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大气沉降物对矿区小麦幼苗的毒害作用。

Toxic effects of atmospheric deposition in mining areas on wheat seedlings.

机构信息

School of Environment and Spatial Informatics, China University of Mining and Technology, No.1 Daxue Road, Xuzhou, 221116, Jiangsu, China.

Geological Survey of Anhui Province (Anhui Institute of Geological Sciences), Hefei, 230001, Anhui, China.

出版信息

Environ Geochem Health. 2024 Feb 12;46(2):69. doi: 10.1007/s10653-024-01869-9.

Abstract

Storage and transportation of coal, as well as operation of coal-fired power plants, produce amounts of metallic exhaust that may lead to different atmospheric environment in the overlapped areas of farmland and coal resource (OAFCR) environment. To investigate the effects of different atmospheric environment in the OAFCR region (north of Xuzhou) on wheat seedlings (AK-58), a box experiment was conducted and compared to an area far from the OAFCR (south of Xuzhou). The study revealed that (1) compared to the southern suburb of Xuzhou, the fresh and dry weight, activities of photosynthetic enzymes and POD of wheat seedlings in the OAFCR reduced obviously. (2) Significantly higher levels of Cr, Cd, Pb, Zn, and Cu were found in the shoots and roots of wheat seedlings in the OAFCR, with lower transfer factor for heavy metals (except Cd and As) in comparison to those in the southern suburb. And the bioconcentration factors of heavy metals (except As) in wheat seedlings in the OAFCR were significantly higher. (3) Nearly 90% of heavy metals (Pb, Cu, Cd, Zn, and Cr) absorbed by wheat were stored in cell walls and soluble fractions, with significantly higher contents of Cu and Cr in wheat seedlings' cell walls and higher contents of Pb, Zn, and Cd in soluble components found in the OAFCR. Our results showed that atmospheric deposition in the mining area has a certain toxic effect on wheat seedlings, and this study provides a theoretical basis for OAFCR crop toxicity management.

摘要

煤炭的储存和运输,以及燃煤电厂的运行,会产生大量的金属排放物,可能导致农田和煤炭资源重叠区(OAFCR)的大气环境发生变化。为了研究 OAFCR 地区(徐州北部)不同大气环境对小麦幼苗(AK-58)的影响,进行了箱式实验,并与远离 OAFCR 地区(徐州南部)进行了比较。研究表明:(1)与徐州南郊相比,OAFCR 地区小麦幼苗的鲜重和干重、光合酶和 POD 活性明显降低。(2)OAFCR 地区小麦幼苗地上部和根部的 Cr、Cd、Pb、Zn 和 Cu 含量明显较高,除 Cd 和 As 外,重金属的转移系数较低,而 OAFCR 地区小麦幼苗的重金属生物浓缩系数(除 As 外)明显较高。(3)小麦吸收的重金属(Pb、Cu、Cd、Zn 和 Cr)有近 90%储存在细胞壁和可溶部分,OAFCR 中细胞壁中的 Cu 和 Cr 含量较高,可溶部分中的 Pb、Zn 和 Cd 含量较高。我们的结果表明,矿区大气沉降对小麦幼苗有一定的毒性作用,本研究为 OAFCR 作物毒性管理提供了理论依据。

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