Effects of Irrigation and Nitrogen Fertilizer on Soil Carbon Leaching in Cotton Fields in Arid Areas

文献类型: 外文期刊

第一作者: Zhang, Baoyue

作者: Zhang, Baoyue;Zhi, Jinhu;Bai, Xinlu;Yang, Lili;Xia, Wenhao;Zhang, Baoyue;Zhi, Jinhu;Bai, Xinlu;Yang, Lili;Xia, Wenhao;Gao, Zhijian

作者机构:

关键词: arid area; water nitrogen input; DIC; DOC

期刊名称:SUSTAINABILITY ( 影响因子:3.9; 五年影响因子:4.0 )

ISSN:

年卷期: 2023 年 15 卷 14 期

页码:

收录情况: SCI

摘要: In order to formulate a reasonable water input model for cotton fields in southern Xinjiang for scientific and rational fertilization, to reduce soil carbon leaching, and to improve soil carbon sequestration capacity, an undisturbed soil column leaching test was used to simulate the current field management method in the study area. Two methods, drip irrigation and flood irrigation, were set up, and three irrigation and three nitrogen fertilizer levels were used to carry out the undisturbed soil column leaching test. The results showed that the amount and mode of water and nitrogen input affected the distribution and leaching loss of organic carbon and inorganic carbon in the soil. When the nitrogen application rate increased from 270 kghm(-2) to 450 kghm(-2), the leaching loss of soluble organic carbon and soluble inorganic carbon increased significantly. When the water input increased from 6000 m(3)hm(-2) to 9000 m(3)hm(-2), the leaching loss of DOC and DIC increased significantly. The carbon leaching loss under drip irrigation was higher than that under flood irrigation. The leaching rates of DOC and DIC were fastest under the conditions of high water (9000 m(3)hm(-2)) and high fertilizer (450 kghm(-2)). This shows that water and nitrogen input and irrigation methods are important factors affecting soil carbon leaching. In the case of excessive water input, long-term high-frequency irrigation is the main factor affecting carbon leaching.

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