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sp.菌株L1:用于硫化氢降解的组合式生物滴滤器条件及性能优化研究

sp. Strain L1: A Study on the Optimization of the Conditions and Performance of a Combined Biological Trickling Filter for Hydrogen Sulfide Degradation.

作者信息

Wang Xuechun, Li Xintian, Hao Peng, Duan Xinran, Gao Yunhang, Liang Xiaojun

机构信息

College of Veterinary Medicine, Jilin Agricultural University, Changchun 130118, China.

Institute of Animal Science, Ningxia Academy of Agriculture and Forestry, Yinchuan 750002, China.

出版信息

Microorganisms. 2024 Jul 24;12(8):1513. doi: 10.3390/microorganisms12081513.

Abstract

Sulfide is a toxic and hazardous substance in the agricultural environment, which can cause damage to humans and livestock when exposed to large amounts of air. In this study, we performed one-factor optimization of the culture conditions and culture fractions of the sp. strain L1 and combined it with a biological trickling filter cell for the degradation of hydrogen sulfide for 24 consecutive days. The degradation effect of strain L1 and the biological trickling filter (BTF) on hydrogen sulfide was investigated, and the changes in intermediate products in the degradation process were briefly analyzed. The results showed that strain L1 had the highest conversion efficiency when incubated with 3 g/L sucrose as the carbon source and 1 g/L NHCl as the nitrogen source at a temperature of 35 °C, an initial pH of 5, and a NaCl concentration of 1%. The concentration of thiosulfate increased and then decreased during the degradation process, and the concentration of sulfate increased continuously. When strain L1 was applied to the biological trickling filter, it could degrade 359.53 mg/m of HS. This study provides a deeper understanding of sulfide degradation in biological trickling filters and helps promote the development of desulfurization technology and the treatment of malodorous gasses produced by the accumulation of large quantities of livestock manure.

摘要

硫化物是农业环境中的一种有毒有害物质,大量暴露于空气中时会对人畜造成损害。在本研究中,我们对菌株L1的培养条件和培养组分进行了单因素优化,并将其与生物滴滤池相结合,连续24天降解硫化氢。研究了菌株L1和生物滴滤池(BTF)对硫化氢的降解效果,并简要分析了降解过程中中间产物的变化。结果表明,当以3 g/L蔗糖作为碳源、1 g/L氯化铵作为氮源,在温度为35℃、初始pH为5、NaCl浓度为1%的条件下培养时,菌株L1具有最高的转化效率。降解过程中硫代硫酸盐浓度先升高后降低,硫酸盐浓度持续升高。当将菌株L1应用于生物滴滤池时,它可以降解359.53 mg/m的H₂S。本研究为深入了解生物滴滤池中硫化物的降解提供了依据,并有助于推动脱硫技术的发展以及处理大量畜禽粪便堆积产生的恶臭气体。

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