy metal-contaminated soil collected from mining area. The biochar addition significantly decreased the bulk density and increased moisture content of soil. Applying biochar significantly reduced NH4OAc- or AB-DTPA-extractable heavy metal concentrations of soils, indicating metal immobilization. Conocarpus biochar increased shoot dry biomass of maize plants by 54.5–102% at 75% FC and 133–266% at 100% FC. Moreover, applying biochar significantly reduced shoot heavy metal concentrations in maize plants (except for Fe at 75% FC) in response to increasing application rates, with a highest decrease of 51.3% and 60.5% for Mn, 28% and 21.2% for Zn, 60% and 29.5% for Cu, 53.2% and 47.2% for Cd at soil moisture levels of 75% FC and 100% FC, respectively. The results suggest that biochar may be effectively used as a soil amendment for heavy metal immobilization and in reducing its phytotoxicity. 相似文献
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Contamination and spatial distribution of heavy metals in soil of Xiangxi River water-level-fluctuating zone of the Three Gorges Reservoir,China 总被引:1,自引:0,他引:1
The Three Gorges Reservoir is the largest hydroelectric project in China. It forms water-level-fluctuating (WLF) zones with a water level difference which can reach 30 m and a total area of 349 km2 along the Yangtze River. To determine the pollution level and spatial distribution of heavy metals in WLF regions, Xiangxi River (XXR), the largest first-order tributary, was selected as the study area. Both single-factor and multi-factor evaluation methods were employed to assess the contamination indices of heavy metals in soil. The results showed that the pollution degree for sampling sites varied from slight to moderate pollution levels, where 64% were in slight pollution degree and 4% were in moderate pollution degree. Approximately 68% of the sites were polluted. The ranking of 6 different kinds of heavy metals according to pollution degree was Cd > Pb > Cr > Hg > Ni > Cu. While Cd and Pb contributed the most to the pollutions, the contributions of the other four remained minor. Furthermore, a spatial distribution map of the comprehensive contamination index for the XXR basin is generated. The concentrations of heavy metals in sediments along 4 transects showed an overall decreasing trend with increasing elevation. 相似文献
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Glenn L. Sia Su Gliceria B. Ramos Maria Lilibeth L. Sia Su 《Saudi Journal of Biological Sciences》2013,20(4):353-355
This study aims to assess the bioaccumulation of total lead and the effect of heavy metal on the muscles of fish obtained in the coastal lagoon of the Manila Bay. Fish species muscles were assessed for lead concentrations and were examined for histological alterations. Results showed that lead bioaccumulation in the muscles, and a degree of disintegration in the muscle fibers of all the fish examined were found. 相似文献
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Heavy metals have been shown to negatively affect the growth of ectomycorrhizal fungi (ECMF). In addition, ECMF have been shown to accumulate heavy metals and to protect host trees from metal toxicity. However, specific literature on the interactions between ECMF and mercury (Hg) is scant. This paper describes the responses of ECMF to Hg in axenic culture conditions. Six ECMF from an area with no known history of direct Hg contamination were tested to determine their sensitivity to Hg. ECMF were incubated on solid medium amended with Hg (0–50 μM) as HgCl2 and the effect of Hg on radial growth was determined. The effect of preexposure cultivation on Hg sensitivity, the effect of Hg on biomass production, and the ability to accumulate Hg were determined for four of the ECMF. At micromolar concentrations, Hg significantly inhibited the radial growth rate of ECMF. This inhibitory effect was lessened in some ECMF when an established colony was exposed to Hg. Mercury lowered biomass production by some ECMF, and ECMF accumulate Hg from a solid growth substrate in direct relation to the amount of Hg added to the media. Possible implications for ECMF communities in Hg-impacted areas are discussed. 相似文献

