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Accumulation and transport of soil extractable N affected by corn stover mulching quantity in no-tillage system.

HE Chuan-rui1,3, QUAN Zhi2, XIE Hong-tu2, LU Cai-yan1*, CHEN Xin1, SHI Yi1
  

  1. (1Key Laboratory of Pollution Ecological and Environmental Engineering, Chinese Academy of Sciences, Shenyang 110016, China; 2Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China; 3University of Chinese Academy of Sciences, Beijing, 100049, China).
  • Online:2016-04-10 Published:2016-04-10

Abstract: An 8year field experiment was conducted to study the accumulation, vertical transport and leaching  of soil NH4+-N, NO3--N and extractable organic N (EON) affected by corn stover mulching in no-tillage system. The experiment consisted of five treatments, including a ridge tillage as control (RT), no-tillage without corn stover mulching (NT0), no-tillage with 33% corn stover mulching (NT33), no-tillage with 67% corn stover mulching (NT67), and no-tillage with 100% corn stover mulching (NT100). The results showed that soil extractable N mainly existed in form of NO3--N, followed by EON in the no-tillage system with corn stover mulching. Corn stover mulching with different quantities significantly affected the accumulation and vertical transport of soil NO3--N in no-tillage system. The soil NO3--N was leached to the 40-80 cm soil layer in the NT33 and NT67 treatments, and the 40-60 cm soil layer in the NT100 treatment. Compared to RT treatment, NT67 and NT100 treatments significantly decreased the capacity of NO3--N and EON pools in the 0-20 cm soil layer, and increased that of NO3--N pool in the 40-60 cm soil layer. Our results suggest that corn stover mulching increased the vertical transport and leaching loss of soil NO3--N pool from cultivation layer to deep soil in no-tillage system, and had no influence on the soil EON and NH4+-N.

Key words: path analysis, morphometric trait, correlation analysis, regression analysis, Miichthys miiuy