The intrinsic methane mitigation potential and associated microbes add product value to compost

被引:6
作者
Bergh, Stijn G. van den [1 ,2 ]
Chardon, Iris [1 ]
Meima-Franke, Marion [1 ]
Costa, Ohana Y. A. [1 ]
Korthals, Gerard W. [3 ]
de Boer, Wietse [1 ,2 ]
Bodelier, Paul L. E. [1 ]
机构
[1] Netherlands Inst Ecol NIOO KNAW, Dept Microbial Ecol, POB 50, NL-6700 AB Wageningen, Netherlands
[2] Wageningen Univ & Res, Soil Biol Grp, POB 47, NL-6700AA Wageningen, Netherlands
[3] Wageningen Plant Res Biointeract & Plant Hlth, POB 16, NL-6700 AA Wageningen, Netherlands
关键词
Methane; Green compost; VGF-compost; Intrinsic methane mitigation potential; Methanotrophic community; Type 1b methanotrophs; GREENHOUSE-GAS EMISSIONS; 16S RIBOSOMAL-RNA; METHANOTROPHIC BACTERIA; METHANOGENIC ARCHAEA; AGRICULTURAL SOILS; OXIDATION; DIVERSITY; MONOOXYGENASE; KINETICS; METHANOSARCINA;
D O I
10.1016/j.wasman.2023.07.027
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Conventional agricultural activity reduces the uptake of the potent greenhouse gas methane by agricultural soils. However, the recently observed improved methane uptake capacity of agricultural soils after compost application is promising but needs mechanistic understanding. In this study, the methane uptake potential and microbiomes involved in methane cycling were assessed in green compost and household-compost with and without pre-digestion. In bottle incubations of different composts with both high and near-atmospheric methane concentrations (-10.000 & -10 ppmv, respectively), green compost showed the highest potential methane uptake rates (up to 305.19 +/- 94.43 nmol h-1 g dw compost-1 and 25.19 +/- 6.75 pmol h-1 g dw compost-1, respectively). 16S, pmoA and mcrA amplicon sequencing revealed that its methanotrophic and methanogenic communities were dominated by type Ib methanotrophs, and more specifically by Methylocaldum szegediense and other Methylocaldum species, and Methanosarcina species, respectively. Ordination analyses showed that the abundance of type Ib methanotrophic bacteria was the main steering factor of the intrinsic methane uptake rates of composts, whilst the ammonium content was the main limiting factor, being most apparent in household composts. These results emphasize the potential of compost to contribute to methane mitigation, providing added value to compost as a product for industrial, commercial, governmental and public interests relevant to waste management. Compost could serve as a vector for the introduction of active methanotrophic bacteria in agricultural soils, potentially improving the methane uptake potential of agricultural soils and contributing to global methane mitigation, which should be the focus of future research.
引用
收藏
页码:17 / 32
页数:16
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