Effects of organic amendments on soil carbon sequestration in paddy fields of subtropical China

文献类型: 外文期刊

第一作者: Xu, Minggang

作者: Xu, Minggang;Wang, Xiujun;Wang, Xiujun;Huang, Qinhai;Nie, Jun;Li, Zuzhang;Li, Shuanglai;Hwang, Seon Woong;Lee, Kyeong Bo

作者机构:

关键词: Long-term fertilization;Organic amendments;Paddy soil;Soil organic carbon;Soil carbon sequestration

期刊名称:JOURNAL OF SOILS AND SEDIMENTS ( 影响因子:3.308; 五年影响因子:3.586 )

ISSN: 1439-0108

年卷期: 2012 年 12 卷 4 期

页码:

收录情况: SCI

摘要: Although organic amendments have been recommended as one of the practices for crop production and soil carbon sequestration, little has been done to evaluate soil organic carbon (SOC) dynamics following long-term application of organic amendments. The objective of this research were to (1) assess the effect of long-term organic amendments on SOC dynamics in rice-based systems; (2) evaluate the relationship between soil carbon sequestration and carbon input based on various mineral and organic fertilization treatments. A multi-sites analysis was conducted on four long-term experiments with double-rice (three sites) and rice-wheat (one site) cropping systems which started in the 1980s in Southern China. We selected three groups of treatments in common at each site: (1) control (no fertilizer), (2) mineral nitrogen-phosphorus with and without potassium (NPK/NP), and (3) the combined treatments of mineral NP/NPK with pig manure (M), green manure (G, Astragalus sinicus L.), rice straw (S), and/or their combinations. Harvestable crop biomass was annually recorded for all plots. SOC in topsoil was determined in 1-5 yearly intervals after rice harvest. Analysis showed that organic amendments sustained or significantly increased carbon biomass, but had little effects on the coefficient of variance (CV) of the carbon biomass production compared with the mineral NPK/NP treatments. With additional carbon input, organic amendments increased SOC significantly by 7-45% after 25-28 years of fertilization compared with the mineral treatments. These combined treatments sequestered carbon at a rate from 0.20 to 0.48 t ha(-1) year(-1) under the double-rice and 0.70 to 0.88 t ha(-1) year(-1) under rice-wheat cropping system. The estimated annual SOC decomposition rate ranged from 0.15 to 0.82 t ha(-1) at these studied sites. Our analyses revealed strong positive correlations between soil carbon sequestration and carbon input for all sites. We concluded that organic amendments applied as substitution and extra nutrients had significant effect on soil carbon sequestration and served as a carbon sink for the duration of the experiments. Paddy soil high in clay content had the potential to sequester more carbon. Soil carbon sequestration efficiency-declined with carbon input at some sites with loam soil texture, suggesting applying a large amount of organic amendments is not recommended as a sustainable agricultural management practice because of the high risk of non-point environment pollution.

分类号:

  • 相关文献

[1]Effects of Long-Term Organic Amendments on Soil Organic Carbon in a Paddy Field: A Case Study on Red Soil. Huang Qing-hai,Li Da-ming,Liu Kai-lou,Yu Xi-chu,Ye Hui-cai,Hu Hui-wen,Xu Xiao-lin,Wang Sai-lian,Zhou Li-jun,Duan Ying-hua,Zhang Wen-ju. 2014

[2]Fertilization increases paddy soil organic carbon density. Wang, Shao-xian,Liang, Xin-qiang,Chen, Ying-xu,Wang, Shao-xian,Luo, Qi-xiang,Fan, Fang,Li, Zu-zhang,Sun, Huo-xi,Dai, Tian-fang,Wan, Jun-nan,Li, Xiao-jun. 2012

[3]Testing the modified Rothamsted Carbon Model for paddy soils against the results from long-term experiments in southern China. Xu, Minggang,Jiang, Guiying,Shirato, Yasuhito,Yagasaki, Yasumi,Huang, Qinghai,Li, Zuzhang,Nie, Jun,Shi, Xiaojun. 2013

[4]Soil carbon sequestration under long-term rice-based cropping systems of purple soil in Southwest China. Chen Qing-rui,Qin Yu-sheng,Chen Kun,Tu Shi-hua,Xu Ming-gang,Zhang Wen-ju. 2015

[5]Chemical fertilizers could be completely replaced by manure to maintain high maize yield and soil organic carbon (SOC) when SOC reaches a threshold in the Northeast China Plain. Li Hui,Feng Wen-ting,Sun Nan,Xu Ming-gang,Li Hui,Feng Wen-ting,He Xin-hua,Zhu Ping,Gao Hong-jun. 2017

[6]Long-term fertilization effects on carbon and nitrogen in particle-size fractions of a Chinese Mollisol. Yan, Y.,He, H.,Zhang, X.,Chen, Y.,Xie, H.,Bai, Z.,Yan, Y.,Zhang, X.,Chen, Y.,Zhu, P.,Ren, J.,Wang, L.. 2012

[7]Impacts of long-term inorganic and organic fertilization on lignin in a Mollisol. Liu, Ning,He, Hongbo,Xie, Hongtu,Bai, Zhen,Zhang, Xudong,Liu, Ning,Peng, Chang,Zhu, Ping,Ren, Jun,Wang, Lichun. 2010

[8]Trends in grain yields and soil organic C in a long-term fertilization experiment in the China Loess Plateau. Xu, Minggang,Fan, Tinglu,Song, Shangyou,Fan, Tinglu,Zhou, Guangye,Ding, Linping.

[9]The trend of soil organic carbon, total nitrogen, and wheat and maize productivity under different long-term fertilizations in the upland fluvo-aquic soil of North China. Yang, Jun,Ren, Shun-rong,Liu Hailong.

[10]Soil labile organic carbon fractions and soil organic carbon stocks as affected by long-term organic and mineral fertilization regimes in the North China Plain. Li, Juan,Wen, Yanchen,Li, Yanting,Yang, Xiangdong,Lin, Zhian,Zhao, Bingqiang,Li, Xuhua,Song, Zhenzhen,Cooper, Julia Mary. 2018

[11]Long-term organic and inorganic fertilizations enhanced basic soil productivity in a fluvo-aquic soil. Zha Yan,Wu Xue-ping,Gong Fu-fei,Xu Ming-gang,Zhang Hui-min,Cai Dian-xiong,Chen Li-ming,Huang Shao-min. 2015

[12]An analysis of soil carbon dynamics in long-term soil fertility trials in China. Cong, Rihuan,Xu, Minggang,Zhang, Wenju,Wang, Boren,Cong, Rihuan,Wang, Xiujun,Wang, Xiujun,Yang, Xueyun,Huang, Shaomin. 2012

[13]Long-term fertilization effects on organic carbon fractions in a red soil of China. Tong, Xiaogang,Xu, Minggang,Wang, Xiujun,Zhang, Wenju,Cong, Rihuan,Tong, Xiaogang,Wang, Xiujun,Cong, Rihuan,Bhattacharyya, Ranjan. 2014

[14]Simulating the effects of long-term discontinuous and continuous fertilization with straw return on crop yields and soil organic carbon dynamics using the DNDC model. Zhang, Jing,Hu, Kelin,Li, Baoguo,Li, Kejiang,Zheng, Chunlian.

[15]Soil organic carbon, total nitrogen and grain yields under long-term fertilizations in the upland red soil of southern China. Zhang, Wenju,Xu, Minggang,Wang, Boren,Wang, Xiujun.

[16]Maintaining yields and reducing nitrogen loss in rice-wheat rotation system in Taihu Lake region with proper fertilizer management. Xue, Lihong,Yu, Yingliang,Yang, Linzhang. 2014

[17]Fe(III)-induced Sequestration of Citric Acid on Kaolinite Surface Probed by STXM-NEXAFS Spectroscopy. Liu Jin,Yang Jianjun,Zeng Xibai,Wang Jian,Yang Jianjun,Sparks, Donald. 2017

[18]Organic carbon fractions affected by long-term fertilization in a subtropical paddy soil. Huang, Shan,Rui, Wenyi,Peng, Xianxian,Huang, Qianru,Zhang, Weijian,Zhang, Weijian.

[19]Stability and saturation of soil organic carbon in rice fields: evidence from a long-term fertilization experiment in subtropical China. Sun, Yanni,Zhang, Weijian,Huang, Shan,Yu, Xichu,Zhang, Weijian. 2013

[20]Do organic amendments improve yield trends and profitability in intensive rice systems?. Dobermann, A,Ladha, JK,Yadav, RL,Bao, L,Gupta, RK,Lal, P,Panaullah, G,Sariam, O,Singh, Y,Swarup, A,Zhen, QX. 2003

作者其他论文 更多>>