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土壤铁氧化物对有机质产甲烷过程的影响及其机制

唐子阳1,2,汤佳2,庄莉2,马金莲2,周顺桂2,樊霆1*
  

  1. 1安徽农业大学, 合肥 230036; 2广东省农业环境综合治理重点实验室, 广东省生态环境与土壤研究所, 广州 510650)
  • 出版日期:2016-06-10 发布日期:2016-06-10

Influence of iron oxides on microbial methanogenesis and related mechanisms.

TANG Zi-yang1,2, TANG Jia2, ZHUANG Li2, MA Jin-lian2, ZHOU Shun-gui2, FAN Ting1*#br#   

  1. (1Anhui Agricultural University, Hefei 230036, China; 2 Guangdong Key Laboratory of Agricultural Environment Integrated Control, Guangdong Institute of EcoEnvironmental and Soil Sciences, Guangzhou 510650, China).
  • Online:2016-06-10 Published:2016-06-10

摘要: 甲烷(CH4)是重要的温室气体和清洁能源。土壤铁氧化物作为重要的环境因子对有机质产甲烷过程具有重要影响。强氧化性且易微生物还原的铁氧化物对产甲烷具有抑制作用,其抑制机理为:①铁还原菌与产甲烷菌竞争产甲烷底物(乙酸或H2)抑制产甲烷过程;②产甲烷菌利用Fe(III)氧化底物抑制甲烷产生;③铁氧化物提高体系氧化还原电势抑制产甲烷过程。然而,具有导电性且晶型较高的铁氧化物可作为电子导体促进互营菌与产甲烷菌之间的直接电子传递,加速产甲烷过程。本文系统阐述了不同类型铁氧化物对有机质互营产甲烷过程的抑制或促进效应及作用机制,并在此基础上探讨了铁氧化物影响产甲烷过程的研究趋势,以期推动铁氧化物在抑制温室气体和促进清洁能源生产方面的实际应用。

关键词: 高山森林, 溪流, 水溶性氮, 水溶性磷

Abstract: Methane is one of the most important greenhouse gases and clean energy sources. With the highest abundance of active metals on Earth, iron oxides exert significant influences on the conversion of organic matter to methane under anaerobic conditions. Low-crystallinity, easily reducible Fe(III) oxides could inhibit methanogenesis in three ways: (1) Fe(III)reducing bacteria competed with methanogens for common electron donors such as acetate and H2; (2) methanogens reduced Fe(III) oxides with H2 oxidation, diverting the electron flow from methanogenesis to Fe(III) reduction; (3) Fe(III) oxides might increase the redox potential of their surrounding environments to inhibit methanogenesis. Recently, the conductive iron oxides have been demonstrated to facilitate methanogenesis from organic matter, in which iron oxides function as electron conduits and create direct interspecies electron transfer between syntrophic bacteria and methanogens. This review summarizes the mechanisms of inhibition or promotion effect of iron oxides on syntrophic methanogenesis. Furthermore, we highlight the research trends of the influence of iron oxides on methanogenesis, which would be helpful for the practical applications in greenhouse gases mitigation and bioenergy production.

Key words: alpine forest, headwater stream, soluble nitrogen, soluble phosphorus.