Arsenic-contaminated soil remediation with hyperthermophilic compost: Effects on arsenic bioavailability, soil fertility and bacterial community.

IF 8 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Liu Yang, Yingle Chen, Song Wang, Shu Lin, Guowen Huang, Zhihong Wang, Zhen Yu, Lei Zeng
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Abstract

Soil arsenic (As) contamination has posed a significant global environmental challenge seriously threatening human health. Compost has attracted broad interests as a kind of eco-friendly and versatile amendment. However, hyperthermophilic compost (HTC), which is newly-developed and more advantageous to environment, has not yet been widely utilized to remediate As-contaminated soil, and its effectiveness remains unclear. Herein, the effects of HTC amendment on soil fertility, As bioavailability, plant growth and soil bacterial community were investigated. After amended with HTC, soil nutrient content and enzyme activity were improved. Concurrently, the content of both total As and available As in soil was reduced, partially due to the formation of organo-As complex with the presence of humic acid and fulvic acid in HTC. Notably, Chinese white cabbage (Brassica campestris L. ssp. chinensis Makino) cultivated in HTC-treated soil exhibited better growth and less As uptake, but showed enhanced translocation of As from the below-ground part to the above-ground part. In particular, the lowest HTC addition ratio (HTC:Soil = 1:10, v:v) proved to be the most optimal, increasing the height, width and biomass of Chinese white cabbage from 9.92 ± 0.72 cm, 6.76 ± 0.31 cm and 4.43 ± 0.49 g, to 21.29 ± 0.48 cm, 19.3 ± 1.44 cm and 23.27 ± 2.45 g, respectively. The results of soil bacterial community analysis revealed that HTC amendment stimulated the growth and metabolism of soil microbes, augmenting the richness and diversity of bacteria related to the methylation and volatilization of As and plant growth. This work suggests that HTC can serve as an effective amendment for As-contaminated soil remediation, and a superior alternative to compound fertilizer for plant cultivation, displaying promising potential for agricultural applications.

用超嗜热堆肥修复受砷污染的土壤:对砷生物利用率、土壤肥力和细菌群落的影响。
土壤砷(As)污染已成为严重威胁人类健康的全球性重大环境挑战。堆肥作为一种生态友好型多功能改良剂引起了广泛关注。然而,新开发的、对环境更有利的超嗜热堆肥(HTC)尚未被广泛用于修复砷污染土壤,其效果尚不明确。本文研究了添加 HTC 对土壤肥力、砷生物利用率、植物生长和土壤细菌群落的影响。添加 HTC 后,土壤养分含量和酶活性均有所提高。同时,土壤中总砷和可利用砷的含量都有所降低,部分原因是 HTC 中腐植酸和富里酸的存在形成了有机砷复合物。值得注意的是,在经 HTC 处理的土壤中栽培的大白菜(Brassica campestris L. ssp.特别是,最低的 HTC 添加比(HTC:土壤 = 1:10,v:v)被证明是最理想的,大白菜的高度、宽度和生物量分别从 9.92 ± 0.72 厘米、6.76 ± 0.31 厘米和 4.43 ± 0.49 克增加到 21.29 ± 0.48 厘米、19.3 ± 1.44 厘米和 23.27 ± 2.45 克。土壤细菌群落分析结果表明,HTC 改良剂刺激了土壤微生物的生长和新陈代谢,增加了与砷的甲基化和挥发以及植物生长相关的细菌的丰富性和多样性。这项研究表明,HTC 可作为砷污染土壤修复的一种有效改良剂,也是植物栽培中复合肥料的一种优越替代品,在农业应用中具有广阔的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Environmental Management
Journal of Environmental Management 环境科学-环境科学
CiteScore
13.70
自引率
5.70%
发文量
2477
审稿时长
84 days
期刊介绍: The Journal of Environmental Management is a journal for the publication of peer reviewed, original research for all aspects of management and the managed use of the environment, both natural and man-made.Critical review articles are also welcome; submission of these is strongly encouraged.
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