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生态学杂志 ›› 2026, Vol. 45 ›› Issue (4): 1390-1397.doi: 10.13292/j.1000-4890.202604.034

• 技术与方法 • 上一篇    下一篇

一株嗜热埃氏假热袍菌(Pseudothermotoga elfii)分离鉴定及产硫化氢活性抑制

张伟森1*,来建宾1,郝叶红1,李伟1,蒋瀚樟1,尹洪超1,张思根2,3,汪航2,3,赵金龙4,史荣久2   

  1. 1中海油能源发展股份有限公司工程技术公司, 天津 300452; 2中国科学院沈阳应用生态研究所, 沈阳 110016; 3中国科学院大学, 北京 100049; 4中国科学院金属研究所, 沈阳 110016)

  • 出版日期:2026-04-10 发布日期:2026-04-14

Isolation and identification of Pseudothermotoga elfii strain A17 and inhibition of its hydrogen sulfide-producing activity. 

ZHANG Weisen1*, LAI Jianbin1, HAO Yehong1, LI Wei1, JIANG Hanzhang1, YIN Hongchao1, ZHANG Sigen2,3, WANG Hang2,3, ZHAO Jinlong4, SHI Rongjiu2   

  1. (1Engineering Technology Company, CNOOC, Tianjin 300452, China; 2Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China; 3University of Chinese Academy of Sciences, Beijing 100049, China; 4Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China).

  • Online:2026-04-10 Published:2026-04-14

摘要: 微生物导致的油田次生硫化氢(H2S)问题也称微生物酸败,给油田开发带来安全隐患及腐蚀等诸多不利影响,但致酸败微生物生理特性及危害防控研究仍待加强。采用滚管分离技术从某高温酸败油井采出水中分离筛选硫化氢产生菌,考察了菌株的生理生化特点,初步评价了几种杀菌剂对其产H2S活性的抑制效果。结果表明:水样品中高活性硫化氢产生菌A17菌株与嗜热埃氏假热袍菌(Pseudothermotoga elfii)模式菌株DSM9442的16S rRNA基因序列相似性为99%;A17细胞呈短杆状,长约2.2 μm,具有运动性,其最适生长温度、pH和盐度分别为65 ℃、7.0和1%;菌株A17可利用乳酸钠、葡萄糖、乙酸钠等多种碳源,只能以硫代硫酸盐为唯一电子受体产生H2S,不能利用硫酸盐、亚硫酸盐、硝酸盐和亚硝酸盐;单独使用终浓度为200 mg·L-1的戊二醛、200 mg·L-1的四羟甲基硫酸磷、40 mg·L-1的溴硝醇或20 mg·L-1的亚硝酸盐均可完全抑制A17产H2S活性。菌株A17为嗜热硫化氢产生菌,有别于油田生境中常被报道的硫酸盐还原菌。以A17为代表的“非硫酸盐还原菌”对油田次生H2S的潜在贡献值得深入研究。本研究结果拓展了高温油田致酸败微生物的理论认识,A17菌株可作为该区域油藏酸败防控技术研发的重要材料。


关键词: 海上油田, 硫化氢产生菌, 杀菌剂, 酸败, 硫酸盐还原菌

Abstract: The issue of microbial-induced hydrogen sulfide (H2S) in oilfields, also known as microbial souring, exerts deleterious effects on oilfield development, including safety concerns and corrosion. Nevertheless, research endeavors are critically needed to understand the physiological characteristics and control strategies of the microorganisms responsible for H2S production. We employed the roll tube technique to isolate and screen the hydrogen sulfide-producing bacteria from the production water of an offshore souring high-temperature oil well. We examined the physiological and biochemical characteristics of the high-efficient strain and the inhibitory effects of several biocides on the activity of H2S production. The results showed that the high-efficient hydrogen sulfide-producing bacterial strain A17 shared 99% similarity of 16S rRNA gene sequence with the type strain DSM9442 of Pseudothermotoga elfii. The cells of A17 were short rods, with a length of 2.2 μm, and motile. The optimal growth condition was at 65 ℃, pH 7.0, and a salinity of 1%, respectively. Strain A17 could utilize a diverse range of carbon sources, including sodium lactate, glucose, and sodium acetate. Strain A17 utilized thiosulfate as electron acceptor, instead of sulfate, sulfite, nitrate, and or nitrite. The amendment of glutaraldehyde (at a final concentration of 200 mg·L-1), tetrakis (hydroxymethyl) phosphonium sulfate (200 mg·L-1), bronopol (40 mg·L-1) or nitrite (20 mg·L-1) alone resulted in the complete inhibition of H2S-producing activity of A17 within the 30-day incubation. Strain A17 is a thermophilic H2S-producing bacterium that differs from the sulfate-reducing bacteria frequently observed in oilfield habitats. The potential contribution of “non-sulfate-reducing bacteria”, as represented by A17, to the secondary H2S in oilfields merits further investigation. Our findings contribute to the understanding of souring-causing microorganisms in high-temperature oilfields. The A17 strain could be used for the research and development of mitigation strategies in the study region.


Key words: offshore oilfield, sulfide-producing bacteria, biocide, souring, sulfate-reducing bacteria