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最新“土壤呼吸”相關研究 | 文獻速遞

來源:北京力高泰科技有限公司 發(fā)布日期:2017-02-28 14:41:47 瀏覽次數(shù):1801


土壤呼吸是當前碳循環(huán)研究領域中的熱點,它受多種復雜環(huán)境因素和生物過程的影響。并且,在全球氣候變化背景下,不同生態(tài)系統(tǒng)土壤呼吸的響應存在較大的不確定性。因此,長期、連續(xù)定位觀測土壤呼吸,對研究陸地生態(tài)系統(tǒng)碳循環(huán)過程具有重要意義。

土壤呼吸


下面,我們?yōu)榇蠹艺砹艘恍╆P于土壤呼吸的最新研究論文。希望能對您的相關研究有所啟發(fā)。

Effects of warming temperatures and increased CO2 on the amount of carbon stored in soil:
Black, Christopher K., Sarah C. Davis, Tara W. Hudiburg, Carl J. Bernacchi, and Evan H. DeLucia. 2017. Elevated CO2 and temperature increase soil C losses from a soybean–maize ecosystem. Global Change Biology 23: 435-445.
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Identity and richness of ectomycorrhizal (ECM) fungi at the intra- and interspecific levels affect ecosystem multifunctionality:
Hazard, Christina, Laura Kruitbos, Hazel Davidson, Andy FS Taylor, and David Johnson. 2017. Contrasting effects of intra-and interspecific identity and richness of ectomycorrhizal fungi on host plants, nutrient retention and multifunctionality. New Phytologist 213:852-863.
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Effects of nitrogen and snowpack on soil respiration rate in Korean pine forests:
Liu B., Mou C., Yan G., Xu L., Jiang S., Xing Y., Han S., Yu J., Wang. 2016. Annual soil CO2 efflux in a cold temperate forest in northeastern China: effects of winter snowpack and artificial nitrogen deposition. Scientific Report.
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Characterizing soil CO2 efflux dynamics of coffee plants cultivated under agroforestry and full-sun production systems:
Lucas de Carvalho Gomes, Irene Maria Cardoso, Eduardo de Sá Mendonça, Raphael Bragança Alves Fernandes, Vanessa Schiavon Lopes, Teógenes Sena Oliveira. 2016. Trees modify the dynamics of soil CO2 efflux in coffee agroforestry systems. Agricultural and Forest Meteorology, 224:30-39.
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Comparison of soil CO2 efflux measured by two soil CO2 chambers and estimated by 16 gas transport models, using the gradient method, over one year:
Sánchez‐Cañete, E.P., Scott, R.L., Haren, J. and Barron‐Gafford, G.A. 2016. Improving the accuracy of the gradient method for determining soil carbon dioxide efflux. Journal of Geophysical Research: Biogeosciences. DOI:10.1002/2016JG003530.
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Interaction between impervious surfaces and urban greenspaces, especially their edge effects, and how they influence ecosystem properties:
Wu X., Hu D., Ma S., Zhang X., Guo Z., Gaston K. J. 2016. Elevated soil CO2efflux at the boundaries between impervious surface and urban greenspaces.Atmospheric Environment. 141:375-378. 
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