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991.
微生物诱导碳酸盐沉淀(MICP)可将游离的重金属离子转化为稳定的矿化物,在修复土壤重金属污染方面具有广阔的应用前景.本研究从铜陵矿区周边土壤中筛选得到1株产脲酶且耐镉矿化菌株CZW-1,16S rDNA鉴定为芽孢杆菌(Bacillus sp.),并将其利用于添加外源Ca2+的矿化固结Cd2+实验中.通过扫描电镜(SEM)、傅立叶红外光谱(FT-IR)以及X射线衍射(XRD)对矿化产物进行表征和分析.结果表明,添加一定浓度的Ca2+可促进细菌的生长,其最佳浓度为20 mmol·L-1.且Ca2+的添加可提高细菌的最小抑制浓度和促进脲酶活性,提高对Cd2+的矿化率,加钙前后的矿化率由68.93%提高到75.95%.通过对矿化物的定性分析,可知加钙前后的矿物沉淀由单一CdCO3变为CdCO3和CaCO3的复合沉淀,其表面也由严密紧实变成填满了小颗粒CdCO3的多孔状.  相似文献   
992.
《环境化学》2012,31(6)
在pH 6.8 Britton-Robinson(BR)缓冲介质中,镉(Ⅱ)与1,10-菲啰啉(Phen)作用后与全氟辛烷磺酸(PFOS)形成离子缔合物,使体系的共振光散射信号显著增强.最大散射峰位于307.0 nm处,其增强散射信号强度与镉(Ⅱ)的浓度在6.0—342.5 ng·mL-1范围内呈线性关系,据此建立了测定镉(Ⅱ)含量的共振光散射分析方法,检出限(3!)为0.6 ng·mL-1,研究了反应产物的RLS光谱特征,适宜的反应条件和影响因素,考察了共存物质的影响.该方法用于自来水和实验室废水样中镉(Ⅱ)的测定,RSD≤4.4%.  相似文献   
993.
镉极易在人体内蓄积且自然排泄缓慢,对人体健康危害严重,因此关于镉毒性的干预措施及机理研究意义重大。系统总结了螯合剂、金属硫蛋白、营养元素(锌、硒、钙、铁和维生素等),以及中药对镉毒性的干预作用及其机理。目前,镉中毒的许多干预措施均是利用与镉具有更高亲和性的一些外加物质,在动物体内与镉形成易于排出体外的复合物,再通过动物正常的生理活动将镉排出,以消除镉对机体内一些必需元素的正常新陈代谢活动的干扰。中药对镉中毒的干预机理可能成为新的研究热点。  相似文献   
994.
人居生活废弃物生物黑炭对水溶液中Cd^2+的吸附研究   总被引:1,自引:0,他引:1  
以人居生活废弃物生物黑炭为材料,探讨生物黑炭对Cd^2+的吸附动力学及热力学特性,通过平衡吸附法研究吸附时间、Cd^2+初始质量浓度、吸附剂投加量、溶液pH值以及黑炭粒径对Cd^2+吸附率的影响。结果表明,吸附时间为2h时基本达到吸附平衡,准二级动力学方程能很好地描述生物黑炭对Cd^2+的吸附过程。Langmuir模型能较好地描述生物黑炭对Cd^2+的等温吸附过程,根据该模型模拟得到25℃条件下Cd^2+最大吸附量为6.22 mg·g^-1 Cd^2+去除率随生物黑炭投加量的增加而增大;生物黑炭对Cd^2+吸附量随其粒径减小而增大;溶液初始pH值为4.0-7.5时,pH值变化对Cd2’吸附量的影响不显著。采用人居生活废弃物生物黑炭去除水溶液中Cd^2+时,控制溶液Cd^2+初始质量浓度30mg·L^-1,粒径小于0.25mm,投加水平8g·L^-1,反应温度25℃,反应时间1-2h,Cd^2+去除率可达80%。人居生活废弃物生物黑炭可以作为去除污染水体中Cd^2+的吸附剂。  相似文献   
995.
基于梯度薄膜扩散技术评估黑麦草吸收Cd的研究   总被引:2,自引:0,他引:2       下载免费PDF全文
分别采用固态结合相(Chelex100)和液态结合相(聚丙烯酸钠,PAAS)的梯度薄膜扩散技术(DGT)对盆栽黑麦草实验中的土壤有效态Cd进行了提取,结果表明2种不同结合相的DGT技术提取的土壤有效态Cd含量与黑麦草地上部和地下部的Cd含量都呈显著相关关系,其相关系数分别为0.90,0.89(Chelex100-DGT)和0.90,0.87(PAAS-DGT).运用多元统计分析方法研究土壤pH值、阳离子交换量(CEC)、有机质(OM)和土壤颗粒组成等理化指标的影响,提取出2种主成分因子,建立逐步回归模型.第1主成分与OM和黏粒组成之间呈显著相关,定义为代表土壤中影响重金属生物有效性的“有机指标”,第2主成分则土壤pH值和CEC相关程度较高,定义为代表土壤中影响重金属生物有效性的“无机指标”.研究表明Chelex100-DGT和PAAS-DGT技术均能较好预测黑麦草对Cd的吸收,且包含了土壤理化性质的影响.  相似文献   
996.
黑土不同粒径有机-矿质复合体对镉的吸附特性   总被引:5,自引:1,他引:4  
采用振荡平衡法研究了黑土不同粒级有机-矿质复合体对Cd2+的吸附等温过程和吸附动力学过程,并采用常见数值模型进行了拟合. 结果表明,原土及各粒级复合体对Cd2+的吸附量随平衡液中ρ(Cd2+)的增加而增加. 各粒级组分对Cd2+的吸附量表现为黏粒>粉粒>原土>粗砂>细砂. Langmuir和Freundlich方程对Cd2+的等温吸附过程均有较好的拟合效果,线性方程拟合效果较差. 最大吸附量与吸附作用强度均呈随粒径增大而减小的趋势. 对影响最大吸附量和吸附作用强度的因子进行回归分析表明,w(有机质)、CEC(阳离子交换量)和比表面积的影响较大,其中w(有机质)是最主要因素,CEC和比表面积的影响次之. 各粒级复合体对土壤吸附Cd2+的贡献率为粉粒>细砂>黏粒>粗砂,99%的Cd2+吸附在<200 μm的组分上. 不同粒级组分对Cd2+的吸附动力学过程可分为0~20 min的快速反应阶段(吸附量均达到饱和吸附量的90%以上)和慢速反应阶段. 各组分对Cd2+的吸附符合二级动力学过程,表明吸附过程以化学吸附为主,并且吸附速率随颗粒粒径的增大而减小.   相似文献   
997.
High-affinity and specific monoclonal antibodies against cadmium-ethylene diamine tetraacetic acid (EDTA) complex have been produced using the hybridoma technique. A hapten was synthesized and characterized by Fourier Transform Infrared Spectroscopy (FT-IR) and UV-Vis. Competitive enzyme-linked immunosorbent assay (ELISA) for quantitative detection of cadmium in aqueous sample was developed. The monoclonal antibody with high level of binding affinity for Cd-IEDTA-BSA and high specificity for soluble Cd-EDTA complex showed less than 0.99% cross-reactivity with other 11 metals. The limit of detection was 0.10 μg·L-1, and the effective linear range was 10-1–103 μg·L-1. The intra- and inter-assay coefficient variations were 1.5%–6.3% and 3.2%–7.4%, respectively. The spike recovery in different water samples were between 98.5% and 110.3%. The detection limit of this assay was well below the allowable concentration of cadmium (3 μg·L-1), and the working range was wider than that of other methods which showed the range of 2.19–86.38 and 0–103 μg·L-1. The competitive ELISA established in this paper was sensitive and accurate in the screening of cadmium in aqueous samples. The results will lay a solid foundation for construction of an immunoassay kit for cadmium.  相似文献   
998.
Concentrations and Pools of Heavy Metals in Urban Soils in Stockholm,Sweden   总被引:8,自引:0,他引:8  
The concentrations of heavy metals (Cd, Cr, Cu, Hg, Ni, Pb andZn) and arsenic (As) were surveyed and the metal pools estimatedin soils in Stockholm Municipality. The sampling sites were distributed all over the entire municipality with a higher sampling density in the city centre. Soils were sampled to a maximum depth of 25 to 60 cm. Soil texture, total-C content, electrical conductivity and pH were analysed. Heavy metal concentrations were determined after wet digestion with boiling7 M HNO3.The results showed a wide range in heavy metal concentrations, as well as in other soil properties. The city centre soils constituted a rather homogeneous group whereas outside this areano geographical zones could be distinguished. These soils were grouped based on present land use, i.e. undisturbed soils, public parks, wasteland (mainly former industrial areas), and roadside soils. The city centre and wasteland soils generally hadenhanced heavy metal concentrations to at least 30 cm depth compared to park soils outside the city centre and rural (arable)soils in the region, which were used to estimate background levels. For example, the mean Hg concentration was 0.9 (max 3.3)mg kg-1 soil at 0–5 cm and 1.0 (max 2.9) at 30 cm depth in the city centre soils, while the background level was 0,04 mg kg-1. Corresponding values for Pb were 104 (max 444) and135 (max 339) mg kg-1, at 0–5 and 30 cm, respectively, while the background level was 17 mg kg-1.The average soil pools (0–30 cm depth) of Cu, Pb and Zn were 21,38 and 58 g m-2 respectively, which for Pb was 3–4 timeshigher and for Cu and Zn 1.5–2 times higher than the backgroundlevel. The total amount of accumulated metals (down to 30 cm)in the city centre soils (4.5*10 6 m2 public gardens and green areas) was estimated at 80, 1.1, 120 and 40 t for Cu, Hg, Pb and Zn, respectively. The study showed (1) thatfrom a metal contamination point of view, more homogeneous soilgroups were obtained based on present land use than on geographicdistance to the city centre, (2) the importance of establishing a background level in order to quantify the degree of contamination, and (3) soil samples has to be taken below the surface layer (and deeper than 30 cm) in order to quantify theaccumulated metal pools in urban soils.  相似文献   
999.
Emissions of Hg, Pb, and Cd to air aretransported over wide areas in Europe and deposited far awayfrom their sources. About 80% of the atmospheric depositionof these metals in south Sweden originate from emissions inother countries. As a result of the increased anthropogenicdeposition the concentrations of Hg, Pb, and Cd in the morlayer of forest soils have increased considerably, mainlyduring the 20th century. Although the atmosphericdeposition of these elements has declined during the mostrecent decades, the reduction of the input of Hg and Pb isnot sufficient to prevent a further accumulation. Theconcentrations of Hg and Pb are still increasing by ca. 0.5and ca. 0.2% annually in the surface layer of forest soils.In contrast, the Cd concentration is currentlydecreasing in a large part of Sweden as a result of bothdeposition decreases and enhanced leaching induced by soilacidification. The accumulation factors of Hg and Pb,especially in the forest topsoils of south Sweden, arealready above those at which adverse effects on soilbiological processes and organisms have been demonstrated instudies of gradients from local emission sources andlaboratory assessment. There are also indications of sucheffects at the current regional concentrations of Hg and Pbin mor layers from south Sweden, judging from observationsin field and laboratory studies. There is an apparent riskof Pb induced reduction in microbial activity over parts ofsouth Sweden. This might cause increased accumulation oforganic matter and a reduced availability of soil nutrients.At current concentrations of Hg in Swedish forest soils,effects similar to those of Pb are likely. Increasedconcentrations of these elements in organs of mammals andbirds have also been measured, though decreases have beendemonstrated in recent years, related to changes inatmospheric deposition rates. As a result of current andpast deposition in south Sweden, concentrations of Hg infish have increased about fivefold during the 20thcentury. This implies risks for human health, when fish frominland waters are used for food. Although the concentrationof Hg in fish has decreased ca. 20% during the last decade,probably as a result of the reduced deposition, the levelstill exceeds the general limit (0.5 mg kg-1) in about half(ca. 40 000) of the Swedish lakes. In order to reduceconcentrations in fish to the level recommended, and avoidfurther accumulation of Hg in soils, the atmosphericdeposition has to be reduced to ca. 20% of the current deposition rate. This can only be achieved by international co-operation.  相似文献   
1000.
微塑料与Cd交互作用对小麦种子发芽的生态毒性研究   总被引:1,自引:0,他引:1  
为探究微塑料、重金属以及二者的交互作用对农作物种子生长特性的影响,选取小麦(Triticum aestivum L)为实验对象,开展土壤中微塑料聚乙烯(mPE)和聚丙烯(mPP)(0,10,50,100,200,500,1000,5000和10000mg/kg)与重金属镉(Cd)(0,1和5mg/kg)单一及复合污染对...  相似文献   
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