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591.
592.
重金属和氯酚对霍甫水丝蚓的急性毒性及水环境安全评价 总被引:2,自引:0,他引:2
研究了Hg2+、Cr6+和Pb2+等重金属及2,4-二氯酚、2,4,6-三氯酚和五氯酚等氯酚类物质对霍甫水丝蚓(Limnodrilus hoffmeisteri)的急性毒性效应.结果表明, Hg2+、Cr6+和Pb2+对霍甫水丝蚓的96h-LC50分别为0.16,4.25,76.24mg/L;2,4-二氯酚、2,4,6-三氯酚和五氯酚对霍甫水丝蚓的96h-LC50分别为20.73,7.86,2.42mg/L. 根据6种污染物对霍甫水丝蚓的毒性实验结果,预测水体中Hg2+、Cr6+和Pb2+对霍甫水丝蚓的安全浓度SC分别为16,425,7624μg/L,最大允许浓度分别为1.6,42.5,762.4μg/L;2,4-二氯酚、2,4,6-三氯酚和五氯酚对霍甫水丝蚓的安全浓度SC分别为2073,786,242μg/L,最大允许浓度MPC分别为207.3,78.6,24.2μg/L.6种污染物的毒性评估结果显示,Hg2+对霍甫水丝蚓表现为极高毒性,Cr6+、2,4,6-三氯酚和五氯酚对其表现为高等毒性,Pb2+和2,4-二氯酚表现为中等毒性.3种重金属对其毒性顺序为:Hg2+ > Cr6+ > Pb2+;3种氯酚类物质对其毒性大小依次为:五氯酚 > 2,4,6-三氯酚 > 2,4-二氯酚. 相似文献
593.
594.
100 MW以下燃煤机组呈单台容量小、总台数大的特点,是燃煤重金属污染的主要排放源之一.选择7台12 MW燃煤机组,采用美国环境保护局Method 29法现场检测燃煤机组烟气重金属排放浓度,分析烟气中Hg、Pb、Cr、As的排放特征;采集机组产生的飞灰和底灰,分析除尘技术对重金属的富集特性.结果表明:100 MW以下燃煤机组烟气中重金属经脱硝除尘脱硫装置协同控制后,ρ(Hg)为0.20~0.44 μg/m3,烟气Hg以气态形式存在,其占比为100.0%;ρ(Pb)为0.5~2.6 μg/m3,烟气Pb主要以气态形式存在,其占比为38.7%~92.1%;ρ(As)为0.6~3.0 μg/m3,烟气As主要以气态形式存在,其占比为67.8%~100.0%;ρ(Cr)为3.6~23.9 μg/m3,烟气Cr主要以颗粒态形式存在,其占比为65.8%~99.2%.飞灰富集Hg、Pb、Cr、As的能力大于底灰.重金属主要富集于飞灰中的细颗粒物中,采取除尘技术可有效协同控制烟气中的Hg、Pb、Cr、As;飞灰中重金属元素Hg、Pb相对富集系数均与煤中硫含量呈负相关,半干法脱硫+袋式除尘技术对飞灰富集Hg有促进作用.小型燃煤机组烟气重金属Hg、Pb、Cr、As的排放因子分别为0.002 2~0.005 1、5~17、42~160、7~24 mg/t.研究显示,100 MW以下燃煤机组与100 MW及以上燃煤机组烟气重金属Hg、Pb、Cr、As排放特征不同,100 MW以下燃煤机组烟气Hg排放浓度较小,二者烟气Pb、Cr、As排放浓度相近,选用湿式电除尘技术可进一步降低烟气Hg、Pb、Cr、As的排放浓度. 相似文献
595.
Effect of sediment size on bioleaching of heavy metals from contaminated sediments of Izmir Inner Bay 总被引:7,自引:0,他引:7
The effect of sediment size on metals bioleaching from bay sediments was investigated by using fine (< 45 μm), medium (45-300 μm), and coarse (300-2000 μm) size fractions of a sediment sample contaminated with Cr, Cu, Pb, and Zn. Chemical speciation of the metals in bulk and size fractions of sediment were studied before and after bioleaching. Microbial activity was provided with mixed cultures of Acidithiobacillus thiooxidans and Acidithiobacillus ferrooxidans. The bioleaching process was carried out in flask experiments for 48 days, by using 5% (W/V) of solid concentration in suspension. Bioleaching was found to be efficient for the removal of selected heavy metals from every size fraction of sediments, where the experiments with the smaller particles resulted in the highest solubilization ratios. At the end of the experimental period, Cr, Cu, Pb and Zn were solubilized to the ratios of 68%, 88%, 72%, and 91% from the fine sediment, respectively. Higher removal efficiencies can be explained by the larger surface area provided by the smaller particles. The changes in the chemical forms of metals were determined and most of the metal releases were observed from the reducible and organic fractions independent from grain size. Higher concentrations were monitored in the residual fraction after bioleaching period, suggesting they are trapped in this fraction, and cannot be solubilized under natural conditions. 相似文献
596.
Heavy metals in rice and garden vegetables and their potential health risks to
inhabitants in the vicinity of an industrial zone in Jiangsu, China 总被引:10,自引:0,他引:10
Contamination of soil and agricultural products by heavy metals resulting from rapid industrial development has caused major concern. In this study, we investigated heavy metal (Cu, Zn, Pb, Cr, Hg and Cd) concentrations in rice and garden vegetables, as well as in cultivated soils, in a rural-industrial developed region in southern Jiangsu, China, and estimated the potential health risks of metals to the inhabitants via consumption of locally produced rice and garden vegetables. A questionnaire-based survey on dietary consumption rates of foodstuffs showed that rice and vegetables accounted for 64% of total foodstuffs consumed, and over 60% of rice and vegetables were grown in the local region. Average concentrations of Cr, Cu, Zn, Cd, Hg and Pb were 0.75, 2.64, 12.00, 0.014, 0.006 and 0.054 mg/kg dw (dry weight) in rice and were 0.67, 1.18, 4.34, 0.011, 0.002 and 0.058 mg/kg fw (fresh weight) in garden vegetables, respectively. These values were all below the maximum allowable concentration in food in China except for Cr in vegetables. Leafy vegetables had higher metal concentrations than solanaceae vegetables. Average daily intake of Cr, Cu, Zn, Cd, Hg and Pb through the consumption of rice and garden vegetables were 5.66, 16.90, 74.21, 0.10, 0.04 and 0.43 μg/(kg·day), respectively. Although Hazard Quotient values of individual metals were all lower than 1, when all six metal intakes via self-planted rice and garden vegetables were combined, the Hazard Index value was close to 1. Potential health risks from exposure to heavy metals in self-planted rice and garden vegetables need more attention. 相似文献
597.
Mohsen Soleimani Nasibeh Amini Babak Sadeghian Dongsheng Wang Liping Fang 《环境科学学报(英文版)》2018,30(10):166-175
The presence of heavy metals(HMs) in particulate matters(PMs) particularly fine particles such as PM_(2.5) poses potential risk to the health of human being. The purpose of this study was to analyze the contents of HMs in PM_(2.5) in the atmospheric monitoring stations in Isfahan city,Iran, in different seasons between March 2014 and March 2015 and their source identification using principle component analysis(PCA). The samples of PM_(2.5) were taken using a high volume sampler in 7 monitoring stations located throughout the city and industrial zones since March 2014 to March 2015. The HMs content of the samples was measured using ICP-MS.The results showed that the concentrations of As, Cd and Ni were in a range of 23–36, 1–12,and 5–76 ng/m~3 at all the stations which exceeded the US-EPA standards. Furthermore,the concentrations of Cr and Cu reached to 153 and 167 ng/m~3 in some stations which were also higher than the standard levels. Depending on the potential sources of HMs, their concentration in PM_(2.5) through the various seasons was different. PCA illustrated that the different potential sources of HMs in the atmosphere, showing that the most important sources of HMs originated from fossil fuel combustion, abrasion of vehicle tires, industrial activities(e.g., iron and steel industries) and dust storms. Management and control of air pollution of industrial plants and vehicles are suggested for decreasing the risk of the HMs in the region. 相似文献
598.
采用半连续实验,研究中、低温条件下酵母浸出物对厌氧系统中Co、Fe溶解性能和生物有效性的改善作用.结果表明,酵母浸出物对提高纯水中和投加不同有机基质的水中溶解态Co、Fe浓度有明显效果,能显著提高低温下厌氧系统中Co、Fe的生物有效性.在15℃和35℃下,投加酵母浸出物后,水中溶解态Co、Fe浓度均有上升,其中Fe浓度升高明显.啤酒废水等含有酵母浸出物的废水对这种提升作用也有帮助.在15℃厌氧系统中移除酵母浸出物、Co、Fe之后,COD去除率由91.6%下降到58%;重新投加Co、Fe后效果有所回升,其中同时添加酵母浸出物的系统,其COD去除率回升明显,升幅达31.6%,产甲烷速率也呈上升趋势,证实了同时投加酵母浸出物和Co、Fe可有效促进低温下厌氧生物系统的处理效能. 相似文献
599.
骨炭修复重金属污染土壤和降低基因毒性的研究 总被引:7,自引:0,他引:7
采用分级提取的方法研究了施加骨炭对污染土壤重金属的固定效果,结果表明,土壤施加10 mg·kg-1骨炭后水溶态、交换态、碳酸盐结合态和铁锰氧化物结合态Pb的浓度都显著下降;而加入骨炭后土壤有机结合态Pb的浓度显著上升,表明骨炭可以吸附、固定土壤中的Pb,改变Pb的化学形态,降低Pb的生物可利用性.加入骨炭后土壤中水溶态和交换态Cd的浓度都显著下降,残渣态Cd的浓度明显上升.骨炭处理对土壤中Cu化学形态的影响和Pb相似,表明骨炭可以吸附固定土壤中的Cu.骨炭处理对Zn也有一定的固定效果,降低了土壤中水溶态的Zn.采用植物彗星实验研究了施加骨炭对土壤基因毒性的影响,表明加入骨炭后减轻了污染土壤对洋葱根尖细胞的DNA的损伤,降低了土壤污染对植物的基因毒性.生物评价和化学评价的结果均表明骨炭是重金属污染土壤的有效修复剂,能有效降低污染土壤中重金属的生物有效性和对植物的毒性. 相似文献
600.