Combined effect of elemental sulfur application and co-cropping of Alliaria petiolata and Salix aquatica grandis on trace element phytoextraction from contaminated soil

IF 5.4 Q2 ENGINEERING, ENVIRONMENTAL
Jordan Collot, Eva Escadeillas, Tristan Couraud, Philippe Binet, Michel Chalot
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Abstract

To improve trace element (TE) phytoextraction techniques, the use of soil amendments and the co-cropping of accumulator species have been often studied. This study aimed to evaluate the possibility of combining the application of elemental sulfur (S8) with the co-cropping of two TE accumulating species, Alliaria petiolata and Salix aquatica grandis. A pot experiment was conducted with two soils, lightly (LC) and heavily contaminated (HC) by TE, originated from an industrial wasteland. The application of S8 significantly reduced pH by 1.17 and 1.23 unit after 64 days in LC and HC soils, respectively, and increased Cd, Cr, Mn, Ni, Pb and Zn contents in soil extractable fraction and plants. An increase in the TE-extraction potential was observed and was greater in LC soil, as the S8 application led to a reduction of biomass produced by both plants in HC soil. However, co-cropping treatment on HC soil maximized the extraction of TE, especially for Cr and Ni when S8 treatment was applied, since the plants showed no competition but rather differences in the elements accumulated. Consequently, the combination of S8 and the co-cropping of A. petiolata and S. aquatica grandis was shown to be relevant for the phytoextraction of TE in HC soils.

Abstract Image

单质硫施用与小叶葱、大柳混作对污染土壤中微量元素提取的影响
为了提高植物提取微量元素的技术水平,人们经常对土壤改良剂的使用和积累种的混作进行研究。本研究旨在探讨单质硫(S8)的施用与两种TE富集植物小葱(Alliaria petiolata)和大柳(Salix aquatica grandis)混作的可能性。以某工业废弃地为研究对象,采用TE轻度污染(LC)和重度污染(HC)土壤进行盆栽试验。施用S8后64 d, LC和HC土壤pH值分别降低1.17和1.23个单位,土壤可萃取组分和植物中Cd、Cr、Mn、Ni、Pb和Zn含量均显著增加。在LC土壤中观察到te提取潜力的增加,并且在LC土壤中更大,因为S8的施用导致HC土壤中两种植物产生的生物量减少。然而,在HC土壤上,连作处理最大限度地提高了TE的提取,特别是S8处理对Cr和Ni的提取,因为植株在元素积累方面没有竞争,而是存在差异。综上所述,S8与小叶茅和大水杨混作对HC土壤中TE的植物提取有一定的影响。
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来源期刊
Journal of hazardous materials advances
Journal of hazardous materials advances Environmental Engineering
CiteScore
4.80
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