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基于MICP的固化粉尘微生物抑尘剂试验研究

高广义

煤矿安全2024,Vol.55Issue(3):91-98,8.
煤矿安全2024,Vol.55Issue(3):91-98,8.DOI:10.13347/j.cnki.mkaq.20222042

基于MICP的固化粉尘微生物抑尘剂试验研究

Experimental research on microbial dust suppressant for solidified dust based on MICP

高广义1

作者信息

  • 1. 中铁隧道勘察设计研究院有限公司,广东 广州 511458
  • 折叠

摘要

Abstract

In order to reduce the concentration of coal dust in open-pit coal mines,reduce and prevent the harm of coal dust,based on the microbial induced calcite precipitation solidification dust technology,the influence of environmental factors(temperature,pH)on the growth of Bacillus pasteuri was explored,and the effects of bacterial concentration,cement concentration and nutrient solution concentration on the solidification effect were evaluated by measuring the production of CaCO3.Through the experiment,the matrix analysis method was used to optimize the proportion of Bacillus pasteuri microbial dust suppressant and a new type of high-effi-ciency and environmentally friendly microbial dust suppressant for mining was proposed.The results show that the suitable culture conditions of Bacillus pasteuri are 30℃-35℃,pH 7.5,and the microbial dust suppressant is suitable for opencast coal mines under high temperature and moderate alkaline environment;there was a positive correlation between the concentration and the bacterial concentration.With the increase of cement concentration(urea,calcium chloride),the generation amount of CaCO3 increases and then decreases;Bacillus pasteurelli microbial dust suppressant has good permeability,strong wind resistance,water retention,rain resistance and other comprehensive properties;the optimization scheme of the composition ratio of Bacillus pasteuri microbial dust suppressant is:the OD600 value of Bacillus pasteuri bacteria solution is 1,the cementing solution(urea,calcium chloride mixed solu-tion)is 0.5 mol/L,and the nutrient solution is 2 g/L.

关键词

煤矿降尘/微生物抑尘剂/巴氏芽孢杆菌/MICP/粉尘防治

Key words

coal mine dust reduction/microbial dust suppressant/Bacillus pasteuri/MICP/dust prevention and control

分类

矿业与冶金

引用本文复制引用

高广义..基于MICP的固化粉尘微生物抑尘剂试验研究[J].煤矿安全,2024,55(3):91-98,8.

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