Medium optimization and dust suppression performance analysis of microbial-based dust suppressant compound by response surface curve method

被引:0
|
作者
Xiangming Hu
Zhiyuan Yang
Yanyun Zhao
Yue Dong
Chengcheng Wang
Linlin Zhang
Yiyun Yu
Kai Wu
Liyan Ren
机构
[1] Shandong University of Science and Technology,College of Safety and Environmental Engineering
[2] Shandong University of Science and Technology,State Key Laboratory of Mine Lab Disaster Prevention and Control Co
关键词
Microbially induced carbonate precipitation; Urease-producing microbial community (UPMC); Microbial dust suppressant; Response surface curve; Medium optimization;
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中图分类号
学科分类号
摘要
At present, microbial dust suppressants based on microbial communities lack necessary systematic analysis of factors affecting dust suppression performance. Therefore, in this study, the response surface curve method was used to optimize the culture conditions for enrichment of urease-producing microorganisms from activated sludge. The results indicated that when urea = 9.67 g L−1, NH4Cl = 5.21 g L−1, and pH = 9.57, the maximum urease activity of urease-producing microbial community (UPMC) was 8.22 mM min−1. The UPMC under optimized culture conditions reached a mineralization rate of 98.8% on the 1st day of mineralization. Ureolysis is one of the biological mechanisms that trigger microbial mineralization with the consequent effect of dust suppression. The analysis of microbial community structure indicated that the urease-producing bacteria Sporosarcina sp. had the highest abundance at the genus level in the microbial-based dust suppressant compound. Jeotgalicoccus sp. plays an important role in improving and maintaining the stability of urease. In addition, the optimal UPMC had low pathogenicity, which is extremely attractive for the safe application of microbial dust suppressants.
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页码:24525 / 24535
页数:10
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