Long-term effects of different organic and inorganic fertilizer treatments on soil organic carbon sequestration and crop yields on the North China Plain
文献类型: 外文期刊
第一作者: Yang, Z. C.
作者: Yang, Z. C.;Zhao, N.;Huang, F.;Lv, Y.;Yang, Z. C.
作者机构:
关键词: Wheat; Corn stalks; Long-term experiment; Soil organic carbon sequestration; Crop yields
期刊名称:SOIL & TILLAGE RESEARCH ( 影响因子:5.374; 五年影响因子:6.368 )
ISSN: 0167-1987
年卷期: 2015 年 146 卷
页码:
收录情况: SCI
摘要: The aim of the study is to analyze the effects of different fertilization of organic and inorganic fertilizers on soil organic carbon (SOC) sequestration and crop yields after a 22 years long-term field experiment. The crop yields and SOC were investigated from 1981 to 2003 in Dry-Land Farming Research Institute of Hebei Academy of Agricultural and Forestry Sciences, Hebei Province, China. The dominant cropping systems are winter wheat-summer corn rotation. There were totally sixteen treatments applied to both wheat and corn seasons: inorganic fertilizers as main plots and corn stalks as subplots and the main plots and subplots all have four levels. The results revealed: after 22 years, mixed application of inorganic fertilizers and crop residuals, the SOC and crop yields substantially increased. Higher fertilizer application rates resulted in greater crop yields improvement. In 2002-2003, wheat and corn for the highest fertilizer inputs had the highest yield level, 6400 kg ha(-1) and 8600 kg ha(-1), respectively. However, the SOC decreased as the excessive inorganic fertilizer input and increased with the rising application of corn stalks. The treatment of the second-highest inorganic fertilizer and the highest corn stalks had the highest SOC concentration (8.64 g C kg(-1)). Pearson correlation analysis shows that corn and winter wheat yields and the mineralization amount of SOC have significant correlation with SOC at p<0.05 level. (C) 2014 Elsevier B.V. All rights reserved.
分类号:
- 相关文献
作者其他论文 更多>>
-
Arginine requirement of breeding pigeons during incubation and lactation in the 2+4 lactation pattern
作者:Zhang, W.;Zheng, S.;Huang, W.;Lu, X.;Lu, H.;Zhang, Y.;Lv, Y.;Li, Z.;Chen, W.;Mo, S.;Tan, G.;He, Y.;Huang, Q.;Li, Z.;Wang, W.;Huang, Y.;Peng, J.;Gou, Z.;Wang, J.;Wang, Z.;Li, Z.;Li, Z.;Xu, X.
关键词:Arginine; reproductive performance; growth; oxidative stress; breeding pigeon
-
Dietary supplementation with tryptophan improves the production and growth performance of breeding pigeons under 2+4 model
作者:Zheng, S.;Yan, K.;Tang, Y.;Zhang, W.;Zhang, Y.;Huang, W.;Yang, M.;Lu, H.;Li, Z.;He, Y.;Li, Z.;Gao, H.;Zhou, S.;Lv, Y.;Wang, W.;Huang, Y.;Peng, J.;Gou, Z.;Wang, Z.;Wang, J.;Li, Z.;Li, Z.;Xu, X.
关键词:Tryptophan; breeding pigeons; squab; performance; reproductive metabolism
-
Straw and hairy vetch incorporation enhances soil fertility and crop yield stability in a 9-year sequence
作者:Hou, J. W.;Xing, C. F.;Zhang, T. T.;Liang, J. M.;An, H.;Zhang, J.;Lan, H. Q.;Bai, Z. C.;Duan, Y.;Wu, C. D.;Zhao, N.;Hao, Y. F.;Tao, M. H.;An, J. M.;Fan, B. L.
关键词:
-
The gene CmPYL6 strongly contributes to cold tolerance in oriental melon
作者:Liu, W.;Lv, Y.;Zhang, L.;Liu, S.;Zhang, J.;He, M.;Jiang, Y.;Wang, Z.
关键词:ABA; cold stress; oriental melon; PYL
-
Integrative Transcriptomics and Proteomics Analyses Provide Molecular Insights into High-Temperature Tolerance of Pitaya (Hylocereus polyrhizus)
作者:Wu, Z.;Liang, G.;Lu, G.;Deng, H.;Wei, S.;Liu, C.;Li, Z.;Huang, F.;Ye, X.;Huang, L.
关键词:heat stress; pitaya; transcriptomics; proteomics; candidate gene
-
Identification and fine mapping of a new bacterial blight resistance gene, Xa43(t), in Zhangpu wild rice (Oryza rufipogon)
作者:Huang, F.;He, N.;Yu, M.;Yang, D.;Li, D.
关键词:Bacterial blight (BB) resistance; chromosome segment substitution line (CSSL); fine mapping; Rice; ZhangPu wild rice
-
Biodegradable and self-fluorescent ditelluride-bridged mesoporous organosilica/polyethylene glycol-curcumin nanocomposite for dual-responsive drug delivery and enhanced therapy efficiency
作者:Xia, X.;Deng, Q.;Huang, F.;Xiang, X.;Shi, J.;Xu, N.
关键词:Biodegradable mesoporous organosilica; PEG-CCM; Ditelluride bond; Dual-responsive carrier; Drug delivery