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1.
采用直接进样法和萃取浓缩法2种前处理方式,通过超高效液相色谱-串联质谱法对水中20种拟除虫菊酯类和有机磷类农药进行了测定,并对仪器条件的选择和前处理条件的优化进行了探讨。结果表明,20种农药的线性关系良好,相关系数均>0.999,直接进样法检出限为0.21~2.47μg/L,回收率为81.0%~119%,相对标准偏差<10%。萃取浓缩法检出限为0.0022~0.0043μg/L,回收率为71.5%~115%,相对标准偏差<15%。该方法简便、快捷,精密度和准确度较高,可满足水中拟除虫菊酯类和有机磷类农药的检测要求。  相似文献   

2.
建立了加压流体萃取-气相色谱质谱法测定土壤和沉积物中27种拟除虫菊酯类农药的方法。以丙酮/正己烷(V∶V=1∶1)为萃取溶剂,在120℃和10. 3 MPa条件下静态萃取7 min,循环3次,石墨化炭黑串接氨丙基键合硅胶固相萃取柱净化,HP-5MS UI色谱柱分离,优化了提取和分析过程的重要条件。方法检出限为0. 001~0. 012 mg/kg,土壤中低、高浓度的加标回收率范围分别为68. 3%~123%和75. 3%~115%,沉积物中低、高浓度的加标回收率范围分别为67. 1%~120%和78. 6%~110%,单一目标物的相对标准偏差(RSD)均<20%(n=6)。实验结果表明,该方法消耗溶剂少、效率高、检出限低、精密度和准确度好,适用于土壤和沉积物中拟除虫菊酯类农药残留的测定。  相似文献   

3.
固相萃取-气相色谱法测定水中多种农药类内分泌干扰物   总被引:1,自引:0,他引:1  
建立了水样中用固相萃取小柱提取和净化、GC-ECD检测、GC-MSD定性证实的农药类内分泌干扰物检测方法,该方法样品提取、浓缩、净化步骤简便,能实现31种目标物同时检测。方法检测限0.05~0.50μg/L。添加回收率69%~101%,相对标准偏差低于10%。选择农药包括有机氯类(如滴滴涕、六六六、三氯杀螨醇、艾氏剂、异狄氏剂、狄氏剂、七氯、硫丹、氯丹等),氨基甲酸酯类(如甲草胺、乙草胺等),除虫菊酯类(如氯氰菊酯、速灭菊酯等)及其它农药(如氟乐灵、除草醚、毒死蜱)。该方法应用到测定某水库的水样,水库中31种农药类内分泌干扰物总浓度为48.8~890 ng/L,平均浓度295 ng/L。  相似文献   

4.
植物性食品中拟除虫菊酯类农药测定方法的改进   总被引:3,自引:0,他引:3  
基于色素和含水率两方面的考虑,选用了大米、荼叶和西红柿作为实验介质,在植物性食品中拟除虫菊酯类农药提取条件和净化条件等方面均进行了改进和优化.结果发现,采用正己烷/丙酮混合液(97.5∶2.5,V/V)提取植物性食品中菊酯类农药,40~50℃下超声萃取40min;选用弗罗里硅土和活性炭混合填充物制作层析柱;选用石油醚/乙酸乙酯(9∶1,V/V)作为洗脱溶剂,实验回收率达70%以上,结果令人满意.  相似文献   

5.
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   

6.
惠州农业土壤、灌溉水和农产品中有机氯农药的残留   总被引:1,自引:0,他引:1  
用气相色谱法(GC-ECD)对惠州市51个农业土壤样品、12个灌溉水样品和21个农产品样品中的HCHs和DDTs残留量进行了测定.HCHs平均含量分别为土壤1.66μg/kg、灌溉水5.86ng/L、农产品24.74μg/kg;DDTs平均含量分别为土壤4.98μg/kg、灌溉水2.06ng/L、农产品41.72μg/kg,土壤中有机氯农药通过多种方式进入到水体及农产品中.从HCHs和DDTs异构体组成可以看出,环境中绝大多数农药残留是由于历史上使用造成的,个别地区可能还有新的污染输入.同其它地区相比,惠州农业土壤和灌溉水中的有机氯农药残留水平较低,但农产品尤其是蔬菜中DDTs富集程度较高.  相似文献   

7.
水磨河流域有机氯农药污染调查及防治对策   总被引:3,自引:1,他引:3  
在对水磨河流域实地勘察的基础上,用GC-ECD定量测定了乌鲁木齐市水磨河底泥中有机氯农药HCHs和DDTs的含量,以此来了解水磨河有机氯农药污染情况。结果表明,样品中HCHs和DDTs含量分别为0.107~111.690和0.476~66.512ng/g,其检出率为100%,说明该流域已经普遍受到有机氯农药污染。针对目前的污染现状提出相应的治理措施,以减轻水磨河有机氯农药的污染。  相似文献   

8.
利用超高效液相色谱-串联质谱,建立土壤和沉积物中痕量氨基甲酸酯农药的分析方法。该方法用体积比1:1的二氯甲烷/甲醇对土壤和沉积物样品进行加速溶剂萃取,GCB/PSA固相萃取小柱对萃取液进行净化,内标法定量,用超高效液相色谱-串联质谱法分析土壤和沉积物中20种氨基甲酸酯农药。20种氨基甲酸酯农药在0.02~1.0 μg/mL范围内线性良好(r≥0.99),检测限为0.20~0.60 ng/g。沉积物加标样品(20ng/g)和土壤加标样品(20ng/g)的回收率分别为33.2%~101.9%、38.8%~120.5%,相对标准偏差为6.1%~28.0%、2.3%~16.0%。沉积物加标样品(2.0 ng/g)回收率为43.0%~100.0%,相对标准偏差为2.1%~11.3%。  相似文献   

9.
建立QuEChERS-气相色谱法同时检测土壤中8种有机氯农药的方法,优化分散固相萃取剂用量。土壤样品通过分散固相萃取净化技术,氮吹浓缩后用正己烷定容,最后通过气相色谱测定。结果表明,在2.0~100μg/L质量浓度范围内呈线性,相关系数r为0.9895~0.9991。空白样品在0.5,5和20μg/kg加标浓度下的回收率为75.3%~92.3%,相对标准偏差为3.2%~5.6%(n=5),方法检出限为0.053~0.064μg/kg,测定下限为0.21~0.26μg/kg。该方法操作简单、结果准确、有机试剂用量少、分析成本低,适用于土壤中有机氯农药的残留检测与分析。  相似文献   

10.
采用气相色谱法测定土壤中37种有机磷农药,当取样量为10 g时,37种有机磷农药方法检出限为0. 002~0. 015 mg/kg,测定下限为0. 008~0. 060 mg/kg。低含量加标样品中有机磷农药的加标回收率为72. 8%~104%,相对标准偏差为4. 2%~13. 8%;中含量加标样品中有机磷农药的加标回收率为71. 5%~101%,相对标准偏差为4. 3%~13. 5%;高含量加标样品中有机磷农药的加标回收率为74. 6%~109%,相对标准偏差为6. 8%~14. 6%。该方法灵敏度高、分离效果好、重现性好,能够满足土壤中37种有机磷农药残留检测的要求。  相似文献   

11.
In the present study we quantified the residues of organophosphorus (e.g. ethion and chlorpyrifos), organochlorine (e.g. heptachlor, dicofol, alpha-endosulfan, beta-endosulfan, endosulfan sulfate) and synthetic pyrethroid (e.g. cypermethrin and deltamethrin) pesticides in made tea, fresh tea leaves, soils and water bodies from selected tea gardens in the Dooars and Hill regions of West Bengal, India during April and November, 2006. The organophosphorus (OP) pesticide residues were detected in 100% substrate samples of made tea, fresh tea leaves and soil in the Dooars region. In the Hill region, 20% to 40% of the substrate samples contained residues of organophosphorus (OP) pesticides. The organochlorine (OC) pesticide residues were detected in 33% to 100% of the substrate samples, excluding the water bodies in the Dooars region and 0% to 40% in the Hill region. The estimated mean totals of studied pesticides were higher in fresh tea leaves than in made tea and soils. The synthetic pyrethroid (SP) pesticide residues could not be detected in the soils of both the regions and in the water bodies of the Dooars. Sixteen percent and 20% of the made tea samples exceeded the MRL level of chlorpyrifos in Dooars and Hill regions respectively. The residues of heptachlor exceeded the MRL in 33% (April) and 100% (November) in the Dooars and 40% (April) and 20% (November) in the Hill region. Based on the study it was revealed that the residues of banned items like heptachlor and chlorpyrifos in made tea may pose health hazards to the consumers.  相似文献   

12.
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   

13.
The residues of 31 chlorinated hydrocarbons (CHCs), 25 chlorophenols (CPs), 30 organophosphorus (OP) and pyrethroid (PRT) in two arable soils from the semi-arid and subtropical regions of China were assessed. Data obtained indicate that the main compounds of CHC pesticide residues in the semi-arid soil were 4,4′-DDE (25.3 ng/g) and β-HCH (14.1 ng/g), which totally accounted to about 90% of total CHC residues detected. The total content of CHC residues detected in the subtropical soil was only 3.1 ng/g, of which approximately 50% was β-HCH. However, the total content of CP residues in both of the soils was about 11 ng/g. In the semi-arid soil, only parathion-methyl amongst the 30 compounds of OP and PRT residues was detected (32.5 ng/g), whilst malathion and parathion-methyl (8.7 and 17.7 ng/g, respectively) detected in the subtropical soil. Based on these results, it was suggested the environmental risk of pesticide residues ranked in an order as CHCs (mainly as 4,4′-DDE, β-HCH) > OP (parathion-methyl) > CPs for the semi-arid soil, and as OPs (parathion-methyl and malathion) > CPs > CHCs (β-HCH) for the subtropical soil.  相似文献   

14.
杭州地区农业土壤中重金属的分布特征及其环境意义   总被引:1,自引:0,他引:1  
为了分析杭州地区农业土壤重金属的分布特征及其环境意义,通过现场采样和室内分析检测的方法,对杭州市各区县不同作物农业土壤表层土中的Hg、As、Cu、Pb、Cr、Cd 6种重金属元素进行检测,并对其分布特征进行了分析。结果表明,杭州地区农业土壤中除As外,其他5种重金属的平均含量均低于且接近浙江省土壤背景值,个别采样点的重金属含量超过了土壤环境质量国家二级标准。总体上,杭州地区农业土壤处于安全水平。通过重金属的区域分布特征分析表明,余杭区和富阳市农业土壤中重金属平均含量普遍高于其他区域。萧山区和建德市部分农业土壤则存在Cu和Hg含量较高的情况,而淳安县农业土壤中重金属含量差异较大,土壤中出现了As、Cr和Cd含量最大值。不同作物的农业土壤重金属含量存在一定的差异,但不明显。水稻田和蔬菜地的土壤中,重金属含量较其他作物种植类型的土壤中含量高;叶菜类(蔬菜、茶叶)作物土壤中的Cd含量要比根茎类(水稻)、茄果类(水果)及其他作物种植类型的土壤中的含量低。目前杭州地区土壤中6种重金属含量均对作物的直接危害不大,但由于萧山区个别采样点Cu含量严重超标,淳安县土壤中Cd受外源性来源影响也已较明显,需要相关部门加大监管力度,防止污染事件发生。同时,为防止农业土壤中重金属含量进一步升高,需要加大大气降尘监测与治理、废气污染监管与控制治理。  相似文献   

15.
Pyrethroid insecticides are hydrophobic compounds that partition to streambed sediments and have been shown to cause toxicity to non-target organisms; their occurrence is well documented in parts of California, but there have been limited studies in other urban and agricultural areas across the United States. To broaden geographic understanding of pyrethroid distributions, bed sediment samples were collected and analyzed from 36 streams in 25 states, with about 2/3 of the sites in urban areas and 1/3 in agricultural areas. At least one pyrethroid (of the 14 included in the analysis) was detected in 78% of samples. Seven pyrethroids were detected in one or more samples. Bifenthrin was the most frequently detected (58% of samples), followed by permethrin (31%), resmethrin (17%), and cyfluthrin (14%). The other three detected pyrethroids (cyhalothrin, cypermethrin and delta/tralomethrin) were found in two or fewer of the samples. Concentrations ranged from 0.3 to 180 ng g(-1) dry weight. The number of pyrethroids detected were higher in the urban samples than in the agricultural samples, but the highest concentrations of individual pyrethroids were split between urban and agricultural sites. The pyrethroids detected in the agricultural areas generally followed use patterns. Predicted toxicity was greater for urban areas and attributed to bifenthrin, cyfluthrin and cypermethrin, while in agricultural areas the toxicity was mainly attributed to bifenthrin.  相似文献   

16.
Eighty eight surface soil samples were collected from the Qinghai-Tibetan Plateau (QTP) for determination of polycyclic aromatic hydrocarbons (PAHs) and organochlorine pesticides (OCPs), including dichlorodiphenyltrichloroethane and metabolites (DDXs) and hexachlorocyclohexane isomers (HCHs). The measured concentrations were 51.8 ± 38.5 ng g(-1), 0.329 ± 0.818 ng g(-1), and 0.467 ± 0.741 ng g(-1) as means and standard deviations of PAHs, DDXs, and HCHs, respectively, which were 1-2 orders of magnitude lower than those reported for eastern China. Significant differences were also revealed among four sub-areas within QTP. PAHs detected in the samples from the remote sub-areas of T'ang-ku-la/Hoh Xil Mountains and along the Qinghai-Tibet highway in the west and northwest of QTP were 1 order of magnitude lower than those from Lhasa and east Qinghai. The differences in soil OCPs among the sub-areas were 2-7 times. Soil PAHs were significantly correlated with emission density and soil organic carbon content (SOC), while OCPs were correlated significantly with the population density and SOC. Based on the calculated backward air mass trajectories and geographical distributions of emission and population, it was revealed that PAHs and OCPs accumulated in the soils in the west and northwest QTP were primarily from long-range transport and may represent the background levels of East Asia. This part of QTP can also serve as an important receptor area for regional or even global long-range transport study. The elevated concentrations of PAHs and OCPs in Lhasa and east Qinghai were mainly from local sources, while PAHs from adjacent Lanzhou area also contributed considerably to the accumulation of PAHs in east Qinghai.  相似文献   

17.
We studied the profiles, possible sources, and transport of polycyclic aromatic hydrocarbons (PAHs) in soils from the Longtang area, which is an electronic waste (e-waste) recycling center in south China. The sum of 16 PAH concentrations ranged from 25 to 4,300 ng/g (dry weight basis) in the following order: pond sediment sites (77 ng/g), vegetable fields (129 ng/g), paddy fields (180 ng/g), wastelands (258 ng/g), dismantling sites (678 ng/g), and former open burning sites (2,340 ng/g). Naphthalene, phenanthrene, fluoranthene, pyrene, chrysene, and benzo[b]fluoranthene were the dominant PAHs and accounted for approximately 75 % of the total PAHs. The similar composition characteristics of PAHs and the significant correlations among individual, low molecular weight, high molecular weight, and total PAHs were found in all six sampling site types, thus indicating that PAHs originated from similar sources. The results of both isomeric ratios and principal component analyses confirmed that PAHs were mainly derived from the incomplete combustion of e-waste. The former open burning sites and dismantling sites were the main sources of PAHs. Soil samples that were taken closer to the point sources had high PAH concentrations. PAHs are transported via different soil profiles, including those in agricultural fields, and have been detected not only in 0- to 40-cm-deep soil but also in 40 cm to 80 cm-deep soil. PAH concentrations in soils in Longtang have been strongly affected by primitive e-waste recycling, particularly by former open burning activities.  相似文献   

18.
对佳木斯市农业土壤中酞酸酯类污染物含量进行了调查。在佳木斯市市区及6个县市采集土壤样品184个进行分析。监测结果表明,土壤中酞酸酯浓度(∑PAEs)为未检出~10298.9μg/kg,检出率为89.1%。DEHP为主要污染物,检出率为88.0%,均值为1999.2μg/kg,最高浓度为8577.4μg/kg。DMP检出率最低,为0.5%。  相似文献   

19.
建立了王水水浴消解-原子荧光法测定土壤中砷汞的方法,确定还原剂为硼氢化钾,测砷和汞时硼氢化钾的最优质量分数分别为2%和0.05%,载流为5%盐酸。该法砷和汞分别在质量浓度0.0~40.0μg/L和0.00~4.00μg/L范围内线性良好,相关系数均0.999 5,砷和汞的检出限分别为0.009和0.001 mg/kg,相对标准偏差分别为3.90%和2.67%,加标回收率分别为94.1%~107.6%和92.0%~104.0%。采用本法对国家标准土壤样品和东海县部分农田土壤样品进行测定分析,结果良好,表明该法操作简单、灵敏度高、实用性好,适用于土壤中砷和汞的测定。  相似文献   

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