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在真实田间温室条件下,用再生水和地下水灌溉的农作物对微污染物的吸收。

Uptake of microcontaminants by crops irrigated with reclaimed water and groundwater under real field greenhouse conditions.

机构信息

IDAEA-CSIC, Jordi Girona, 18, 08034, Barcelona, Spain.

出版信息

Environ Sci Pollut Res Int. 2013 Jun;20(6):3629-38. doi: 10.1007/s11356-013-1509-0. Epub 2013 Feb 9.

Abstract

The use of reclaimed water for agricultural irrigation has emerged as a new strategy for coping with water scarcity in semiarid countries. However, the incorporation of the organic microcontaminants in such water into the diet through crop uptake poses a potential risk to human health. This paper aims to assess the presence of organic microcontaminants in different crops irrigated with groundwater and reclaimed water (secondary or tertiary effluents) in a greenhouse experiment. The determination of microcontaminants in water and vegetation samples was performed by solid-phase extraction and matrix solid-phase dispersion procedure with GC-MS/MS, respectively. The presence of nitrates in the groundwater used for irrigation increased biomass production by a higher proportion than the harvest index. The concentration of microcontaminants in lettuce, carrots, and green beans ranged from less than the limit of quantitation to 571 ng g(-1) (fresh weight). Tributyl phosphate and butylated hydroxyanisole exhibited the highest concentration levels in crops. The concentration and frequency of detection of microcontaminants were lower in green bean pods than in green bean roots and leaves. Although the concentrations were generally low, the simultaneous presence of a variety of microcontaminants should be taken into consideration when assessing the risk to human health.

摘要

再生水用于农业灌溉已成为半干旱国家应对水资源短缺的新策略。然而,通过作物吸收将此类水中的有机微量污染物纳入饮食会对人类健康造成潜在风险。本文旨在评估温室实验中用地下水和再生水(二级或三级废水)灌溉的不同作物中有机微量污染物的存在情况。通过固相萃取和基质固相分散程序,分别使用 GC-MS/MS 对水样和植物样品中的微污染物进行了测定。灌溉用地下水硝酸盐的存在使生物量的产生增加了更高的比例,而收获指数则增加了。生菜、胡萝卜和绿豆中的微污染物浓度范围从低于定量限到 571ng/g(鲜重)。磷酸三丁酯和丁基化羟基茴香醚在作物中的浓度最高。与绿豆的根和叶相比,绿豆荚中的微污染物浓度和检出频率较低。尽管浓度通常较低,但在评估对人类健康的风险时,应考虑到同时存在多种微污染物的情况。

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