棕榈油厂沼气流生物滤池中的硫化氢氧化微生物群

Siriorn Boonyawanich, P. Prommeenate, S. Oaew, N. Pisutpaisal, S. Haosagul
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引用次数: 0

摘要

硫化氢(H2S)对发电机具有高度腐蚀性,是沼气利用的主要问题。工业规模的生物过滤系统依赖于硫氧化细菌(SOB)通过硫氧化酶(soxABXYZ)和硫化黄细胞色素脱氢酶(fccAB)的活性将硫化氢浓度降至 100 ppm 以下,然后再用于工业机械。本研究的主要目的是调查全面去除 H2S 的 SOB 群落及其与 H2S 消除效率相关的基因表达(fccAB 和 soxABXYZ)。本研究从棕榈油厂(PPG)全规模生物滤池的两个取样点获得了 SOB 群落,包括起始污泥(PPG1)和循环污泥(PPG2)。通过基于 16S rRNA 基因的新一代测序分析(NGS)检测了 SOB 菌株的丰度。使用比较基因组杂交(CGH)芯片评估了两个取样点之间参与硫氧化的基因(即 soxABXYZ 和 fccAB)表达的变化。结果表明,在生物滤池中能发挥重要作用的高丰度 SOB 菌属在生物滤池中迅速增加,主要包括 Sulfurovum、Paracoccus、Acidihalobacter、Acidithiobacillus、Thioalkalispira、Thiofaba、Caldisericum 和 Bacillus。有趣的是,在泛养副球菌 J40 和烯化副球菌 DSM 11593 中,PPG2 的 soxAXYZ 基因簇的表达量分别增加了 1.1188 倍和 1.0518 倍,而在繁荣酸杆菌 F5 中,fccAB 基因的表达量与 PPG1 相比增加了 1.3704 倍。PPG2 相对丰度和基因表达量的增加与 95% 的 H2S 去除效率相关。因此,在工业规模的沼气应用中,稳定 SOB 微生物组对去除 H2S 至关重要。
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Hydrogen Sulfide Oxidizing Microbiome in Biogas-Stream Fed Biofilter in Palm Oil Factory
Hydrogen sulfide (H2S) is highly corrosive to electric generators, which is the main problem of biogas utilization. The industrial scale of the biofilter system relies on the performance of sulfide-oxidizing bacteria (SOB) via the activity of sulfur oxidation (soxABXYZ) and flavocytochrome sulfide dehydrogenase (fccAB) enzymes to reduce to a concentration below 100 ppm before using in industrial machinery. The main purpose of this research is to investigate the SOB community in full-scale H2S removal and their gene expression (fccAB and soxABXYZ) associated with H2S elimination efficiency. In this study, SOB communities were obtained from 2 sampling sites of the full-scale biofilter of palm oil factory (PPG), comprising starting sludge (PPG1) and recirculating sludge (PPG2). The abundance of SOB strains was examined by next-generation sequencing analysis (NGS) based on the 16S rRNA gene. The changes in the expression of genes involved in sulfur oxidation, namely soxABXYZ, and fccAB, between the 2 sampling sites were evaluated by using a comparative genomic hybridization (CGH) microarray. The results indicate that the high abundance of SOB genera that could play a vital role in biofilters belonged mainly to Sulfurovum, Paracoccus, Acidihalobacter, Acidithiobacillus, Thioalkalispira, Thiofaba, Caldisericum, Bacillus, were rapidly increased in the biofilter tank. Interestingly, expressions of soxAXYZ gene cluster at PPG2 were increased in Paracoccus pantotrophus J40 and Paracoccus alkenifer DSM 11593 for 1.1188 and 1.0518-fold, respectively, while in Acidihalobacter prosperus F5, the expression of fccAB genes was up to 1.3704 fold in comparison with PPG1. Increasing both relative abundance and gene expressions at PPG2 were correlated with 95% H2S removal efficiency. Hence, stabilization of the SOB microbiome is vital to H2S removal in industrial-scale biogas applications.
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来源期刊
Nature Environment and Pollution Technology
Nature Environment and Pollution Technology Environmental Science-Environmental Science (all)
CiteScore
1.20
自引率
0.00%
发文量
159
审稿时长
36 weeks
期刊介绍: The journal was established initially by the name of Journal of Environment and Pollution in 1994, whose name was later changed to Nature Environment and Pollution Technology in the year 2002. It has now become an open access online journal from the year 2017 with ISSN: 2395-3454 (Online). The journal was established especially to promote the cause for environment and to cater the need for rapid dissemination of the vast scientific and technological data generated in this field. It is a part of many reputed international indexing and abstracting agencies. The Journal has evoked a highly encouraging response among the researchers, scientists and technocrats. It has a reputed International Editorial Board and publishes peer reviewed papers. The Journal has also been approved by UGC (India). The journal publishes both original research and review papers. The ideology and scope of the Journal includes the following. -Monitoring, control and management of air, water, soil and noise pollution -Solid waste management -Industrial hygiene and occupational health -Biomedical aspects of pollution -Toxicological studies -Radioactive pollution and radiation effects -Wastewater treatment and recycling etc. -Environmental modelling -Biodiversity and conservation -Dynamics and behaviour of chemicals in environment -Natural resources, wildlife, forests and wetlands etc. -Environmental laws and legal aspects -Environmental economics -Any other topic related to environment
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