Soil carbon sequestration and crop yield in response to application of chemical fertilizer combined with cattle manure to an artificially eroded Phaeozem

文献类型: 外文期刊

第一作者: Sui, Yueyu

作者: Sui, Yueyu;Jin, Jian;Liu, Xiaobing;Zhang, Xingyi;Li, Yansheng;Zhou, Keqin;Wang, Guanghua;Jin, Jian;Di, Guoli;Herbert, Stephen James

作者机构:

关键词: Soil erosion;fractions of SOC;particulate organic carbon (POC);soil carbon stock;C sequestration rate;cattle manure;yield

期刊名称:ARCHIVES OF AGRONOMY AND SOIL SCIENCE ( 影响因子:3.092; 五年影响因子:2.745 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Organic manure application is a feasible approach to alleviate the deterioration of soil erosion on soil organic carbon (SOC). However, to what extent manure application can restore carbon contents in SOC fractions in the eroded Phaeozems remains unknown. A 5-year field experiment was conducted in an artificially eroded Phaeozem with up to 30cm of topsoil being removed. Chemical fertiliser, or chemical fertiliser plus cattle manure was applied. The contents of SOC were 23.6, 21.6 and 15.1gC kg(-1) soil for non-soil removal control, 10 and 30cm of topsoil removal, respectively. Compared with the chemical fertiliser-only treatment, the chemical fertiliser plus manure application markedly increased SOC contents by 30-45% and C sequestration rates by 7.1-9.0-fold, especially in the fraction of 53-250 m particulate organic carbon. However, with manure applied, SOC content in the fraction of mineral associated organic carbon in the 30cm topsoil-removed soil was 2.9g kg(-1), 14.7% less than control (3.4g kg(-1)). The combination of chemical fertliser and manure application effectively restored SOC in the eroded Phaeozems mainly through increasing the size of 53-250 m particulate organic C fraction, but did not improve the SOC stability in severely eroded Phaeozems.

分类号: S`S15`S3

  • 相关文献

[1]Yield and nutrient uptake of barley and camelina amended with manure from cattle fed barley, triticale dried distillers grains with solubles, and flaxseed diets. Esfahani, Ahmadreza,Luo, Yang,Li, Chunli,Benke, Monica B.,Hao, Xiying,Larney, Francis J.,Luo, Yang.

[2]Nutrient management adaptation for dryland maize yields and water use efficiency to long-term rainfall variability in China. Wang, Xiaobin,Dai, Kuai,Wang, Yan,Zhang, Xiaomin,Zhao, Quansheng,Wu, Xueping,Cai, Dianxiong,Wang, Xiaobin,Dai, Kuai,Wang, Yan,Zhang, Xiaomin,Zhao, Quansheng,Wu, Xueping,Cai, Dianxiong,Cai, Dianxiong,Hoogmoed, W. B.,Oenema, O..

[3]Phosphorus amounts and distribution in a Saskatchewan soil after five years of swine and cattle manure application. Qian, P,Schoenau, JJ,Wu, T,Mooleki, R. 2004

[4]Nitrogen Mineralization from Animal Manures and Its Relation to Organic N Fractions. Li Ling-ling,Li Shu-tian,Li Shu-tian. 2014

[5]Copper and zinc amounts and distribution in soil as influenced by application of animal manure in east-central Saskatchewan. Qian, P,Schoenau, JJ,Wu, T,Mooleki, SP. 2003

[6]Effects of long-term fertilization on available P, P composition and phosphatase activities in soil from the Huang-Huai-Hai Plain of China. Wei, Kai,Chen, Lijun,Bao, Hongxu,Huang, Shaomin.

[7]Cattle manure and straw have contrasting effects on organic nitrogen mineralization pathways in a subtropical paddy soil. Zhang, Yushu,Zhang, Jinbo,Zhu, Tongbin,Cai, Zucong,Zhang, Yushu,Wang, Fei,Lin, Cheng,Zhang, Yushu,Zhang, Jinbo,Zhu, Tongbin,Cai, Zucong,Zhang, Jinbo,Cai, Zucong,Zhang, Jinbo,Cai, Zucong,Mueller, Christoph.

[8]The effect of plant hedgerows on the spatial distribution of soil erosion and soil fertility on sloping farmland in the purple-soil area of China. Tu, Shihua,Huang, Jingjing,Chen, Yibing,Lin, Chaowen.

[9]Morphology and controlling factors of the longitudinal profile of gullies in the Yuanmou dry-hot valley. Ding Lin,Qin Fa-chao,Liu Hui,Zhang Bin,Shu Cheng-qiang,Deng Qing-chun,Yang Qian-qian,Fang Hai-dong,Liu Gang-cai. 2017

[10]Residue cover and rainfall intensity effects on runoff soil organic carbon losses. Jin, K.,Wu, H. J.,Cai, D. X.,Jin, J. Y.,Jin, K.,Wu, H. J.,Cai, D. X.,Jin, J. Y.,Jin, K.,Cornelis, W. M.,Gabriels, D.,Baert, M.,Schiettecatte, W.,De Neve, S.,Hartmann, R.,Hofman, G..

[11]Sustained high magnitude erosional forcing generates an organic carbon sink: Test and implications in the Loess Plateau, China. Li, Y.,Yu, H. Q.,Gong, D. Z.,Zhang, Y. Z.,Quine, T. A.,Wang, Z.,Van Oost, K.,Govers, G.,Six, J.. 2015

[12]Soil Organic Matter Spatial Distribution Change over the Past 20 Years and Its Causes in Northeast. Yao, Yanmin,Tang, Huajun,Tang, Pengqin,Yu, Shikai,Wang, Deying,Si, Haiqing,Chen, Youqi,He, Yingbin. 2013

[13]Soil losses due to potato and sugar beet harvesting in NE China. Li, Y.,Ruysschaert, G.,Poesen, J.,Zhang, Q. W.,Bai, L. Y.,Li, L.,Sun, L. F..

[14]Cost-effective sampling of Cs-137-derived net soil redistribution: part 2-estimating the spatial mean change over time. Chappell, A.,Li, Y.,Yu, H. Q.,Zhang, Y. Z.,Li, X. Y..

[15]Cost-effective sampling of Cs-137-derived net soil redistribution: part 1-estimating the spatial mean across scales of variation. Li, Y.,Nyamdavaa, B.,Yu, H.,Davaasuren, D.,Zoljargal, K.,Chappell, A..

[16]Impact of plant roots on the resistance of soils to erosion by water: a review. Gyssels, G,Poesen, J,Bochet, E,Li, Y.

[17]Effectiveness of Soil Conservation Measures in Reducing Soil Erosion and Improving Soil Quality in China Assessed by Using Fallout Radionuclides. Li, Y.. 2010

[18]Perennial Grain Crops: A New Option For The Future Food and Ecoagricultural Environment. Zhang, Yanming,Xiao, Zhimin,Zhang, Yanming,Jiang, Luming,Li, Yongpeng,Tian, Chao,Zhang, Wenjing,Li, Jilin. 2012

[19]Influence of cultivation and fertilization on total organic carbon and carbon fractions in soils from the Loess Plateau of China. Wu, TY,Schoenau, JJ,Li, FM,Qian, PY,Malhi, SS,Shi, YC,Xu, FL. 2004

[20]Evaluating soil reinforcement by plant roots using artificial neural networks. Zhang, C.,Jiang, J.,Ma, J.,Ouyang, Q.,Lei, X.,Zhang, X.,Yang, Q..

作者其他论文 更多>>