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矿区周围森林土壤中野火产生的草木灰导致土壤性质变化对细菌的响应:细菌群落组成、碳氮循环的相关性。

Bacterial response to soil property changes caused by wood ash from wildfire in forest soils around mining areas: Relevance of bacterial community composition, carbon and nitrogen cycling.

机构信息

School of Energy & Environmental Engineering, and Beijing Key Laboratory of Resource-oriented Treatment of Industrial Pollutants, University of Science and Technology Beijing, 30 Xueyuan Road, Haidian District, 100083 Beijing, China.

School of Resources and Environment, Anqing Normal University, 1318 Jixian North Road, 246133 Anqing, Anhui, China.

出版信息

J Hazard Mater. 2021 Jun 15;412:125264. doi: 10.1016/j.jhazmat.2021.125264. Epub 2021 Jan 30.

DOI:10.1016/j.jhazmat.2021.125264
PMID:33548782
Abstract

The different physical-chemical properties of the black ash (200-500 °C) and white ash (>510 °C) generated by wildfire may result in varied impacts on soil biological and abiotic indicators. Many studies have highlighted the environmental impacts of wood ash application due to its complex mixture of beneficial and detrimental compounds. However, few studies have compared the effect of black ash and white ash on soil, especially for the heavy metal polluted soil. In this study, we used the comparative analysis of parallel microcosm experiments to study the impacts of white ash and black ash on bioavailable heavy metals and metabolic potentials of microbial community. The results indicated that both white ash and black ash increased the concentration of soil bioavailable As and Cr, while the increasing trend of bioavailable As could be limited by Ca in the treatment of white ash. The addition of black ash could enhance the abundance of genes related to the Calvin cycle (CBB). Different kinds of wood ash inputs into soils could cause the differences in the microbial taxa for carbon fixation, as indicated by the dominance of different taxa for carbon fixation in white ash versus black ash treatments. Additionally, both white ash and black ash impaired dissimilatory nitrate reduction to ammonium (DNRA), nitrate assimilation and nitrification, while white ash enhanced denitrification.

摘要

野火产生的黑灰(200-500°C)和白灰(>510°C)具有不同的物理化学性质,可能对土壤生物和非生物指标产生不同的影响。许多研究强调了由于木灰中有益和有害化合物的复杂混合物,其对环境的影响。然而,很少有研究比较黑灰和白灰对土壤的影响,特别是对重金属污染土壤。在这项研究中,我们使用平行微宇宙实验的对比分析来研究白灰和黑灰对可利用重金属和微生物群落代谢潜力的影响。结果表明,白灰和黑灰都增加了土壤中可利用 As 和 Cr 的浓度,而白灰处理中 Ca 的存在可能限制了可利用 As 浓度的增加趋势。黑灰的添加可以增强与卡尔文循环(CBB)相关的基因的丰度。不同种类的木灰输入土壤中会导致固碳微生物类群的差异,这表明白灰和黑灰处理中固碳的优势类群不同。此外,白灰和黑灰都抑制了异化硝酸盐还原为铵(DNRA)、硝酸盐同化和硝化作用,而白灰增强了反硝化作用。

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