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首页> 外文期刊>International Biodeterioration & Biodegradation >Microbial degradation of formaldehyde in white mineral dispersions preserved with formaldehyde-releasing biocides
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Microbial degradation of formaldehyde in white mineral dispersions preserved with formaldehyde-releasing biocides

机译:释放甲醛的杀菌剂对白色矿物分散液中甲醛的微生物降解作用

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摘要

Two different formaldehyde-degrading microorganisms, Pseudomonas putida and Methylobacterium extorquens, were isolated from calcium carbonate slurry containing the formaldehyde-releasing biocide (ethylenedioxy) dimethanol. Their relative formaldehyde biodegradation and formic acid production kinetics were studied in broth and in calcium carbonate slurry for each microorganism individually, as well as in mixed cultures. Furthermore, the minimal inhibition concentration (MIC) was determined. The results indicated that in slurry, M. extorquens is more tolerant of formaldehyde than P. putida. In slurry, microbial-induced oxidation of formaldehyde caused a temporary accumulation of formic acid, which is presumed to be responsible for pH drop and destabilisation of the calcium carbonate slurry suspension systems. In addition, the residual formaldehyde concentration was observed to drive dominance and recovery of individual formaldehyde-resistant microorganisms in the slurry. Overall, this investigation indicated that biodegradation of formaldehyde in calcium carbonate slurry is brought about by alternating dominance of bacterial genera of mixed formaldehyde-resistant microbial populations.
机译:从含有释放甲醛的杀生物剂(乙二氧基)二甲醇的碳酸钙浆液中分离出两种不同的降解甲醛的微生物,恶臭假单胞菌和甲基芽孢杆菌。在肉汤和碳酸钙浆液中分别针对每种微生物以及在混合培养物中研究了它们的相对甲醛生物降解和甲酸生成动力学。此外,确定最小抑制浓度(MIC)。结果表明,在浆液中,M。extorquens比P. putida对甲醛的耐受性更高。在浆料中,微生物引起的甲醛氧化会引起甲酸的暂时积累,这可能是造成pH下降和碳酸钙浆料悬浮液系统不稳定的原因。此外,观察到残留的甲醛浓度可驱动浆液中各个抗甲醛微生物的优势和恢复。总体而言,这项研究表明,碳酸钙浆料中甲醛的生物降解是由耐混合甲醛的微生物种群的细菌属的交替优势所引起的。

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