Differences in fertilization impacts on organic carbon content and stability in a paddy and an upland soil in subtropical China

文献类型: 外文期刊

第一作者: Sun, Yanni

作者: Sun, Yanni;Huang, Shan;Yu, Xichu;Zhang, Weijian

作者机构:

关键词: Soil organic carbon;Carbon sequestration;Long-termexperiment;Rice;Corn;Chemical and biological stability

期刊名称:PLANT AND SOIL ( 影响因子:4.192; 五年影响因子:4.712 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: The stability of soil organic carbon (SOC) is of great importance in controlling long-term carbon (C) sequestration and feedbacks of soil C pools to climate change. It has been well documented that rice cropping and organic amendments could enhance SOC stocks, while the stability of the sequestered C has not been well understood yet. The objective of this study was to examine the difference in SOC content and stability between a paddy and an upland field under long-term fertilization and to explore the potential link between SOC chemical and biological stability.

分类号: S15

  • 相关文献

[1]Characteristics of differently stabilised soil organic carbon fractions in relation to long-term fertilisation in Brown Earth of Northeast China. Xu, Xiangru,An, Tingting,Pei, Jiubo,Wang, Jingkuan,Xu, Xiangru,Zhang, Wenju,Xu, Minggang,Xiao, Jing,Xie, Hongtu. 2016

[2]Modeling the Impacts of Soil Organic Carbon Content of Croplands on Crop Yields in China. Qiu Jian-jun,Wang Li-gang,Li Hu,Tang Hua-jun,Li Chang-sheng,Van Ranst, Eric. 2009

[3]Soil organic carbon dynamics jointly controlled by climate, carbon inputs, soil properties and soil carbon fractions. Luo, Zhongkui,Wang, Enli,Feng, Wenting,Luo, Yiqi,Baldock, Jeff.

[4]A one-year short-term biochar application improved carbon accumulation in large macroaggregate fractions. Zhang, Qingzhong,Du, ZhangLiu,Lou, Yilai,He, Xinhua.

[5]Biochar addition drives soil aggregation and carbon sequestration in aggregate fractions from an intensive agricultural system. Du, Zhang-Liu,Zhao, Jian-Kun,Wang, Yi-Ding,Zhang, Qing-Zhong.

[6]Sensitivity of soil respiration to soil temperature decreased under deep biochar amended soils in temperate croplands. He, Xinhua,He, Xinhua,Du, Zhangliu,Wang, Yiding,Lu, Ning,Zhang, Qingzhong.

[7]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

[8]Soil organic carbon fractions and management index after 20 yr of manure and fertilizer application for greenhouse vegetables. Lou, Y.,Xu, M.,Wang, W.,Sun, X.,Liang, C..

[9]Crop yield and soil organic matter after long-term straw return to soil in China. Wang, Jinzhou,Xu, Minggang,Zhang, Wenju,Lu, Chang'ai,Wang, Jinzhou,Feng, Gu,Wang, Jinzhou,Wang, Xiujun,Wang, Xiujun.

[10]Soil organic carbon of an intensively reclaimed region in China: Current status and carbon sequestration potential. Deng, Xunfei,Ma, Wanzhu,Ren, Zhouqiao,Chen, Xiaojia,Long, Wenli,Zhu, Zhenling,Lv, Xiaonan,Zhan, Yu,Zhan, Yu,Wang, Fei,Qin, Fangjin,Zhu, Zhenling.

[11]Carbon sequestration in a nectarine orchard as affected by green manure in China. Wang, Y. X.,Weng, B. Q.,Ye, J.,Zhong, Z. M.,Huang, Y. B..

[12]Storage and spatial patterns of organic carbon of soil profiles in Guangdong Province, China. Zhang, Huihua,Chen, Junjian,Wu, Zhifeng,Li, Dingqiang,Wu, Zhifeng,Zhu, Li.

[13]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.

[14]Soil organic sulfur mineralization in the presence of growing plants under aerobic or waterlogged conditions. Li, ST,Lin, B,Zhou, W. 2001

[15]Inter-relationship between electrophoretic characteristics of pseudocereal and cereal proteins and their microscopic structure for possible substitution based on nutritional evaluation. Gorinstein, S,Yamamoto, K,Kobayashi, S,Taniguchi, H,Pawelzik, E,Delgado-Licon, E,Shaoxian, Y,Hongliang, S,Leticia, A,Ayala, M,Trakhtenberg, S.

[16]Soil organic carbon sequestration under different fertilizer regimes in north and northeast China: RothC simulation. Wang, J.,Lu, C.,Xu, M.,Zhang, W.,Zhu, P.,Peng, C.,Huang, S.,Chen, X.,Wu, L.. 2013

[17]Effect of manipulating animal stocking rate on the carbon storage capacity in a degraded desert steppe. Wang, Zhongwu,Han, Guodong,Zhao, Mengli,Ding, Haijun,Li, Zhiguo,Wang, Jing,Hao, Xiying,Hamilton, Alistair,Liu, Yongzhi,A, Lata,Hexige, Baoyin. 2017

[18]Which policy would work better for improved soil fertility management in sub-Saharan Africa, fertilizer subsidies or carbon credits?. Marenya, Paswel,Nkonya, Ephraim,Kato, Edward,Xiong, Wei.

[19]Mineral fertilizer alters cellulolytic community structure and suppresses soil cellobiohydrolase activity in a long-term fertilization experiment. Fan, Fenliang,Li, Zhaojun,Liang, Yongchao,Wakelin, Steven A.,Yu, Wantai.

[20]Soil Organic Carbon Stocks of Citrus Orchards in Yongchun County, Fujian Province, China. Wang Yixiang,Weng Boqi,Tian Na,Zhong Zhenmei,Wang Mingkuang. 2017

作者其他论文 更多>>