共查询到19条相似文献,搜索用时 62 毫秒
1.
不同粒径沉积物中多环芳烃和有机氯农药分布特征 总被引:9,自引:1,他引:9
采用湿分法将采自珠江广州河段沉积物样品分成5个粒径的组分(>500μm、500μm>>220μm、220μm>>63μm、63μm>>22μm和<22μm),样品分成2份。第一份测定其中的多环芳烃(PAHs)和有机氯农药(OCPs)进行定量分析,第二份样品的每个粒级进行重液分离,收集轻组分(有机质)和重组分(主要为无机矿物及无定型有机质)。在显微镜下对沉积物中不同粒径轻重组分的吸附剂进行鉴定,分析有机质类型和质量百分比,并测定各组分总有机碳(TOC)和碳黑的含量。结果表明,有机质类型是影响多环芳烃(PAHs)和有机氯农药(OCPs)在不同粒径组分中的分布特征和富集能力的主要因素。 相似文献
2.
3.
采用气相色谱法对北京市官厅水库沉积物表层中持久性有机氯农药(OCPs)的残留状况进行了调查,并对有机氯农药污染水平和生态风险作出评价。结果表明:沉积物中有机氯农药总含量为8.48 ng/g~24.40 ng/g,其中HCHs和DDTs的含量较高,分别为1.11 ng/g~7.73 ng/g和2.97 ng/g~10.52 ng/g,其组分特征为来自环境的残留。与沉积物风险评估低值(ERL)和风险评估中值(ERM)对比评价沉积物中有机污染物的风险程度,官厅水库沉积物表层中的有机氯农药存在一定的生态风险。 相似文献
4.
乌鲁木齐地表水饮用水源地水体有机氯农药健康风险评价 总被引:2,自引:0,他引:2
为了解乌鲁木齐市地表饮用水源地水体中有机氯农药(OCPs)对人体产生的潜在健康危害风险,从一号冰川、英雄桥、乌拉泊水库的9个采样点采集水样,采用液液萃取-气相色谱/质谱法对其中的有机氯农药残留状况进行了测定,水样中9种有机氯化合物的总质量浓度为15.1 ng/L~41.2 ng/L。应用美国国家环保局(US EPA)推荐的健康风险评价方法,对乌鲁木齐市地表饮用水源地水体中有机氯农药通过食用途径进入人体的危害进行了风险计算和初步评价。结果表明,各监测断面的致癌风险和非致癌风险低于ICRP和USEPA推荐的最大可接受风险水平,初步认为目前乌鲁木齐市地表饮用水源地水体中有机氯农药不会对人体产生明显的健康危害。 相似文献
5.
采集兰州西固区土壤样品,采用GC/μECD方法检测样品中有机氯农药(OCPs)污染残留,并分析调查区土壤中OCPs污染特征、来源及潜在生态风险。结果表明,8种OCPs异构体在兰州西固区土壤中的检出率均为100%,总质量比范围在18.34μg/kg~125.34μg/kg之间,平均值为54.84μg/kg;土壤中BCHs和DDTs残留质量比分别为0.742μg/kg~29.3μg/kg和10.9μg/kg~98.6μg/kg。OCPs残留以p,p'-DDT和β-BCH为主。不同采样点土壤样品中OCPs的残留量从高到低依次为路边样绿化带样树根土样菜地样。对DDTs与BCHs异构体残留组分分析发现,调查区土壤中残留的BCHs主要源于历史应用,而DDTs源于近期污染。 相似文献
6.
基于生态风险评价方法对海水淡化和直流冷却两类海水利用工程排放水中的3类典型有机氯农药进行了环境安全性分析。通过实际监测获得有机氯农药在海水利用排放水中的环境浓度;借助美国环境保护署(EPA)颁布的水质基准,获得有机氯农药在海水中的无影响浓度;采用商值法对海水利用排放水中的有机氯农药环境风险进行量化。结果表明:海水利用排放水中七氯和滴滴涕已存在环境风险,其中七氯的污染问题应尤引起重视。 相似文献
7.
8.
9.
10.
介绍了ASE提取、硫酸磺化和GPC净化土壤中有机氯农药的试验方法,并通过对比试验、条件试验等对ASE提取土壤中有机氯农药的效果进行了验证。结果表明,温度在80~110℃,压力在1200~1800psi均适用于提取土壤中有机氯农药,20种有机氯农药除了异狄氏剂回收率偏高外,其它19种全部在50%~150%之间,相对标准偏差均在20%以内。ASE提取、GPC净化,20种农药样品加标平均回收率50%~117%;相对标准偏差3%~28%;2种替代物回收率84%~102%,相对标准偏差6%~7%。 相似文献
11.
12.
建立了基质固相分散-ASE提取-GC/MS法同时测定土壤中8种有机氯农药和16种多环芳烃的方法。对方法的线性、检出限、精密度、回收率及土壤质控样品进行了分析,结果表明,8种有机氯农药和16种多环芳烃线性良好,相关系数为0.997 5~0.999 8,方法检出限为0.39~1.57μg/kg,空白加标样品的相对标准偏差小于20%,实际土壤样品加标回收率为60.6%~125%,土壤质控样品结果均在范围内。该方法能够满足土壤中8种有机氯农药和16种多环芳烃的检测要求。 相似文献
13.
14.
Wang H He M Lin C Quan X Guo W Yang Z 《Environmental monitoring and assessment》2007,133(1-3):231-242
Surface sediment samples from 12 sites of the three selected rivers in Daliaohe River watershed (Hunhe River, Taizihe River
and Daliaohe River) were analyzed with the objective of establishing sources and hazard of the organochlorinae pesticides
(OCPs) and polychlorinated biphenyl (PCBs) in surface sediments. The total concentrations of OCPs varied from 3.06 to 23.24
ng g−1. ∑HCH (α-HCH, β-HCH, δ-HCH, γ-HCH), ∑DDT (p, p′-DDE, p, p′-DDD, o, p′-DDT, p, p′-DDT) and ∑Cyclodiene (Heptachlor, Aldrin,
Heptachlor epoxide, Dieldrin, Endrin) ranged from 1.86 to 21.48, 0.5 to 2.81 and 0.56 to 1.53 ng g−1, respectively. Results of OCPs also illustrate that the most dominant pollutants among the OCPs was ∑HCH, and γ-HCH was the
most dominant isomer in HCH, which was evidence of recent input of lindane. It possibly came from the runoff of polluted soils
and long-scale transportation. Total PCB concentrations ranged between 1.88 and 16.88 ng g−1. The peak concentrations of PCBs were found in sediments from station T5 and D3, which are in the vicinity of industrial
areas and ferry, respectively. These data show a moderate level of OCPs and PCBs contaminations compared to that in other
countries. 相似文献
15.
The Contamination Levels of Organochlorine Pesticides in Water and Sediment Samples in Uluabat Lake, Turkey 总被引:3,自引:0,他引:3
The Uluabat Lake is a reservoir of 125 km2 surface area, in the boundaries of Bursa province, Turkey. The results showed that Uluabat Lake was still contaminated by
organochlorine pesticides and their residues despite the existence of bans over a long time. Considerable amounts of organochlorine
pesticides (HCB, p.p′-DDT, p.p′- DDE, α -, β- and γ-BHC, Aldrin, Heptachlor epoxide, Endrin, Endosulfan I and II) were detected in water and sediment samples during one-year
study in this lake. Samples of water and sediment were collected in different regions, (6 sampling point) of the lake between
February 2002 and November 2002.The mean levels of organochlorine pesticides in water and sediments were determined. According
to results, it was found that various environs in Uluabat Lake were contaminated by 11 different organochlorine pesticides.
Residue analyses showed that higher organochlorine pesticides and their residues were generally more accumulated in the sediment
samples. 相似文献
16.
采用索氏提取气相色谱-质谱法测定中国6个重点水体表层沉积物中16种多环芳烃的含量。各化合物含量范围分别为长江6.20~163 ng/g、淮河7.90~249 ng/g、海河12.1~401 ng/g、松花江5.75~152 ng/g、太湖29.1~2 810 ng/g和滇池19.1~795ng/g;16种多环芳烃的总量分别为:长江1 147 ng/g、淮河1 723 ng/g、海河2 595 ng/g、松花江793 ng/g、太湖12472 ng/g、滇池3 714 ng/g,属中等污染水平。利用特征分子比值法分析结果表明6条水体表层沉积物中PAHs均可能以燃料(包括柴油、汽油、煤、木材)燃烧以及焦化污染为主。淮河和滇池还可能存在轻微石油泄漏污染。利用沉积物质量基准法(SQGs)和沉积物质量标准法分别对6条水体表层沉积物中多环芳烃的风险评估表明严重的多环芳烃生态风险在这些水体表层沉积物中不存在,但长江、淮河、松花江、海河均可能存在一定的潜在风险,负面生物毒性效应会偶尔发生,风险主要来源于荧蒽和菲。太湖和滇池水体中存在的潜在多环芳烃风险种类较多,风险主要来源于菲、荧蒽、芘、苯并(a)蒽、苊和蒽,对水生生物毒性效应较高,有必要进行更深入细致的调查研究高风险区域底栖生物的受损状况、污染来源和途径,以制定合理的污染控制对策。 相似文献
17.
鄱阳湖沉积物重金属空间分布及潜在生态风险评价 总被引:8,自引:1,他引:8
通过分析鄱阳湖沉积物重金属空间分布特征,评价其潜在生态风险,并探讨了主要重金属污染来源。结果表明:鄱阳湖沉积物7种重金属元素Cd、Hg、As、Cu、Pb、Cr、Zn含量平均值分别为0.67、0.078、17、51、72、42.9、117 mg/kg,除Cd外,其余6种元素均明显高于相应的背景值。从空间分布来看,Cd、Cr含量总体呈现东南、西北部偏高的现象,而Hg、Cu、Pb含量总体呈现东南部偏高的现象,As、Zn的含量分布相对平均。Hg、Cu、Pb、Zn 4种金属元素之间存在极显著相关性,表明这些元素污染具有同源性。潜在生态风险评价结果显示,单个重金属潜在生态风险顺序为CuHgPbCdAsCrZn;从综合潜在生态风险分析来看,整个湖区的RI值为46.4~476.3,平均值为165.4,属于中等潜在生态危害,其中湖区东南部综合潜在生态风险最高。Cu、Hg、Pb等重金属主要来自乐安河流域工业排放。 相似文献
18.
2011年4月通过GC-MS检测和210Pb测年对灌河口海域沉积物(GHES)中的PAHs进行了分析,柱状沉积物中21种PAHs总浓度为21.0~209.0 ng/g,均值为88.1 ng/g,7种致癌PAHs浓度为7.0~90.0 ng/g,其中致癌剂苯并[a]芘浓度为ND~2.0 ng/g。PAHs浓度与沉积物中有机质含量呈低度正相关,与p H无明显相关性。源解析表明,近50年来GHES中的PAHs大部分来自煤和生物质燃烧。近50年来,总PAHs和16种优控PAHs浓度在波动中升高;近年来苊、苊烯、苯并[b]荧蒽、荧蒽、茚并[1,2,3-cd]芘的浓度增高,需查明来源。生态风险评价表明,GHES中以芴为主的负面生物毒性效应会偶尔发生。芴、苯并[b]荧蒽、苯并[k]荧蒽的浓度介于临界与偶然效应浓度值之间,应尽量减少对该海域沉积物的搅动,防止污染物再悬浮导致水体的二次污染。 相似文献
19.
Advances in research on pollution of organic pesticides (OPs) in surface water, pollution survey and risk assessments of organochlorine
pesticides (OCPs) and organophosphorus pesticides (OPPs) of surface water in Hangzhou are conducted. Total concentrations
of dichloro-diphenyl-trichloroethane (DDT) and hexachloride-benzene (HCH) in surface water were observed to be 0–0.270 μg/L
and 0–0.00625 μg/L respectively. DDE, as a metabolite of DDT and many species of OPPS were determined in some samples of surface water. Parathion, the main pollutant among OPPs in surface water of Hangzhou,
was observed to be 0–0.445 μg/L. Based on these experimental results, health risk assessments on the organic pollution are
developed. It is observed that the total risk “R
T” at present time of surface water in Hangzhou is mainly contributed by organophosphorus pesticides, especially Parathion;
HCH and DDT are not the main contaminants; on the contrary, organophosphorous pesticides, especially Parathion, must be of
concern at the present time. 相似文献