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1.
目的 了解炼铝作业氟的危害状况,为工业性氟病的防治提供依据.方法 对氟作业环境作职业卫生学调查.采用剂量患病率寿命表法对866名电解铝作业工人工业性氟病的发病情况进行流行病学调查,并作相关回归分析.结果 该厂接氟工人工业性氟病的总患病率为1.73%,且患病率随累积接氟量的增加而升高,呈高度正相关(r=0.997,P<0.01).并据所求得回归方程(y=10.34InD-18.21)推算出接氟工人控制患病率时的允许连续工作年限和今后的发病趋势.结论 该厂电解铝车间氟危害较重,应加强卫生防护措施,并建议将车间氟最高容许浓度从目前1 mg/m3降为0.5 mg/m3为宜.  相似文献   
2.
Goal, Scope and Background Rapid urbanization and the expansion of industrial activities in the past several decades have led to large increases in emissions of pollutants in the Pearl River Delta of south China. Recent reports have suggested that industrial emission is a major factor contributing to the damages in current natural ecosystem in the Delta area. Tree barks have been used successfully to monitor the levels of atmospheric metal deposition in many areas, but rarely in China. This study aimed at determining whether atmospheric heavy metal deposition from a Pb-Zn smeltery at Qujiang, Guangdong province, could be accurately reflected both in the inner bark and the outer bark of Masson pine (Pinus massoniana L.). The impact of the emission from smeltery on the soils beneath the trees and the relationships of the concentrations between the soils and the barks were also analyzed. Methods Barks around the bole of Pinus massoniana from a pine forest near a Pb-Zn smeltery at Qujiang and a reference forest at Dinghushan natural reserve were sampled with a stainless knife at an average height of 1.5 m above the ground. Mosses and lichens on the surface barks were cleaned prior to sampling. The samples were carefully divided into the inner bark (living part) and the outer bark (dead part) in the laboratory, and dried and ground, respectively. After being dry-ashed, the powder of the barks was dissolved in HNO3. The solutions were analyzed for iron (Fe), manganese (Mn), copper (Cu), zinc (Zn), chromium (Cr), nickel (Ni) and cobalt (Co) by inductively coupled plasmas emission spectrometry (ICP, PS-1000AT, USA) and Cadmium (Cd) and lead (Pb) by graphite furnace atomic absorption spectrometry (GFAAS, ZEENIT 60, Germany). Surface soils (0–10 cm) beneath the sample trees were also collected and analyzed for the selected metals. Results and Discussion Concentrations of the selected metals in soils at Qujiang were far above their environmental background values in the area, except for Fe and Mn, whilst at Dinghushan, they were far below their background values, except for Cd and Co. Levels of the metals, in particular Pb and Zn, in the soils beneath the sample trees at Qujiang were higher than those at Dinghushan with statistical significance. The result suggested that the pine forest soils at Qujiang had a great input of heavy metals from wet and dry atmospheric deposition, with the Pb-Zn smeltery most probably being the source. Levels of Cu, Fe, Mn, Zn, Ni and Pb at Qujiang, both in the inner and the outer bark, were statistically higher than those at Dinghushan. Higher concentrations of Pb, Fe, Zn and Cu may come from the stem-flow of elements leached from the canopy, soil splash on the 1.5 m height and sorption of metals in the mosses and lichens growing on the bark, which were direct or indirect results from the atmospheric deposition. Levels of heavy metals in the outer barks were associated well with the metal concentrations in the soil, reflecting the close relationships between the metal atmospheric deposition and their accumulation in the outer bark of Masson pine. The significant (p<0.01) correlations of Fe-Cu, Fe-Cr, Fe-Pb, Fe-Ni, Pb-Ni, and Pb-Zn in the outer barks at Qujiang again suggested a common source for the metals. The correlation only occurred between Pb and Ni, Cd and Co in the outer barks at Dinghushan, which suggested that those metals must possibly have other uncommon sources. Conclusions Atmospheric deposition of the selected metals was great at Qujiang, based on the levels in the bark of Pinus massoniana and on the concentrations in the soils beneath the trees compared with that at Dinghushan. Bark of Pinus massoniana, especially the outer bark, was an indicator of metal loading at least at the time of sampling. Recommendations and Perspectives The results from this study and the techniques employed constituted a new contribution to the development of biogeochemical methods for environmental monitoring particularly in areas with high frequency of pollution in China. The method would be of value for follow up studies aimed at the assessment of industrial pollution in other areas similar with the Pearl River Delta.  相似文献   
3.
镁厂忽视回转窑除尘系统的防燃防爆措施,已发生多起燃爆事故。本文提出多种防止燃爆的措施,实施后效果良好。  相似文献   
4.
沈阳某冶炼厂污染土壤中砷的稳定化研究   总被引:5,自引:0,他引:5  
稳定化是一种相对经济有效的治理重金属污染土壤的方法。文章以沈阳某冶炼厂厂区旧址的重金属复合污染土壤为研究对象,通过向土壤中添加不同药剂,研究了不同碱性化学物质对土壤砷稳定化的效果。结果表明,碳酸钠和硫化钠的加入对土壤pH的贡献均较大,但使砷的浸出毒性增强,对土壤中砷的稳定起负作用;碳酸钙和多硫化钙对土壤中砷的稳定化效果也不明显;氧化钙的效果最好,使得该重污染土壤中砷的浸出毒性降低到危险废弃物毒性浸出标准(GB5085.3-1996)以内。  相似文献   
5.
以广东某铅锌冶炼厂的废旧除尘布袋及其布袋上的飞灰为实验材料,以HNO3-H2O2-HF对布袋及飞灰进行微波全量消解,采用BCR三步浸提法提取飞灰中Cu、Zn、Pb、Cr、Ni、Cd 6种重金属,并利用火焰原子吸收仪器检测布袋及飞灰中6种重金属的含量及飞灰中各形态含量。结果表明,铅锌冶炼厂废旧布袋和飞灰中重金属含量较高,远大于《国家土壤环境质量标准》(GB 15168—1995)三级标准值。不同重金属在飞灰中的形态分布差异较大,Ni主要以残渣态和酸可交换态为主,Cu和Pb以残渣态为主,Zn的4种形态分布都较均匀,Cd、Zn潜在的迁移性最强。  相似文献   
6.
铅锌矿冶区土壤酶活性特征研究   总被引:6,自引:1,他引:6  
分析测试了铅锌矿冶区Pb、Zn、Cu、Cd复合污染条件下的土壤酶活性,分析了土壤重金属污染状况与土壤酶活性的相关关系。结果表明,随着采样点偏离废气排放口主导风向程度增大,Pb、Zn、Cu、Cd综合污染指数PI逐渐降低,土壤蛋白酶、脲酶、过氧化氢酶的活性逐渐增高且差异显著,变化程度中大到小的顺序为蛋白酶→脲酶→过氧化氢酶。剖面分布上,综合污染指数PI〉5的样地,基本呈现随土壤深度增加而土壤酶活性降低的趋势。蛋白酶、脲酶、过氧化氢酶的活性间呈极显著正相关,3种土壤酶活性与全磷呈极显著正相关,与有机质相关性较低。蛋白酶、脲酶、过氧化氢酶等土壤酶活性分布特征对矿冶区污染程度和土壤生态系统特性具有一定的指示作用。  相似文献   
7.
某铅冶炼厂对周边土壤质量和人体健康的影响   总被引:9,自引:6,他引:3  
为了解铅冶炼厂对周边土壤的污染程度和人体健康危害状况,对河南省某铅冶炼厂周边的土壤、村民血液和头发中的铅含量进行调查,探讨了铅冶炼厂卫生防护距离估算的合理性.结果表明,铅冶炼厂周边M村和Y村的儿童血铅含量全部超过国际铅中毒诊断标准,最高血铅含量为491μg.L-1,其轻度、中度和重度铅中毒率分别为52.5%、42.5%和5.0%;Y村的儿童发铅超标率达100%,最高值为156 mg.kg-1,儿童的发铅平均含量是成年人的2.9倍.同时,铅冶炼厂周边66.7%的农田表层土壤(0~20 cm)Pb含量超过土壤环境质量标准(GB 15618-1995)的二级标准(350 mg.kg-1,pH>7.5),最高值达1 687mg.kg-1,导致铅冶炼厂周边儿童的健康受到损害.因此,铅冶炼厂的卫生防护距离的科学估算及其周边重金属污染土壤的修复应引起重视.  相似文献   
8.
铅锌污染耕地中重金属耐受细菌调查   总被引:1,自引:0,他引:1  
对铅锌矿冶炼厂周围耕地中的细菌总数和抗性细菌群体数进行了调查。结果表明 ,随着污染的加重 ,土壤中可培养的细菌数量急剧减少 ,抗性细菌的比例增加。但是 ,细菌对Pb、Zn胁迫的适应进化反应不一样。经过长期的选择作用后 ,多数细菌群体能够耐受低浓度的Pb污染 (<2mmol·L-1) ,部分群体对低浓度Pb(0 .5mmol·L-1)有依赖性 ,但没有观察到能够耐受Pb浓度大于 4mmol·L-1的群体 ;0 .5mmol·L-1的Zn对细菌有抑制作用 ,但在所调查的样品中都存在能够耐受 4~ 6mmol·L-1Zn污染的群体 ,有的群体甚至能耐受 8mmol·L-1的Zn污染。能同时耐受Pb、Zn 2种重金属污染的群体数量较少 ,且耐受水平也较低 ,仅达到 2mmol·L-1。  相似文献   
9.
In the environment of a lead smeltery contamination with lead, zinc and cadmium was measured over a 15-year period. Efficient bag filters were installed in order to remove dust from the flue gases. This measure of improvement resulted in a drastic reduction of lead, zinc and cadmium content in suspended particles (by 92, 94 and 89%), to a lesser extent in depositions (by 79, 75 and 68%), whereas in household dust the reduction was considerably lower (by 53, 55 and 70%). It can be assumed that household dust contains also redispersed soil particles on which the dust from the smeltery flue gases has deposited over years. To determine to what extent contaminated soil continues to cause increased population exposure directly or through plants or pastures, in the period 1981–1985 the content of metallic ions in the soil was measured at three depths. Selective solubility of soil metallic compounds was analysed in water, in 1 mol ammoniumacetate solution and in 0.05 mol ethylenediaminetetra-acetic acid (EDTA) solution in relation to their solubility in suspended particles, depositions and household dust. A considerably low portion of soluble metallic compounds was found in the soil and physico-chemical characteristics of the soil and portion of metallic ions bound to fulvice and humic acids were determined. The behaviour of metallic ions in contact with soil samples was studied in laboratory and it was found that approximately 50% of lead, 70% of zinc and 7% of cadmium ions change into non-soluble or poorly soluble compounds. By qualitative phase analysis in the non-soluble fraction PbO2, Pb3P4O13, Zn(OH)2, ZnO, Fe2O3 and Cd(OH)2 were identified.  相似文献   
10.
废弃铅锌冶炼厂重金属污染场地的健康风险评价   总被引:2,自引:0,他引:2  
通过对广西某废弃铅锌冶炼厂区进行布点采样、监测分析,选取Cu、Pb、Zn、Cd、Cr、As六种重金属元素作为评价因子,对污染场地进行健康风险评价.结果显示,指数评价法表明厂区污染状况为废渣>>建筑垃圾>土壤,Cd >Zn >As >Pb >Cu> Cr,土壤受到中度污染,废渣和建筑垃圾受到重度污染.健康风险评价法表明土壤、废渣和建筑垃圾的危害商分别为2.032、13.891、2.975,非致癌危害废渣>>建筑垃圾>土壤;Cu、Zn、Cr、Cd、As的危害商分别为0.053、0.118、0.184、7.001、11.542,非致癌危害As >Cd >Cr>Zn >Cu.土壤、废渣和建筑垃圾的致癌风险分别为5.387E-04、7.954E-04、2.455E-04,致癌危害废渣>土壤>建筑垃圾;As、Cd、Cr的致癌风险分别为5233E-04、2.400E-05、1.032E-03,致癌危害Cr>As >Cd.综上,人体健康危害废渣>建筑垃圾>土壤,主要危害元素为As、Cd、Cr.  相似文献   
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