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首页> 外文期刊>Pedosphere: A Quarterly Journal of Soil Science >Residues of organochlorine pesticides (OCPs) in agricultural soils of Zhangzhou City, China.
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Residues of organochlorine pesticides (OCPs) in agricultural soils of Zhangzhou City, China.

机译:漳州市农业土壤中有机氯农药(OCP)的残留

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A soil survey was conducted in Zhangzhou City, an important agricultural region in south of the Fujian Province, China. 93 surface soil samples were collected in the paddy fields, arable fields, orchards and tea plantations from Zhangzhou City. An additional soil profile was sampled in a paddy field as previous research had indicated high concentrations of organochlorine pesticides (OCPs) in the paddy fields. Dichlorodiphenyltrichloroethanes (DDTs) ranged from 0.64-78.07 ng g-1 dry weight and hexachlorocyclohexanes (HCHs) ranged from 0.72-30.16 ng g-1 dry weight in the surface soil of the whole study region. Ratios of alpha -HCH/ gamma -HCH<4 and o,p'-DDT/p,p'-DDT>1 in all soil samples suggested that lindane and dicofol were widely applied in this region in the past. Concentrations of HCHs and DDTs in soils from the four land use types followed the orders: paddy fields>vegetable lands>tea plantations>orchards and tea plantations>orchards>paddy fields>vegetable lands, respectively. Analyses of the data showed no correlation (r<0.1) between elevation and OCPs contents in paddy fields, tea plantations and orchards and vegetable lands, indicated no significantly different features in distribution of HCHs and DDTs in the soils from low lying plains and mountains and the unsystematic usage of OCPs, and highlighted the fragmented nature of agricultural production in Zhangzhou, as well as the reemission of OCPs from the soils, where high OCPs concentrations were found, in Longhai of Zhangzhou. In addition, no obvious relationship between the OCPs and total organic carbon (TOC) (r<0.3) was observed in the soil profile. The mean contribution of dicofol in total DDTs was 66% in the whole Zhangzhou region. The approximate burdens of HCHs and DDTs in the surfaces layer of 0-20 cm were 0.44 t and 1.55 t, respectively. The storage of both HCHs and DDTs in soil surface layer (0-20 cm) accounts for 40% burden of the soil layer of 0-50 cm (1.10 t HCHs and 3.87 t DDTs), in which highest concentrations of OCPs were observed in soil profile.
机译:在中国福建省南部重要的农业地区漳州进行了土壤调查。在漳州市的稻田,耕地,果园和茶园中采集了93个表层土壤样品。由于先前的研究表明在稻田中有高浓度的有机氯农药(OCP),因此在稻田中还采样了另外的土壤剖面。在表层土壤中,二氯二苯基三氯乙烷(DDT)的干重为0.64-78.07 ng g -1 ,六氯环己烷(HCHs)的干重为0.72-30.16 ng g -1 整个研究区域。 α-HCH /γ-HCH <4与 o , p '-DDT / p , p 的比率在所有土壤样品中'-DDT> 1均表明,过去在该区域广泛使用了林丹和三氯杀螨醇。四种土地利用类型的土壤中六氯环己烷和滴滴涕的浓度依次为:稻田>菜地>茶园>果园和茶园>果园>稻田>菜地。数据分析表明,稻田,茶园,果园和菜地中海拔和OCP含量之间没有相关性( r <0.1),表明土壤中六氯环己烷和滴滴涕的分布特征没有显着差异来自低洼平原和山区以及OCP的非系统性使用,并突出了漳州农业生产的分散性,以及在漳州龙海发现OCP浓度高的土壤中释放了OCP。另外,在土壤剖面中,OCP与总有机碳(TOC)( r <0.3)之间没有明显的关系。在整个漳州地区,三氯杀螨醇对全部滴滴涕的平均贡献为66%。在0-20 cm的表层中六氯环己烷和滴滴涕的负担分别约为0.44 t和1.55 t。六氯环己烷和滴滴涕在土壤表层(0-20厘米)中的存储占0-50厘米(1.10吨六氯环己烷和3.87吨滴滴涕)的土壤层的40%负担,其中OCP的浓度最高。土壤剖面。

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