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1.
滇池疏浚底泥富含有机质和N、P等营养成分,农用可提高土壤保水肥能力,有利于植物生长发育,但是存在重金属污染问题。通过盆栽及田间实验,对生菜、白菜、棒菜和萝卜4种蔬菜施用疏浚底泥作为有机肥进行种植,分析疏浚底泥农用后,其重金属含量对蔬菜的影响,并对其进行风险评价。结果表明,盆栽实验中,应将底泥的施用量控制在5%(0.05 kg·kg~(-1))以内。田间实验中,叶菜类蔬菜种植应将底泥的施用量控制在1.6 kg·m-2以下,块茎类蔬菜种植应将底泥的施用量控制在2.4 kg·m-2以下。风险评价采用富集系数(BCF),以及内梅罗污染指数。盆栽实验中叶菜类蔬菜BCF均为CdPbZnCu,而块茎类组分BCF均为CdZnPbCu;田间实验中叶菜类蔬菜BCF均为ZnCdPbCu,茎块类蔬菜BCF为ZnCdCuPb。化学致癌物Cd引起的平均健康风险均低于国际辐射防护委员会(ICRP)推荐的最大的终生可接受风险水平;而非化学致癌物Pb、Zn、Cu引起的健康风险以Zn最大,Pb次之,Cu最小,且所有非致癌物健康风险均远低于英国皇家协会、瑞典环境保护局及荷兰建设环境部等推荐的终生可接受风险水平。  相似文献   

2.
湘中矿区塘、水库等灌溉水体及其底泥重金属超标问题日益凸显,研究选取石灰、水稻秸秆生物炭和人造沸石等3种环境友好型土壤重金属阻控材料,通过室内玻璃柱模拟静止水体实验探讨水面缓慢撒施阻控材料对上覆水重金属Cd去除与底泥Cd有效性影响。为期60 d的实验结果显示,1%(0~20 cm表层底泥质量分数)的单一石灰、生物炭、沸石与石灰+生物炭+人造沸石配方(质量比1∶1∶1)4种处理均可明显快速去除上覆水中水溶态Cd质量浓度,其中石灰效果最佳,沸石效果最差,石灰与3种阻控剂组配处理均可使上覆水中水溶态Cd质量浓度由20μg·L~(-1)以上降至10μg·L~(-1),符合我国灌溉水Cd的限定标准。阻控材料自然沉积在底泥表面后对5 cm处底泥水溶液Cd质量浓度具有一定的消减效应,沸石效果优于石灰、生物炭处理,其中"石灰+生物炭+沸石"的不同粒径阻控材料组配方式效果最佳。石灰、生物炭、沸石及3种阻控剂组配处理60 d后底泥pH值依然略高于对照,差异不显著,但可交换态Cd含量明显低于对照。结果可为塘库型水体上覆水及底泥Cd等重金属污染的生态风险降低及控制措施研究提供科学参考与方法指导。  相似文献   

3.
面向矿山废弃地复垦的炉渣污泥人工土壤的理化特性   总被引:1,自引:0,他引:1  
通过添加不同比例的燃煤电厂粉煤灰和炉渣对城市污泥进行钝化,配制成不同灰渣比例的人工土壤,对人工土壤的pH、电导率、养分含量、重金属含量以及持水、渗水性能进行了研究。结果表明,污泥人工土壤pH介于7.5~8.0之间,属于弱碱性土壤;电导率变化范围为2.93~3.71 mS/cm,表明盐分含量较高。污泥人工土壤中有效态养分含量随炉渣比例提高而增加,所有配比人工土壤有机质和有效磷、速效钾的含量达到高肥力水平。人工土壤中Cd、Ni、Pb、Cu、Zn含量均明显低于国家农用标准(GB 4284-84、GB 8173-87)。粉煤灰渣对污泥中有效态Cd、Ni、Pb和Cu有钝化作用,使其向无效态转化,对Zn则有活化作用。炉渣对Cd、Ni的钝化作用要优于粉煤灰,而粉煤灰对Pb、Cu的钝化作用要优于炉渣。添加炉渣提高了污泥人工土壤水分的蒸发量,减弱了人工土壤的持水能力,但加入炉渣使人工土壤的渗透系数显著增加,提高了其渗水性能。  相似文献   

4.
为了解焚烧炉渣应用于潜流园林湿地污水处理系统的可行性,采用苹果酸、柠檬酸和腐殖酸模拟根系分泌的有机酸,考察了其对焚烧炉渣中重金属的溶出特征。结果表明:有机酸对炉渣中重金属Cu、Cr、Cd、Pb、Zn溶出具有促进作用,苹果酸略强于柠檬酸,腐殖酸作用弱;重金属Cu、Cr、Cd、Pb、Zn溶出量与其碳酸盐结合态、铁锰氧化物结合态、有机结合态含量显著相关,炉排渣(PZ)中重金属溶出量大于流化床炉渣(LZ);炉渣中Cu、Cr、Pb、Zn在有机酸作用下的溶出率低于4%,仅PZ中Cd溶出率高达40%左右,为LZ的6~11倍。重金属初始含量、有机酸种类对炉渣中重金属溶出有显著影响,柠檬酸、苹果酸对LZ中重金属溶出率的影响无显著性差异,与腐殖酸的影响存在显著差异,炉排渣无此特征。流化床炉渣具有潜在可应用性。  相似文献   

5.
矿山边坡生态恢复和重建是矿区生态环境建设的有效途径,而绿化基质是矿山边坡生态恢复和重建的重要因素。基于正交实验和盆栽实验,以土壤、活性污泥、炉渣、粉煤灰、保水剂、尿素和秸秆等物质为基质原料,研究绿化基质的理化性质及出苗率特征。研究结果表明:与对照黄土相比,绿化基质pH相对较低,仍属于碱性土壤,而电导率、有机质和铵态氮相对较高,表明盐分和养分含量较高;污泥的配比含量是影响绿化基质入渗、蒸发、pH、电导率、有机质和出苗率等指标的关键因素;各因素对出苗率的影响强度从大到小依次为:污泥和粉煤灰、秸秆、土壤和炉渣、尿素、保水剂;基质的最优配比为:保水剂(11~15 g)、污泥和粉煤灰(150∶600)、土壤和炉渣(375∶375~600∶150)、尿素(0 g)、秸秆(30 g)。  相似文献   

6.
研究煤矸山不同年限复垦土壤重金属有效态含量及其影响因素对指导煤矸山植被复垦及复垦地利用具有重要意义。以山西省典型煤矸山复垦3、10、16年灌草地为研究对象,分析了3种复垦土样的理化性质及重金属Cd、Pb、Cu的总量、有效态含量、生物有效性系数。结果表明:(1)3种复垦土样电导率(EC)、有机质和碱解氮含量均随复垦年限的增加而增加,但黏粒和有效磷含量呈下降趋势;(2)总体看来,3种复垦土样Cd、Pb、Cu有效态含量随复垦年限的增加而增加,Cd、Pb生物有效性系数在0~40cm土层、Cu生物有效性系数在20~40cm土层也有此趋势;(3)土壤pH、EC、有机质、黏粒质量分数均不同程度地影响煤矸山复垦土壤Cd、Pb、Cu有效态含量,其中有机质和黏粒含量是关键影响因子。  相似文献   

7.
为了给河涌疏浚底泥的资源化提供技术支持,以广州市车陂涌表层受污染底泥为研究对象,用水泥、石灰、粉煤灰、膨润土等材料对底泥进行固化/稳定化处理实验。通过无侧限抗压强度、污染物在模拟自然条件下(中性)的释放特征、毒性浸出实验(酸性条件)对固化/稳定化处理效果进行综合分析。结果表明:经合适的处理后,固化体抗压强度能高于300 kPa;固化体自然条件下重金属的释放量明显减少,固化/稳定化处理能够有效减缓和减少固化体的二次污染;毒性浸出实验结果表明,河涌底泥经固化/稳定化处理后其重金属浸出能力显著降低。  相似文献   

8.
对锅炉煤渣、高炉煤渣、流化床焚烧渣和炉排焚烧渣4种炉渣样品进行了分级,研究炉渣典型重金属(Cu、Zn、Cr、Cd、Pb)含量,以及基于水平振荡浸出程序(HVEP)和毒性特性浸出程序(TCLP)浸取程序的重金属浸出特性,为炉渣的资源化利用模式提供科学依据。结果表明,2种浸取程序下,4种炉渣的重金属浸出浓度远低于浸出毒性限值,其中,炉排焚烧渣中典型重金属(Cu、Zn、Pb、Cr、Cd)浸出量最大,高炉煤渣最小;HVEP方法下,2 mm粒级炉渣对重金属浸出总量的贡献较大,TCLP方法下则为2~6 mm粒径段;高炉煤渣和流化床焚烧渣可作为基质应用于潜流园林湿地污水处理系统,但不适宜于酸雨区。  相似文献   

9.
水泥、粉煤灰及DTCR固化/稳定化重金属污染底泥   总被引:2,自引:0,他引:2  
采用水泥、粉煤灰及有机硫稳定剂DTCR固化/稳定化处理重金属污染的底泥,考察固化体的抗压强度及重金属浸出毒性,确定了底泥固化/稳定化的最佳工艺条件。结果表明:仅用水泥固化/稳定化重金属污染底泥,固化体抗压强度随水泥用量的增加而上升,重金属浸出浓度则下降,当水泥∶干底泥质量比为0.6∶1.0时,固化体7 d抗压强度能达到0.99 MPa的标准值;进一步研究发现,水泥∶粉煤灰∶干底泥质量比为0.54∶0.06∶1.0时,重金属浸出浓度有所上升,但7 d及28 d抗压强度仍能分别达到1.2 MPa和2.8 MPa;加入DTCR后,当水泥∶粉煤灰∶DTCR∶干底泥质量比为0.54∶0.06∶0.012∶1.0时,固化体7 d及28 d抗压强度分别为1.1 MPa和2.1 MPa,醋酸缓冲溶液法浸出的Cd、Pb、Zn和Cu浓度分别为0.102、0.189、0.180和0.032 mg/L。  相似文献   

10.
通过对海南北部红树林湿地沉积物样品进行采集和室内测试分析,得到研究区沉积物有效态Zn、As、Cd、Pb的含量及分布特征。研究结果表明,研究区有效态Zn、As、Cd、Pb平均质量浓度分别为9.18、1.63、0.19、2.48mg/kg,生物有效性系数分别达19.49%、18.65%、21.11%、17.29%,表明研究区沉积物中Zn、As、Cd、Pb的生物有效性均较强,易于被红树植物吸收,同时也反映出研究区沉积物受Zn、As、Cd、Pb的污染风险较大;有效态As、Cd、Pb含量随沉积物剖面深度增加呈逐渐减少趋势,不同沉积物剖面沉积物重金属生物有效性系数变化存有差异;沉积物理化性质对有效态As、Cd、Zn含量有不同程度的影响,对有效态Pb无明显影响;有效态Cd、Pb含量与Cd、Pb总量显著相关,说明Cd、Pb的有效态含量与总量在空间分布上具有一定的相似性,Cd、Pb总量是有效态Cd、Pb的主控因子。  相似文献   

11.
选取再力花、美人蕉、水烛、旱伞草、梭鱼草、慈姑、菖蒲、水葫芦和大藻9种植物作为实验植物,构建成以高效净化重金属污染水体为主要功能的组合式水生植物高效净化系统(人工湿地+生态浮床+水生植物塘3个处理单元串联而成),研究不同处理单元中水生植物对重金属Cu、Pb和cd的去除能力及富集特征。结果表明,该净化系统经过为期60d的连续运行,对Cu、Pb和Cd的去除率较为稳定,可分别达到Cu93.5%~96.1%、Ph94.5%~95.2%和Cd95.6%~97.4%,3种重金属出水浓度均可达到GB3838-2002Ⅲ类水排放要求;其中人工湿地单元对重金属去除贡献率最高,Cu、Pb和Cd分别为54.15%、33.61%和44.84%,其次为生态浮床处理单元,Cu、Pb和Cd的去除贡献率分别为38.61%、51.42%和38.56%,而水生植物塘主要起到深度处理作用,对Cu、Pb和cd的去除贡献率分别为7.24%、14.97%和16.6%。9种植物在系统运行期间,生长状况良好,且重金属累积量较高,尤其是生物塘系统中的水葫芦和大藻,实验期间其重金属生物富集系数(BCF)均在200以上。所选植物不同部位对3种重金属的吸收富集能力均表现为根最强。  相似文献   

12.
SGA对垃圾焚烧飞灰中重金属的固化性能研究   总被引:1,自引:0,他引:1  
根据EPA1311、HJ/T299—2007、HJ/T300—2007和HJ557—2009等国内外不同标准,研究了深圳某垃圾焚烧发电厂垃圾焚烧飞灰的浸出毒性,探讨了六硫代胍基甲酸(sixthioguanidineacid,SGA)、二甲基二硫代氨基甲酸盐(sodiumdimethyldithiocarbamate,SDD)和Ca(OH)2浓度对垃圾焚烧飞灰中重金属的固定性能的影响。研究结果表明,随着浸提液pH的降低,该厂焚烧飞灰中大部分金属元素的浸出量增大,焚烧飞灰浸出液中的cd、Ni、Ph和zn浓度分别超过国家危险废物鉴别标准(GB5085.3—2007)规定值的4.75倍、1.47倍、6.72倍和2.20倍,属于危险废弃物,必须进行稳定化处理。当固化剂SGA加入量为0.1mol/kg时,稳定化后的重金属浸出浓度已经低于危险废物鉴别标准,且对Cd、Cr、Cu和Pb的固化性能优于SDD和Ca(OH)2;当固化剂SGA、SDD和Ca(OH)2加入量为0.5mol/kg时,稳定化后的焚烧飞灰重金属浸出浓度均低于国家危险废物鉴别标准(GB5085.3-2007)中的规定值。与SDD和Ca(OH):相比,SGA对垃圾焚烧飞灰中重金属的固化处理更具有优势。  相似文献   

13.
The concentration partitioning between the sediment particle and the interstitial water phase plays an important role in controlling the toxicity of heavy metals in aquatic systems. The aim of this study was to assess the sediment quality in a polluted area of the Ziya River, Northern China. The contamination potential and bioavailability of six metals were determined from the concentrations of total metals and the bioavailable fractions. The results showed that the concentrations of Cr, Cu, Ni, Zn, and Pb exceeded the probable effect concentration at several sites. The high geoaccumulation indices showed that the sediments were seriously contaminated by Cd. The ratio of acid-volatile sulfide (AVS) to simultaneously extracted metal (SEM) was higher than 1, which indicated that the availability of metals in sediments was low. The risk assessment of interstitial waters confirmed that there was little chance of release of metals associated with acid-volatile sulfide into the water column. Values of the interstitial water criteria toxicity unit indicated that none of the concentrations of the studied metals exceeded the corresponding water quality thresholds of the US Environmental Protection Agency. Positive matrix factorization showed that the major sources of metals were related to anthropogenic activities. Further, if assessments are based on total heavy metal concentrations, the toxicity of heavy metals in sediment may be overestimated.  相似文献   

14.
Bose S  Bhattacharyya AK 《Chemosphere》2008,70(7):1264-1272
The concentrations of different forms of Zn, Cu, Mn, Ni, Cd, Cr, Pb and Fe metals were determined for the roadside sludge collected from pickling-rolling and electroplating industrial area. In sludge the relative abundance of total heavy metals were Fe>Mn>Cr>Ni>Cu>Pb>Zn>Cd and DTPA-extractable metals were in the order--Fe>Ni>Mn>Cr>Cu>Zn>Pb>Cd. Pot-culture experiment was conducted in soils amended with sludge (0%, 10%, 20%, 30%), pretreated with lime (0%, 0.5% and 1%). The soils were alkaline in nature (pH>8.3) with organic carbon contents were 0.34% and 0.72%. The most abundant total and bio-available metal was Fe. Two wheat seedlings were grown in each pot containing 3kg sludge-amended or control soil and the experiment was conducted till harvesting. Application of sludge increased both total and bio-available forms of metals in the soils, while lime application decreased the bioavailability of heavy metals in sludge-amended soils. The content of organic carbon showed positive correlation with all metals except Zn, Cr and Pb. CEC also showed a strong positive correlation (R2>0.7) with Fe, Mn, Cu, Ni and Cd. Though wheat plants are not accumulators, the translocation efficiency was appreciably high. The translocation factor from shoot to grain was found smaller than that of root to shoot of wheat plants. This makes an implication that the heavy metal accumulation was proportionally lesser in grain than in shoot. In, 10% sludge with 0.5% lime-amended soils; each of these toxic heavy metals was found to be within permissible range (USEPA). Hence, on the basis of present study, the best possible treatment may be recommended.  相似文献   

15.
Total,dissolved, and bioavailable metals at Lake Texoma marinas   总被引:2,自引:0,他引:2  
Dissolved metals in water and total metals in sediments were measured at marina areas in Lake Texoma during June 1999 to October 2001, and October 2001, respectively. The metals most often found in the highest concentrations in marina water were Na and Ca, followed by Mg and K. Elevated Cu levels detected in lake water appeared to be associated with Cu based anti-fouling paint used on boats. Metal concentrations in sediment were much higher than in water. The relative order of the concentration in sediment was Ca > Al > Fe > K > Mg > Na. Elevated Cu level at specific locations appeared to be associated with local anthropogenic sources of boat repair activities. There were positive relationships between several metal elements in water and sediment. Metals in 16 sediments from lake marinas were extracted with a weak electrolyte solution [0.1 M Ca(NO3)2] to predict the bioavailability of metals. Among the five heavy metals studied (As, Cd, Cr, Cu and Zn), Cu was the most bioavailable in Lake Texoma marinas.  相似文献   

16.
钝化剂在烟草植物修复铅镉污染土壤中的作用   总被引:1,自引:0,他引:1  
重金属钝化剂可以改变土壤中重金属的形态,降低其在土壤中的有效浓度、植物毒性及生物有效性,影响污染土壤中植物的生长及其对重金属的吸收。在温室盆栽条件下研究了施加羟基磷灰石(HA)、纳米羟基磷灰石(nHA)、纳米零价铁(nFe0)和纳米TiO2(nTiO2)对烟草植物修复铅镉污染土壤的作用。结果表明,HA降低土壤中Ph、cd的有效性、促进烟草生长、增加了烟草叶、茎、根中cd的吸收量和根系中Pb的吸收量,有利于Ph、cd的钝化和植物修复。nHA也可以降低土壤中Pb、cd的有效性,增加了烟草叶中cd的吸收量,有利于Pb、cd的钝化和cd的植物提取。nFe0和nTiO2:对于土壤Pb和cd的钝化作用和植物修复均没有显著影响。综合来看,HA最适合应用于烟草植物修复铅镉污染土壤。  相似文献   

17.
The concentrations of three heavy metals chromium (Cr), cadmium (Cd) and lead (Pb) were examined in water, sediment and green algae (Ulva lactuca); collected from six different stations at Pulicat Lake, which receives effluents from industries located in North Chennai Coastal region. Concentrations of Cd (64.21 microg g(-1)) and Cr (28.51 microg g(-1)) were found to be high in sediment, whereas in green algae concentration of Pb (8.32 microg g(-1)) was higher than water and sediment samples. The relative abundance of these heavy metals in U. lactuca and sediment were found to be in the order Cd>Cr>Pb, whereas in water the ratio was found to be Cr>Pb>Cd. The seasonal variations in Cd and Pb followed a similar pattern in both seaweeds and sediments, but not in water samples. Spearman correlation coefficient study showed no significant correlation in the concentration of metals in U. lactuca, water and sediment samples.  相似文献   

18.
水体沉积物重金属生物有效性及评价方法   总被引:1,自引:0,他引:1  
在研究以重金属为主要污染物的水体中,通常把沉积物视为探索环境重金属污染的工具。由于沉积物中重金属化学行为和生态效应的复杂性,对沉积物中重金属生物有效性的研究是当前学术界的热点研究课题。本文就沉积物中重金属的生物有效性及沉积物质量评价方法作了简要评述。包括沉积物对水生生物的作用机理,孔隙水重金属浓度的估算,沉积物质量评价方法,沉积物质量基准。  相似文献   

19.
调理剂对堆肥产品重金属生物有效性的影响   总被引:1,自引:0,他引:1  
城市污泥中重金属含量及其生物有效性是限制污泥农用的主要因素,因此,研究污泥堆肥化处理过程中重金属生物有效性,对污泥的农用具有重要意义。实验以城市污泥为原料,以菌菇渣和秸秆为调理剂,设置4个处理:A(污泥∶菌菇渣∶秸秆=1∶0.4∶0.025)、B(污泥∶菌菇渣∶秸秆=1∶0.3∶0.025)、C(污泥∶秸秆=1∶0.12)和D(污泥∶秸秆=1∶0.09),进行好氧堆肥实验,采用BCR顺序提取法测定各种形态的重金属,研究堆肥前后重金属形态的变化规律。结果表明,城市污泥中Cu、Ni、Pb和Cr主要以可氧化态及残渣态存在,生物有效性较低,而Zn和Cd主要以酸溶态和可还原态存在,生物有效性较高;堆肥过程显著降低了Cu、Zn、Ni和Pb的生物有效性,并改变了Cu、Zn、Ni、Pb、Cr和Cd的形态分布,使污泥中的Cu、Zn、Ni、Pb和Cd向着更稳定的可氧化态或残渣态转变;污泥经过堆肥处理后,Cu、Zn和Ni 3种重金属生物有效性关系为:ABCD,与其他处理相比,处理A残渣态的Pb和Cr增加比例较多,综合来看,处理A对重金属生物有效性的降低最为明显,重金属钝化效果最佳。  相似文献   

20.
To determine changes in metal distribution, bioavailability and toxicity with sediment depth, two 20-cm-long replicate cores were collected from a lake historically subjected to the influence of metal mining and smelting activity. The vertical distribution of Pb, Cd and Cu in sediment was similar for all three metals, with the surface layers showing enrichment and the deeper (pre-industrial) layers showing lower concentrations. Toxicity of each sediment core section was determined in laboratory tests with the freshwater amphipod Hyalella azteca. Bioavailable metal in each sediment slice was estimated from metal concentrations in overlying water in these toxicity tests and, for Cd, also from metal bioaccumulation. The profile for Cd in tissue was comparable to Cd in sediment and overlying water, but relative Cd bioavailability from sediment increased with sediment depth. Survival increased with increasing sediment depth, suggesting that surface sediments were probably less or non-toxic before industrialization.  相似文献   

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