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首页> 外文期刊>Journal of Environmental Management >Early thawing after snow removal and no straw mulching accelerates organic carbon cycling in a paddy soil in Northeast China
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Early thawing after snow removal and no straw mulching accelerates organic carbon cycling in a paddy soil in Northeast China

机译:除雪后的早期解冻和无秸秆覆盖促进了东北稻田土壤中有机碳的循环

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摘要

Variations in soil organic carbon (SOC) have implications for atmospheric CO2concentrations and the greenhouse effect. However, the effects of snow cover and straw mulching on the variations in SOC fractions across winter remain largely unknown. In this study, soil samples were collected during different stages of winter from anin situexperiment comprising three treatments: 1) snow removal with no straw mulching (Sn-SM-); 2) snow cover with no straw mulching (SC), and; 3) snow cover with straw mulching (SC + SM+). Results showed that labile organic carbon, semi-labile organic carbon, recalcitrant organic carbon (ROC), the light fraction of organic carbon (LFOC), and easily oxidized organic carbon (EOC) contents did not vary significantly (P > .05) during the unfrozen to hard frost stages. Compared to the unfrozen stage, microbial biomass carbon (MBC) contents decreased by 519.03 mg kg−1, 325.21 mg kg−1, and 244.09 mg kg−1and dissolved organic carbon (DOC) contents increased by 473.36 mg kg−1, 348.10 mg kg−1, and 258.89 mg kg−1 at the hard frost stage in Sn-SM-, SC, and SC + SM + treatments, respectively. Throughout all thawing stages, > 61% and 59% of SOC and ROC accumulation, respectively in the three treatments were observed in thawing stage II, indicating that higher temperatures and microbial activities in thawing stage II accelerated the inputs of SOC and ROC. ROC accumulation accounted for >65% of the SOC accumulation and the proportions of ROC in SOC increased in the three treatments during the thawing stages. SC + SM + treatment maintained lower EOC contents during thawing stages than other treatments. The observation of lowest SOC and LFOC accumulation and contents in the SC + SM + treatment during thawing stages showed that SC + SM + experienced the least inputs of SOC in the soil.
机译:土壤有机碳(SOC)的变化对大气中的二氧化碳浓度和温室效应具有影响。但是,在整个冬季,积雪和秸秆覆盖对SOC分数变化的影响仍然未知。在这项研究中,在冬季不同阶段从anin原位实验中收集了土壤样品,包括三种处理方法:1)不用秸秆覆盖的除雪(Sn-SM-); 2)没有覆盖秸秆的积雪(SC),并且; 3)覆盖秸秆的积雪(SC + SM +)。结果显示,不稳定有机碳,半不稳定有机碳,顽固有机碳(ROC),轻质有机碳(LFOC)和易氧化有机碳(EOC)含量在期间没有显着变化(P> .05)未冻结至硬霜期。与未冻结阶段相比,微生物生物量碳(MBC)含量降低了519.03 mg·kg-1、325.21 mg·kg-1和244.09 mg·kg-1,溶解性有机碳(DOC)含量增加了473.36 mg·kg-1、348.10 mg分别在Sn-SM-,SC和SC + SM +处理中在硬霜期分别为kg-1和258.89 mg·kg-1。在所有融化阶段中,在融化阶段II的三种处理中,分别观察到分别超过61%和59%的SOC和ROC积累,这表明融化阶段II中较高的温度和微生物活性加速了SOC和ROC的输入。在解冻阶段,三种处理中,ROC积累占SOC积累的> 65%,并且ROC在SOC中的比例增加。与其他处理相比,SC + SM +处理在融化阶段保持较低的EOC含量。在融化期间,SC + SM +处理中最低的SOC和LFOC积累及其含量的观察表明,SC + SM +在土壤中SOC的输入最少。

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