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Impact of Methanogens Originated from Cattle Manure on Increasing CH4 Emission in Paddy Soil during Rice Cultivation

机译:牛粪中产甲烷菌对水稻种植过程中稻田CH4排放增加的影响

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Animal manures are widely used as an organic matter source to improve soil quality.However,livestock manure applications supply easily available carbon (C) and facilitate methane (CH4) emission from rice paddy soil.Due to the differences in the digestion processes,swine manure and rumen-based cattle manure are expected to have different effects on CH4 emission characteristics during rice cultivation,but the mechanism of the relative differences have been little investigated.Fresh cattle and swine manures were applied with the rates of 0 (Control),20 and 40 Mg ha-1 with recommended rates of chemical fertilizers (NPK) before rice transplanting,and the CH4 emission characteristics and the changes in soil,and rice yield properties were investigated under greenhouse conditions.Both manure types significantly increased CH4 emission rates,but cattle manure increased the total CH4 flux by approximately 150% more than swine manure at the same 40 Mg ha-1 application rate This may have been affected by higher labile C concentrations and rumen-originated methanogens in cattle manure.The rice growth and productivity did not significantly differ between two manures at the same rates of application.However,the cattle manure application more significantly increased dissolved organic carbon (DOC) concentrations and the total methanogenic activities measured as mcrA gene copy number in the soil.Furthermore,new methanogenic groups which originated as ruminant methanogens was found in the plots which received cattle manure.In conclusion,cattle manure application can significantly increase CH4 emission in paddy soil during rice cultivation,and therefore its pretreatment to suppress methanogenic activity should be considered.
机译:畜禽粪便被广泛用作改善土壤质量的有机物。然而,畜禽粪便可以提供容易获得的碳(C)并促进稻田土壤中甲烷(CH4)的排放。由于消化过程的差异,猪粪便稻田中,基于瘤胃的牛粪和基于瘤胃的牛粪对CH4排放特性的影响不同,但相对差异的机理尚未得到研究。新鲜牛和猪粪的施用率分别为0(对照),20和在温室条件下调查了40 Mg ha-1和推荐的化肥施用量(NPK),并研究了温室条件下CH4的排放特征以及土壤变化和水稻的产量特性。两种肥料均显着提高了CH4的排放率,但牛在相同的40 Mg ha-1施用率下,粪肥使总的CH4通量比猪粪肥大约增加150%。牛粪中较高的不稳定C浓度和瘤胃起源的产甲烷菌引起。在相同施用量下,两种肥料的水稻生长和生产力无明显差异。然而,施用牛粪显着增加了可溶性有机碳(DOC)的浓度此外,在接受牛粪的地块中发现了新的产甲烷的起源于反刍动物产甲烷菌的产甲烷基团。总之,牛粪的施用可以显着增加稻田土壤CH4的排放。水稻栽培,因此应考虑对其进行预处理以抑制产甲烷活性。

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