Thermal stability of soil organic matter was affected by 23-yr maize and soybean continuous cultivation in northeast of China

Author:

Miao Shu-jie,Qiao Yun-fa,You Meng-yang,Zhang Fu-tao

Publisher

Springer Science and Business Media LLC

Reference30 articles.

1. Chirinda N, Olesen JE, Porter JR, Schjønning P. Soil properties, crop production and greenhouse gas emissions from organic and inorganic fertilizer-based arable cropping systems. Agric Ecosyst Environ. 2010;139:584–94.

2. Ladha JK, Pathak H, Krupnik TJ, Six J, van Kessel C. Efficiency of fertilizer nitrogen in cereal production: retrospects and prospects. In: Donald LS, editor. Advances in agronomy. New York: Academic Press; 2005.

3. Robertson GP, Paul EA, Harwood RR. Greenhouse gases in intensive agriculture: contributions of individual gases to the radiative forcing of the atmosphere. Science. 2000;289:1922–5.

4. Schuur EAG, Bockheim J, Canadell JG, Euskirchen E, Field CB, et al. Vulnerability of permafrost carbon to climate change: implications for the global carbon cycle. Biosci Biotechnol Biochem. 2008;58:701–14.

5. Dorodnikov M, Fangmeier A, Kuzyakov Y. Thermal stability of soil organic matter pools and their δ13C values after C3–C4 vegetation change. Soil Biol Biochem. 2007;39:1173–80.

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