Enhanced Pb immobilization via the combination of biochar and phosphate solubilizing bacteria

生物炭 去壳 环境修复 化学 吸附 吸附 磷酸盐 溶磷菌 核化学 环境化学 金属 细菌 污染 根际细菌 根际 有机化学 植物 热解 生物 遗传学 生态学
作者
Haoming Chen,Jiawen Zhang,Lingyi Tang,Mu Su,Dacheng Tian,Lin Zhang,Zhen Li,Shuijin Hu
出处
期刊:Environment International [Elsevier]
卷期号:127: 395-401 被引量:168
标识
DOI:10.1016/j.envint.2019.03.068
摘要

Application of biochar in heavy metal remediation suffers from lack of long-term stability. Phosphate-solubilizing bacteria (PSB) are able to elevate P release and the subsequent reaction with Pb to form stable pyromorphite. This study investigated the feasibility of applying PSB modified biochar to enhance immobilization of Pb2+. An alkaline biochar produced from rice husk (RB) and a slightly acidic biochar produced from sludge (SB) were selected. It showed that the biochars can effectively remove Pb2+ via adsorption, i.e., aqueous Pb concentrations after RB and SB addition were reduced by 18.61 and 53.89% respectively. The addition of PSB increased the Pb2+ removal for both biochars (to 24.11 and 60.85%, respectively). In particular, PSB significantly enhanced the formation of stable pyromorphite on surface of SB. This is due to that the evenly distributed PSB enhanced P release and regulated pH on the biochar surface. Moreover, small particles (<0.074 mm) showed their higher ability to induce the formation of pyromorphite, for both RB and SB. Nevertheless, SB demonstrated higher capability of sorption, together with its more abundant P content, which provided a more suitable platform to attract PSB to immobilize heavy metals. Therefore, the combination of biochar and PSB is a promising candidate material for heavy metal remediation. However, the types and particle size distribution of biochar should be addressed.
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