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生物源肥料:一种多方面的甲烷减排生物工具。

Biologically derived fertilizer: A multifaceted bio-tool in methane mitigation.

机构信息

Department of Environmental Microbiology, BB Ambedkar (Central) University, Lucknow 226025, Uttar Pradesh, India.

Centre for Solid Waste Bioprocessing, School of Civil Engineering, School of Chemical Engineering, University of Queensland, St. Lucia, Queensland 4072, Australia.

出版信息

Ecotoxicol Environ Saf. 2016 Feb;124:267-276. doi: 10.1016/j.ecoenv.2015.10.018. Epub 2015 Nov 11.

Abstract

Methane emissions are affected by agricultural practices. Agriculture has increased in scale and intensity because of greater food, feed and energy demands. The application of chemical fertilizers in agriculture, particularly in paddy fields, has contributed to increased atmospheric methane emissions. Using organic fertilizers may improve crop yields and the methane sink potential within agricultural systems, which may be further improved when combined with beneficial microbes (i.e. biofertilizers) that improve the activity of methane oxidizing bacteria such as methanotrophs. Biofertilizers may be an effective tool for agriculture that is environmentally beneficial compared to conventional inorganic fertilizers. This review highlights and discusses the interplay between ammonia and methane oxidizing bacteria, the potential interactions of microbial communities with microbially-enriched organic amendments and the possible role of these biofertilizers in augmenting the methane sink potential of soils. It is suggested that biofertilizer applications should not only be investigated in terms of sustainable agriculture productivity and environmental management, but also in terms of their effects on methanogen and methanotroph populations.

摘要

甲烷排放受农业措施的影响。由于对粮食、饲料和能源的需求增加,农业的规模和强度都有所增加。农业中化肥的应用,特别是在稻田中,导致大气中甲烷排放量增加。使用有机肥可能会提高作物产量和农业系统中的甲烷汇潜力,当与有益微生物(即生物肥料)结合使用时,这些潜力可能会进一步提高,因为这些微生物可以提高甲烷氧化菌(如甲烷营养菌)的活性。与传统的无机肥料相比,生物肥料可能是一种对环境有益的农业有效工具。这篇综述强调并讨论了氨氧化菌和甲烷氧化菌之间的相互作用、微生物群落与富微生物有机改良剂的潜在相互作用,以及这些生物肥料在增强土壤甲烷汇潜力方面的可能作用。建议不仅应从可持续农业生产力和环境管理的角度,而且应从其对产甲烷菌和甲烷营养菌种群的影响的角度来研究生物肥料的应用。

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