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土壤微生物对秸秆碳转化及碳积累特征的Meta分析
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作者 韩佳烨 张久明 +4 位作者 袁佳慧 朱莹雪 匡恩俊 迟凤琴 张少良 《黑龙江农业科学》 2024年第11期19-25,共7页
土壤有机碳是土壤的主要组成成分,其微小变化能够对陆地碳库和全球气候变化产生重大影响。利用Meta整合分析法分析微生物介导的秸秆碳转化和稳定机制,并阐明各类因素对土壤有机碳的影响。Meta分析结果显示,秸秆还田后土壤有机碳(SOC)、... 土壤有机碳是土壤的主要组成成分,其微小变化能够对陆地碳库和全球气候变化产生重大影响。利用Meta整合分析法分析微生物介导的秸秆碳转化和稳定机制,并阐明各类因素对土壤有机碳的影响。Meta分析结果显示,秸秆还田后土壤有机碳(SOC)、可溶性有机碳(DOC)和微生物量碳(MBC)含量分别增加了23.84%、10.94%和20.13%。土壤微生物能够显著影响秸秆还田下有机碳含量,真菌残体碳贡献率和细菌残体碳贡献率分别达到33.12%和14.80%。当还田秸秆类型为玉米秸秆,土壤类型为碱性土壤,气温高于25℃时,土壤有机碳累积效果最佳。土壤中的化学生物保护机制也可增加土壤有机碳含量,从而利于有机碳的固存,使土壤产生激发效应,刺激微生物生长代谢,从而形成微生物碳泵,令有机碳在土壤中处于动态平衡。对于农业生产来说,最重要的土壤功能是维持作物生产力、养分转化以及微生物丰度和活性的维持,应优先考虑这些功能,以维持土壤有机碳含量。 展开更多
关键词 土壤微生物 秸秆还田 土壤有机 秸秆碳转化
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还田秸秆碳在土壤中的转化分配及对土壤有机碳库影响的研究进展 被引量:52
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作者 杨艳华 苏瑶 +3 位作者 何振超 喻曼 陈喜靖 沈阿林 《应用生态学报》 CAS CSCD 北大核心 2019年第2期668-676,共9页
农田土壤有机碳库是全球碳循环的重要组成部分.随着秸秆还田技术的广泛应用,作物秸秆成为土壤外源碳的主要来源.秸秆碳在土壤中的转化与分配直接影响土壤有机碳组成与含量,进而改变土壤养分循环.基于近年来的相关研究,本文探讨了还田秸... 农田土壤有机碳库是全球碳循环的重要组成部分.随着秸秆还田技术的广泛应用,作物秸秆成为土壤外源碳的主要来源.秸秆碳在土壤中的转化与分配直接影响土壤有机碳组成与含量,进而改变土壤养分循环.基于近年来的相关研究,本文探讨了还田秸秆碳转化与分配过程的影响因子,详细介绍了参与秸秆碳同化过程的土壤微生物组成,归纳与阐述了秸秆碳对土壤有机碳组成、含量及其周转的影响.同时,就非生物因子对秸秆碳的生物转化效应的影响、秸秆碳转化过程中的生物和非生物因子的互作、秸秆碳氮和土壤碳氮循环的耦合作用、秸秆碳向土壤活性有机碳库或稳定性有机碳库转化的有效调控技术等主要研究方向进行了展望,以期为准确揭示秸秆还田条件下各类土壤有机碳的变化特征,进而为实现秸秆还田的高效培肥与固碳效应提供理论依据和技术支撑. 展开更多
关键词 秸秆还田 土壤有机 秸秆碳转化 秸秆分配 秸秆同化微生物
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Role of Carbon Substrates Added in the Transformation of Surplus Nitrate to Organic Nitrogen in a Calcareous Soil 被引量:8
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作者 QIU Shao-Jun JU Xiao-Tang +6 位作者 J.INGWERSEN GUO Zi-De C.F.STANGE R.BISHARAT T.STRECK P.CHRISTIE ZHANG Fu-Suo 《Pedosphere》 SCIE CAS CSCD 2013年第2期205-212,共8页
Excessive amounts of nitrate have accumulated in many soils on the North China Plain due to the large amounts of chemical N fertilizers or manures used in combination with low carbon inputs. We investigated the potent... Excessive amounts of nitrate have accumulated in many soils on the North China Plain due to the large amounts of chemical N fertilizers or manures used in combination with low carbon inputs. We investigated the potential of different carbon substrates added to transform soil nitrate into soil organic N (SON). A 56-d laboratory incubation experiment using the 15N tracer (K15NO3) technique was carried out to elucidate the proportion of SON derived from accumulated soil nitrate following amendment with glucose or maize straw at controlled soil temperature and moisture. The dynamics and isotopic abundance of mineral N (NO3 and NH4+) and SON and greenhouse gas (N20 and CO2) emissions during the incubation were investigated. Although carbon amendments markedly stimulated transformation of nitrate to newly formed SON, this was only a substitution effect of the newly formed SON with native SON because SON at the end of the incubation period was not significantly different (P 〉 0.05) from that in control soil without added C. At the end of the incubation period, amendment with glucose, a readily available C source, increased nitrate immobilization by 2.65 times and total N20-N emission by 33.7 times, as compared with maize straw amendment. Moreover, the differences in SON and total N20-N emission between the treatments with glucose and maize straw were significant (P 〈 0.05). However, the total N20-N emission in the straw treatment was not significantly (P ~ 0.05) greater than that in the control. Straw amendment may be a potential option in agricultural practice for transformation of nitrate N to SON and minimization of N20 emitted as well as restriction of NO3-N leaching. 展开更多
关键词 available C source carbon amendments greenhouse gases N immobilization 15N tracer
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