Evaluating the protection of bacteria from extreme Cd (II) stress by P-enriched biochar

生物炭 碱度 化学 环境化学 磷酸盐 溶磷菌 环境修复 细菌 微生物 肠杆菌 核化学 根际细菌 生物化学 生物 污染 热解 生态学 有机化学 根际 大肠杆菌 基因 遗传学
作者
Haoming Chen,Lingyi Tang,Zhijun Wang,Mu Su,Da Tian,Lin Zhang,Zhen Li
出处
期刊:Environmental Pollution [Elsevier BV]
卷期号:263: 114483-114483 被引量:80
标识
DOI:10.1016/j.envpol.2020.114483
摘要

Cadmium cations (Cd2+) are extremely toxic to organisms, which limits the remediation of Cd by microorganisms. This study investigated the feasibility of applying biochar to protect bacteria from extreme Cd2+ stress (1000 mg/L). An alkaline biochar (RB) and a slightly acidic biochar (SB) were selected. SB revealed a higher Cd2+ removal than RB (15.5% vs. 4.8%) due to its high surface area. Addition of Enterobacter sp. induced formation of Cd phosphate and carbonate on both SB and RB surface. However, Cd2+ removal by RB enhanced more evidently than SB (78.9% vs. 30.2%) due to the substantial microbial regulation and surficial alkalinity. Thermogravimetric analysis (TGA), X-ray photoelectron spectroscopy (XPS) and geochemical modeling (GWB) all confirmed that the formation of stable Cd phosphate on RB was superior to that in SB. These biomineralization, together with biochar pore structure, protect bacterial cells from Cd stress. Moreover, the alkalinity of biochar promoted the formation of carbonate, which strengthened the decline of Cd2+ toxicity. The protection by RB was also confirmed by the intense microbial respiration and biomass (PLFA). Furthermore, this protection induced a positive feedback between P-abundant biochar and Enterobacter sp.: biochar provides P source (the most common limiting nutrient) to support microbial growth; bacteria secrete more organic acids to drive P release. This study therefore elucidated the protection of bacteria by P-enriched biochar based on both physic-chemical and microbial insights.
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