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评价蓟和城市固体废物堆肥对多潜在有毒元素污染土壤的辅助植物修复作用。

Evaluation of Cynara cardunculus L. and municipal solid waste compost for aided phytoremediation of multi potentially toxic element-contaminated soils.

机构信息

Dipartimento di Agraria, University of Sassari, Viale Italia 39, 07100, Sassari, Italy.

Nucleo di Ricerca sulla Desertificazione, University of Sassari, Viale Italia 39, 07100, Sassari, Italy.

出版信息

Environ Sci Pollut Res Int. 2021 Jan;28(3):3253-3265. doi: 10.1007/s11356-020-10687-2. Epub 2020 Sep 10.

Abstract

The suitability for aided phytoremediation of Cynara cardunculus L. var. altilis and municipal solid waste compost (MSWC) applied at 2% and 4 % rates was evaluated in a multi potentially toxic element (PTE)-contaminated mining soil (Pb ~ 15,383 mg kg, Zn ~ 4076 mg kg, As ~ 49 mg kg, Cd ~ 67 mg kg, Cu ~ 181 mg kg, and Sb ~ 109 mg kg). The growth of C. cardunculus significantly increased with compost amendment and followed the order: MSWC-4% > MSWC-2% > Control. PTE concentrations in the roots of plants grown on amended soils decreased compared with control plants (i.e., less than ~ 82, 94, and 88% for Pb, Zn, and Cd respectively). PTE translocation from roots to shoots depended on both PTE and amendment rate but values were generally low (i.e., < 1). However, PTE mineralomasses were always higher for plants grown on MSWC-amended soils because of their higher biomass production, which favored an overall PTE bioaccumulation in roots and shoots. After plant growth, labile As and Sb increased in amended soils, while labile Pb, Zn, Cu, and Cd significantly decreased. Likewise, dehydrogenase and urease activities increased significantly in planted soils amended with MSWC. Also, the potential metabolic activity and the catabolic versatility of soil microbial communities significantly increased in planted soils amended with MSWC. Overall, our results indicate that C. cardunculus and MSWC can be effective resources for the aided phytoremediation of multi PTE-contaminated soils.

摘要

在一种多潜在有毒元素(PTE)污染的矿山土壤(Pb15383mgkg,Zn4076mgkg,As49mgkg,Cd67mgkg,Cu181mgkg和 Sb109mgkg)中,评估了添加 2%和 4%市政固体废物堆肥(MSWC)对 cardunculus 种的适宜性及其用于辅助植物修复。与对照植物相比,在添加堆肥的土壤中生长的植物的根中的 PTE 浓度降低(即,Pb,Zn 和 Cd 分别低于~82%,94%和 88%)。PTE 从根部向地上部的迁移既取决于 PTE 又取决于添加率,但值通常较低(即<1)。然而,由于生物量的增加,在添加 MSWC 的土壤中生长的植物的 PTE 矿物质量总是更高,这有利于根部和地上部的整体 PTE 生物累积。在植物生长后,添加土壤中的可利用 As 和 Sb 增加,而可利用 Pb,Zn,Cu 和 Cd 则显著减少。同样,添加 MSWC 的种植土壤中的脱氢酶和脲酶活性显著增加。此外,添加 MSWC 的种植土壤中土壤微生物群落的潜在代谢活性和分解代谢多样性显著增加。总体而言,我们的结果表明,C. cardunculus 和 MSWC 可以作为辅助修复多 PTE 污染土壤的有效资源。

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