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在我国典型果业生产区域的黄土高原、胶东半岛和北京郊区选择11个采样区的99个果园,利用GPS定位仪共采集0—20cm表土样品99份,测定了铅、砷、铜、锌和铬等5种主要重金属的土壤累积数量,并对土壤重金属累积数量的环境安全性、土壤累积差异性以及区域分布特点进行了分析讨论。结果表明:(1)果园表层土壤5种重金属累积浓度未超过国家土壤环境质量标准,处于环境安全状态;(2)不同重金属在果园表层土壤中累积特征不同,重金属铅累积相对明显;其次是铜;再其次是锌、铬和砷;(3)不同区域果园表层土壤的重金属累积情况不尽一样,经济发达、或城市郊区或果园发展历史长的地区,果园表层土壤重金属累积相对显著一些。 相似文献
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设施蔬菜栽培是当前主流种植方式之一。因为设施菜地常年处于一种高温、高湿、高肥料投入的半封闭状态, 其土壤重金属污染问题突出。由于土壤环境介质的复杂性、重金属污染来源的多样性以及分布的特异性, 国内外学者对土壤重金属源解析方法尚未建立起一个全面和详尽的体系, 针对设施菜地中重金属污染源解析研究的相关报道也较少。文章综合论述了国内外设施菜地重金属源解析应用情况, 并针对现有设施菜地重金属定量源解析应用较少的情况, 筛选适用方法及其优缺点进行概述, 同时对设施菜地中重金属源解析方法研究的未来发展进行展望, 为能够从源头解决设施菜地重金属污染问题提供技术支持。 相似文献
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为了解聊城市水岸带土壤重金属的含量和污染状况, 于2015 年1 月采集了58 个水岸带土壤样品, 分析了土壤中Cr、Cu、Pb、Zn、Hg 和As 的含量以及土壤的pH 值和有机质, 采用单因子指数法、综合指数法和潜在生态危害指数法对水岸带土壤重金属污染进行了评价, 并采用相关分析和聚类分析对其来源进行了初步的解析。结果表明, 聊城市水岸带土壤的pH 值为7.21-9.98, 呈碱性; 有机质的平均含量为13.10 g·kg–1; Cr、Cu、Pb、Zn、Hg 和As 的平均含量分别为68.2 mg·kg–1、31.6 mg·kg–1、44.2 mg·kg–1、391.9 mg·kg–1、0.162 mg·kg–1 和10.58 mg·kg–1, 与《土壤环境质量标准》(GB15618-1995)二级标准值相比, 除Zn 外其它重金属元素均可达标, Zn 平均含量约为二级标准值的1.3 倍。以山东省土壤元素背景值为评价标准, 水岸带土壤重金属总体表现为重度污染和较高的生态危害, 其中Hg 和Zn 是主要的污染因子和生态危害因子, Hg 对潜在生态危害指数的平均贡献率为80.3%。源解析的结果表明, 水岸带土壤重金属的含量主要受到人为源的影响, 人为源主要包括交通运输、地表径流、农药肥料、垃圾和工业废气等。 相似文献
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随着城市化进程的不断深入,土壤中重金属污染现状及其治理情况越来越受到重视,而查明污染源是有效治理污染的前提。源解析技术目前已广泛的应用于环境受体重金属来源解析实践中,总结了近年来土壤重金属成因分析的常用方法及原理,并提出了一种将多种方法相配合使用的方法体系。选取珠三角某市城郊农田作为研究对象,结果表明,Cd、Pb、Cu、Zn、As存在含量超过国家农用地筛选值的情况,其中Cd超标率高达60.1%。农业活动、工业生产、交通源和自然母质均对研究区土壤重金属的累积产生一定的贡献。正定矩阵因子分析法(PMF,Positive Matrix Factorization)模型模拟的Cd、Ni、Zn和Hg预测值与实测值线性拟合r~2均大于90%,其余元素r~2均大于60%,呈现出很好的相关性,满足研究需要。PMF模型和铅同位素比值法计算得到的交通及农业对土壤Pb累积的贡献率之和分别为86.0%和84.8%,PMF模型和物质流分析法计算得到的农业对土壤Cd的贡献率分别为86.7%和79.7%,结果均比较接近。结果表明正定矩阵因子法、同位素比值分析法,物质流分析法能很好的联用应用于土壤重金属源解析研究。 相似文献
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采集研究区耕地、未利用地75个土壤剖面样品, 分析其Cr、Ni、Pb、Zn、Cd含量, 利用地累积指数、Hankason潜在风险指数、PCA/APCS受体模型进行分析。研究结果表明: (1)土壤中Cd、Cr、Ni、Pb、Zn含量的总超标率依次为89.00%、25.30%、14.70%、30.70%、29.33%, 其中Cr、Zn分别在耕地10—20 cm、20—30 cm层超过新疆土壤背景值的1.04、1.03倍。(2)Cd在耕地20—30 cm层、未利用地10—20 cm、20—30 cm层为轻度污染水平、中度潜在生态风险, 其余剖面层Cr、Ni、Pb、Zn、Cd为无污染水平、轻度潜在生态风险。(3)土壤母质对Cr、Ni、Pb、Zn、Cd的平均贡献率依次为69.90%、78.80%、63.15%、70.68%、24.64%, 交通污染源对Pb、Cd的平均贡献率依次为22.38%、47.39%, 农业活动污染源对Cr、Ni、Cd的平均贡献率依次为14.30%、6.86%、20.35%。(4)研究区耕地、未利用地综合生态风险均小于150, 为轻微生态风险。 相似文献
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贵州兴仁煤矿区农田土壤重金属化学形态及风险评估 总被引:2,自引:0,他引:2
为了解煤矿区周边农田土壤重金属污染状况,采集了贵州省兴仁县某典型煤矿区农田土壤样品64份,测定了土样中重金属(As、Cr、Pb、Zn、Cd、Hg、Cu、Ni)总量及各形态含量,采用单因子指数法、潜在生态风险指数法(Hkanson法)和风险评估编码法(RAC)对研究区主要土壤利用类型(水稻土、薏米地、植烟土和菜园土)中重金属进行潜在生态风险评估和环境风险评价.结果表明: 不同利用类型土壤中重金属含量除Zn外,其他元素均明显超过贵州省背景值.单因子指数法评价结果表明,As、Pb、Hg和Cu污染较为严重,均属重度污染.形态分析表明,土壤中重金属形态构成差异明显,酸可提取态As、酸可提取态Cd所占比例较高;Cr、Zn、Cu、Ni主要以残渣态为主;Pb主要以可还原态和残渣态为主;而Hg的酸可提取态、可还原态、可氧化态均占有相当比例,三者之和大于55%.重金属可利用度大小顺序为:As(63.6%)>Hg(57.3%)>Cd(56.4%)>Pb(52.5%)>Cu(45.7%)>Zn(32.8%)>Ni(26.2%)>Cr(13.2%).潜在生态风险指数表明,各类型土壤潜在生态风险(RI)〖JP2〗为:菜园土(505.19)>薏米地(486.06)>植烟土(475.33)>水稻土(446.86),均处于较高风险.风险评估编码法结果显示,As在水稻土、薏米地及植烟土中均处于高风险,在菜园土中处于中等风险;Cd、Hg均处于中等风险,Cr、Pb、Zn、Cu和Ni均处于低风险.因此,对该区域农田土壤进行管控时应重点考虑As、Cd和Hg污染. 相似文献
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采用ICP-MS定量研究了鄱阳湖溶解态重金属As、Cd、Cr、Cu、Pb和Zn空间分布特征,并对其引起的健康风险进行了评价。结果表明,鄱阳湖溶解态As、Cd、Cr、Cu、Pb和Zn的水平均符合国家Ⅰ、Ⅱ类饮用水质标准;鄱阳湖溶解态重金属的空间分布格局为As和Cr在整体上呈现北部大于南部,Cu为北部和南部高,中部低,Pb和Zn均呈现南部大于北部,而Cd的空间分布规律不明显。风险评估结果显示,鄱阳湖As、Cd、Cu、Pb和Zn的风险水平小于国际辐射防护委员会(International Commission on Radiation Protection;ICRP)的推荐值(5×10~(-5)a~(-1)),但是Cr的风险水平(4.74×10~(-5)a~(-1))接近了ICRP推荐值,且由As、Cd、Cr、Cu、Pb和Zn引起的健康总风险达到了5.88×10~(-5)a~(-1),超过了ICRP推荐值。鄱阳湖由Cr和As引起的健康风险之和占总风险比例达到99.72%,是主要的健康污染物,需引起风险决策部门的重视。 相似文献
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为探究桂北某典型锰矿尾库区周边土壤和农作物重金属污染状况,筛选适合该地区污染土壤修复的植物材料,该研究在矿区周边采集了9种农作物和23种主要植物及其根际土壤,并测定了Cd、Mn、Cr、Pb和Zn 5种重金属含量,采用单因子污染指数法和综合污染指数法评价了矿区农田土壤、农作物中重金属的生态风险,通过计算植物对重金属的富集和转运系数评估其应用潜力。结果表明:(1)研究区土壤Cd、Mn污染最为严重,单因子污染指数分别为18.53、147.09,达到重度污染级别。(2)研究区花生和小白菜等作物可食用部位中的Cd、Cr、Pb含量均超过食品国家安全标准(GB 2762—2017)中的阈值,具有较高健康风险。(3)23种主要植物中青葙、鬼针草、一点红、蜈蚣草等对多种重金属转运系数大于1,具备富集型植物特征; 一把伞南星、蓖麻、千里光等根部重金属含量较高,转运系数较低,具备根部囤积型植物特征; 响铃豆、筒轴茅、苣荬菜等富集的重金属含量相对较低,且在重金属污染土壤中能健康生长,具备规避型植物特征。该研究结果表明,研究区土壤存在较严重的Cd/Mn复合污染,青葙等植物用于修复该复合污染土壤极具应用潜力。 相似文献
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Sarva Mangala Praveena Biswajeet Pradhan Sharifah Norkhadijah Syed Ismail 《人类与生态风险评估》2015,21(7):1980-2003
Heavy metals (Al, Cd, Co, Cr, Cu, Fe, Pb, Zn) in surface soil of Klang district were determined and multivariate analysis was used to understand their potential sources. The total and bioavailability of concentrations were used in identifying the potential risks to the ecology and human health. The means for the total heavy metal concentrations were found to be in the order of Fe > Al > Zn > Pb > Cu > Cr > Co > Cd, while the means for the bioavailability concentrations were found to be in the order of Al > Fe > Zn > Cu > Co > Cd > Pb > Cr. Principal Component Analysis showed Principal Component 1 as being of natural origin whereas Principal Components 2, 3, and 4 were associated with mixed anthropogenic sources, such as traffic and industrial emissions, organic matter, and granulometric fractions. Potential ecological risk assessment indicated an overall low ecological risk. Spatial assessment of non-carcinogenic risks showed that the Hazard Index values were more than one in Johan Setia, due to biomass burning of peat swamps exploited for agricultural development. While for spatial assessment of carcinogenic risks, the Lifetime Cancer Risk values were in the limit (1 × 10?5), indicating low cancer inducing risks. Nevertheless, with intense development pressure in the Klang district could overlap pollution inputs in the future. 相似文献
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Heavy metals in soil can affect human health through the exposure pathways of oral ingestion, dermal contact, and inhalation. In this study, to assess the health risk of heavy metals in the agricultural area of Xinglonggang, 52 soil samples were collected and tested to obtain the concentrations of As, Cd, Cr, Cu, Ni, Pb, V, and Zn in the soil. The enrichment factor indicated that the heavy metals of the agricultural soils were enriched, but the degree of enrichment was mild for all of the heavy metals. Coefficient analysis and principal component analysis indicated that V, Cr, Ni, and Pb were mainly from natural sources, As was from irrigation, Cu and Cd tended to be from chemical fertilizers and pesticides, and Zn was from mixed sources including irrigation, chemical fertilizers, and pesticides. A human-health risk assessment indicated that the residents in the study area face high risk from carcinogens and low risk from noncarcinogens; As and Cr are the major heavy metals affecting human health. This study provides a reference and a basis for formulating effective measures to prevent and control heavy metal enrichment in agricultural soils. 相似文献
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In this study, a total of 69 topsoil samples and 10 Panax notoginseng samples from Yunnan Province were collected and the concentrations of As, Cd, Cu, Hg, Ni, Pb and Zn in all the samples were determined. The hazard index (HI), total carcinogenic risk (TCR) and estimated daily intake (EDI) of heavy metals were calculated to assess the health risk of P. notoginseng growers and consumers. The average concentrations of As, Cd, Cu, Hg, Ni, Pb and Zn in P. notoginseng planting soils are 43.6, 0.55, 50.8, 0.30, 73.4, 58.2, and 161 mg/kg, respectively. The average Nemerow integrated pollution index of heavy metals in soils is 1.8, indicating that the P. notoginseng planting soils are slightly polluted by those heavy metals. The average HI value is 1.29 and the TCR value of As is above the threshold value, suggesting that As pollution in soil has adverse impact on local growers' health. P. notoginseng is polluted by Cd, As and Pb. 39.1% of estimated daily intakes of As for P. notoginseng consumers through leaf consumption exceeding its permitted daily exposure dosages, suggesting that there is a potential health risk for P. notoginseng consumers to consume P. notoginseng leaves. 相似文献
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Li Ma 《人类与生态风险评估》2017,23(7):1763-1774
A total of 30 surface soil samples were collected from the typical polluted area of Bengbu, Anhui province, Eastern China. The content characteristics, source identification, and risk assessment of heavy metals (Cd, Cu, Mn, Ni, Pb, and Zn) were studied based on the field investigation, sampling, indoor test, and statistical analysis. Results showed that the concentrations of Cd, Cu, Mn, Ni, Pb, and Zn showed different spatial variation and ranged from 0.48 to 1.84, 12.78 to 239.07, 287.14 to 491.96, 15.29 to 52.99, 13.28 to 68.82, and 28.83 to 184.79 mg/kg, respectively. Besides Mn, the contents of other metals have exceeded the local background value to a certain extent, and the higher concentrations recorded were found in the east of Bali channel. Source analyses indicated that Cd, Cu, Pb, and Zn were attributed to industrial emissions, vehicle exhaust pollution, and phosphate uses in agriculture, whereas Ni and Mn were mainly of natural origin. Among the six heavy metals, Cd posed the highest ecological risk with the proportion of 3.3% at a considerable level, 36.7% at a high level, and 60% at a very high level, Cu presented a low-to-moderate ecological risk, while others presented a relatively low risk in surface soils, suggesting that Cd and Cu, especially for Cd, should draw environmental concern. 相似文献
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土壤重金属污染对农田土壤节肢动物的影响是其环境风险评价和监测的重要方面。基于现有国家土壤环境质量二级标准(GB 15618—1995),设计2个浓度重金属Cd(0.3 mg/kg,0.6 mg/kg)、Pb(125 mg/kg,250 mg/kg)和As(30 mg/kg,60 mg/kg)污染的田间试验,分别研究Cd、Pb和As对红壤旱地小节肢类土壤动物群落组成和多样性的影响。结果表明,试验土壤小节肢类动物共11类群,其中符跳属、棘跳属、蜱螨目为本地区红壤旱地的主要类群,占全部捕获小节肢类土壤动物总数的78%。重金属Pb、As高浓度污染分别显著降低了土壤弹尾目的个体密度73.5%、55.2%,而Cd高浓度污染对其无显著影响,仅降低15.9%;As和Cd高浓度污染分别显著降低了土壤蜱螨目的个体密度74.3%、36.4%,而Pb高浓度污染对其无显著影响。Pb、As和Cd污染对小节肢类土壤动物群落多样性指数均无明显影响。因此,与丰度相比,多样性指数对重金属污染反应的灵敏度较差。主成分分析表明,前气门亚目、符跳属和棘跳属的得分值较高,为小节肢类土壤动物群落中的主导因子,可作为未来该地区重金属污染环境影响监测的重要指标生物和重金属污染阈值研究的重要生态受体。 相似文献
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Distribution and health risk assessment of heavy metals in soil surrounding a lead and zinc smelting plant in Zanjan,Iran 总被引:1,自引:0,他引:1
Akram Jamal Mohammad Amir Delavar Arman Naderi Naifseh Nourieh Bijan Medi 《人类与生态风险评估》2019,25(4):1018-1033
One of the problematic issues in soil pollution studies is heavy metal particles which are produced by mines and smelting units and spread through wind action and/or runoff. Pollution and health risk assessment of cadmium, lead, zinc, copper, and nickel in soil around the lead and zinc smelting factory was carried out in Zanjan City, Iran. Contamination factor (Cf), pollution load index (PLI), geoaccumulation index (Igeo), hazard quotient (HQ), hazard index (HI), and carcinogenic risk were pollution and human health risk assessment metrics in this study. Based on the Iranian soil guideline value, soil samples in the studied areas were contaminated the least by copper and nickel and the most by cadmium. PLI results showed that soils near the production line were heavily or extremely heavily polluted. The results of Cf and Igeo showed that lead and zinc were the most important contaminants. Health risk assessment indicated that lead and cadmium in soil were the main contaminants, which pose both carcinogenic and non-carcinogenic risks to human health; carcinogenic risk levels were unacceptably high (above 1 × 10?4). It can be concluded that mining and smelting activities degrade soil quality in this region and the soil pollution might be extended to farming areas. 相似文献
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Toxic metal contamination in the vicinity of Korean abandoned metal mines has been reported. A risk assessment for these metals was performed for the inhabitants in the area of the abandoned Jukjeon metal mine. Soil, groundwater, and crop samples were collected around the mine. After pretreatment of these samples, metal concentrations were measured and then a risk assessment was performed using the Korean soil-contamination risk assessment guidelines. Phytoaccumulation of metals in crops was observed in soybeans (As and Zn), red peppers (Zn), sweet potatoes (As and Zn), and cabbage (Cu), which had higher metal concentrations than soils in the area. The metal intake rate was highest for inhalation of soil. Cancer risk was highest from ingestion of As-contaminated crops. The sum of carcinogenic risks was 6.29 × 10–3. The non-carcinogenic risk was highest for ingestion of As-contaminated crops (8.17). Most of the risks were attributable to As, Pb, and Hg contamination, therefore these three metals must be considered as the principal metals toxic to human health in the sampled area. In particular, the inhalation of metal-contaminated soil should be considered for risk assessment along with ingestion of water and crops in abandoned mine areas. 相似文献
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Xikuangshan is located in Lengshuijiang City, Hunan province, China. With intensive mining and metallurgical activities, large amounts of tailing containing heavy metals (in this study, the term “heavy metals” is used for both metals and metalloids) were introduced to the soils around the mine area. Those heavy metals including antimony and other heavy metals would pose huge risk to human health and ecological environment. With a view to providing information on the extent of contamination and potential ecological risk of heavy metals in the soils of this mine area, the total contents of antimony (Sb), manganese (Mn), zinc (Zn), arsenic (As), cadmium (Cd), and lead (Pb) in the soils were examined. The results revealed that the predominant pollutants in this area were Sb, Cd, and Zn with mean concentrations being 356.58, 9.98, and 486.42 mg kg?1, 119.66, 117.41, and 5.17 times of the corresponding background values respectively. The pollution indices (Ps) indicated that the pollution levels of all sampling zones were serious including the control zones. The ecological risk levels of all heavy metals were very high on all the sampling zones except sampling zone 7 (as considerable), and Sb, Cd, and As were regarded as making great contribution to the risk indices (RI). 相似文献
19.
为了解山东省水岸带土壤重金属的含量特征和污染状况,于2010年9月—10月采集了39个水岸带土壤样品,分析了土壤中Cr、Co、Ni、Cu、Zn、Cd、Pb和Hg的含量以及土壤的pH值、粒度和有机质,采用单因子指数法、综合指数法和潜在生态危害指数法对水岸带土壤重金属污染进行了评价,并利用相关分析和聚类分析对其来源进行了初步的解析。结果表明:水岸带土壤的pH值为5.67—8.66,主要呈碱性;有机质的平均含量为9.39 g/kg,土壤粒度主要以砂粒和粉粒为主,其平均体积百分比分别为50.33%和38.48%,平均粒径为89.69 μm;Cr、Co、Ni、Cu、Zn、Cd、Pb和Hg的平均含量为53.03 mg/kg、10.33 mg/kg、24.96 mg/kg、18.38 mg/kg、56.13 mg/kg、0.142 mg/kg、22.48 mg/kg和0.020 mg/kg。各水岸带土壤重金属的含量均符合《土壤环境质量标准》(GB15618-1995)二级标准。以山东省土壤元素背景值为评价标准,水岸带土壤重金属总体表现为轻度污染和轻微生态风险,其中Cd和Hg是主要的污染因子,其对潜在生态危害指数的平均贡献率分别为46.8% 和33.6%。洙赵新河、廖河、门楼水库和东平湖水岸带土壤重金属污染及潜在生态危害明显高于其他水源地。源解析的结果表明:水岸带土壤重金属的含量受自然源和人为源的双重影响,人为源主要包括地表径流、工业废气、垃圾和交通运输等。 相似文献
20.
In recent years, heavy metal contamination in suburban vegetable soils calls for significant concerns due to the rapid urbanization and industrialization. In present study, 110 suburban vegetable soil samples from Yanbian, Northeast China, were collected. Concentration characteristics, pollution level, health risk, and source identification were evaluated by using different quantitative indices. Concentrations of Pb, Cr, Cu, Ni, Zn, Cd, and As in suburban soils were measured. Mean concentrations of Pb, Cr, Cu, Ni, Zn Cd, and As were 34.9 ± 10.5, 73.5 ± 44.4, 29.6 ± 19.4, 23.4 ± 12.0, 88.5 ± 26.7, 0.16 ± 0.16, and 9.24 ± 3.79 mg/kg, which were showed significantly higher than corresponding background values of Jilin province, respectively. The soils were moderately heavy polluted by Cu and Cd based on the results of geo-accumulated index and pollution indices. The pollution load index indicated that almost all of the study area were middle or heavy polluted, especially in Antu County and Helong City. Children in Yanbian may pose non-carcinogenic and carcinogenic risks with the major exposure pathway of ingestion. Principle component analysis results suggested that Pb, Cu, Zn, and Cd were mainly associated with agricultural activities, Ni and Cr were defined as combined source (lithogenic and anthropogenic), and As was tended to be from excessive application of pesticides and industrial activities. 相似文献

