农田土壤固碳效率研究进展
Research Progress on Carbon Sequestration Efficiency of Farmland Soil
DOI: 10.12677/HJSS.2021.94019, PDF,    科研立项经费支持
作者: 于兆丰, 方明晴, 张忠启*, 唐 硕, 欧阳俊芃, 孙铭轩:江苏师范大学,地理测绘与城乡规划学院,江苏 徐州
关键词: 固碳机理影响因素固碳效率农田土壤Carbon Sequestration Mechanism Influencing Factors Carbon Sequestration EfficiencyFarmland Soil
摘要: 随着地球温室效应的增加,全球气候变化及其影响已成为世界各国可持续发展的核心问题,农田土壤固碳对于保持农业可持续发展与缓解气候变化具有双重的积极意义。本文从土壤固碳机理、农田土壤固碳效率的特征以及影响因素等方面国内外相关领域的研究进展进行总结梳理,指出存在的问题及做出对未来研究的展望。
Abstract: With the increase of global greenhouse effect, global climate change and its impact have become the core issue of sustainable development all over the world. Farmland soil carbon sequestration has dual positive significance for maintaining agricultural sustainable development and mitigating climate change. This paper summarizes the research progress in relevant fields at home and abroad from the aspects of soil carbon sequestration mechanism, characteristics and influencing factors of farmland soil carbon sequestration efficiency, and points out the existing problems and makes prospects for future research.
文章引用:于兆丰, 方明晴, 张忠启, 唐硕, 欧阳俊芃, 孙铭轩. 农田土壤固碳效率研究进展[J]. 土壤科学, 2021, 9(4): 157-161. https://doi.org/10.12677/HJSS.2021.94019

参考文献

[1] 潘根兴, 周萍, 张旭辉, 李恋卿, 郑聚锋, 邱多生, 等. 不同施肥对水稻土作物碳同化与土壤碳固定的影响——以太湖地区黄泥土肥料长期试验为例[J]. 生态学报, 2006, 26(11): 3704-3710.
[2] 黄耀, 孙文娟. 近20年来中国大陆农田表土有机碳含量的变化趋势[J]. 科学通报, 2006, 51(7): 750-763. [Google Scholar] [CrossRef
[3] 潘根兴. 农业土壤固碳与缓解气候变化[J]. 国际学术动态, 2009(6): 25-27.
[4] 杨柯. 我国典型农耕区土壤固碳潜力研究[D]: [博士学位论文]. 北京: 中国地质大学, 2016.
[5] 何锦, 曲丽, 周翰舒, 柏林, 杜鹏, 王振. 旱作农田种植碳排放主要因素及减排措施研究进展[J]. 现代农业科技, 2020(9): 184-186, 188.
[6] 刘杨, 于东升, 史学正, 张广星, 秦发侣. 不同蔬菜种植方式对土壤固碳速率的影响[J]. 生态学报, 2012, 32(9): 2953-2959.
[7] 蔡岸冬. 我国典型农田土壤固碳效率特征及影响因素[D]: [硕士学位论文]. 北京: 中国农业科学院, 2016.
[8] 何莹莹, 张海林, 孙国锋, 汤文光, 李永, 陈阜. 耕作措施对双季稻田土壤碳及有机碳储量的影响[J]. 农业环境科学学报, 2010, 29(1): 200-204.
[9] 谢钧宇. 冬小麦/夏玉米体系长期施肥塿土固碳潜力及机制研究[D]: [博士学位论文]. 杨凌: 西北农林科技大学, 2017.
[10] Lützow, M.V., Blair, C., Strong, W.M., Matzner, E., Guggenberger, G., Marschner, B., et al. (2006) Stabilization of Organic Matter in Temperate Soils: Mechanisixis and Heir Relevance under Different Soil Conditions—A Review. European Journal of Soil Science, 57, 426-445. [Google Scholar] [CrossRef
[11] Zhang, W.J., Wang, X.J., Xu, M.G., Huang, S.M., Liu, H. and Peng, C. (2010) Soil Organic Carbon Dynamics under Long-Term Fertiliza-tions in Arable Land of Northern China. Biogeosciences, 7, 409-425. [Google Scholar] [CrossRef
[12] Majumder, B., Mandal, B., Bandyopadhyay, P.K., Gangopadhyay, A., Mani, P.K., Kundu, A.L., et al. (2008) Organic Amendments Influence Soil Organic Carbon Pools and Rice-Wheat Productivity. Soil Science Society of America Journal, 72, 775-785. [Google Scholar] [CrossRef
[13] Epstein, H.E., Burke, I.C. and Lauenroth, W.K. (2002) Regional Patterns of Decomposition and Primary Production Rates in the US Great Plains. Ecology, 83, 320-327. [Google Scholar] [CrossRef
[14] Bolinder, M.A., Janzen, H.H., Gregorich, E.G., Angers, D.A. and Van den Bygaart, A.J. (2007) An Approach for Estimating Net Primary Productivity and Annual Carbon Inputs to Soil for Common Agricultural crops in Canada. Agriculture Ecosystems &Environment, 118, 29-42. [Google Scholar] [CrossRef
[15] 王广峰. 不同蔬菜种植方式对土壤固碳速率的影响分析[J]. 南方农业, 2015, 9(21): 255-256.
[16] 徐江兵, 李成亮, 何园球, 王艳玲, 刘晓利. 不同施肥处理对旱地红壤团聚体中有机碳含量及其组分的影响[J]. 土壤学报, 2007, 44(4): 675-682.
[17] Sainju, U.M., Jabro, J.D. and Stevens, W.B. (2008) Soil Carbon Dioxide Emission and Carbon Content as Affected by irrigation, Tillage, Crop-ping System, and Nitrogen Fertilization. Journal of Environmental Quality, 37, 98-106. [Google Scholar] [CrossRef] [PubMed]
[18] 杨景成, 韩兴国, 黄建辉, 潘庆民. 土壤有机质对农田管理措施的动态响应[J]. 生态学报, 2003, 23(4): 787-796.
[19] 周振方, 胡雅杰, 马灿, 薛天柱, 郭映, 魏国孝. 长期传统耕作对土壤团聚体稳定性及有机碳分布的影响[J]. 干旱地区农业研究, 2013, 30(6): 145-151.
[20] 兰延, 黄国勤, 杨滨娟, 陈洪俊, 王淑彬. 稻田绿肥轮作提高土壤养分增加有机碳库[J]. 农业工程学报, 2014, 30(13): 146-152.
[21] 刘波, 李学斌, 陈林, 庞丹波, 祝忠有, 刘丽贞, 等. 基于文献计量分析的土壤固碳研究进展[J]. 土壤通报, 2021, 52(1): 211-220.
[22] Hassink, J. (1996) Preservation of Plant Residues in Soils Differing in Unsatu-rated Protective Capacity. Soil Science Society of America Journal, 60, 487-491. [Google Scholar] [CrossRef
[23] Ogle, S.M., Breidt, F.J. and Paustian, K. (2005) Agricultural Management Impacts on Soil Organic Carbon Storageunder Moist and Dry Climatic Conditions of Tem-perate and Tropical Regions. Biogeochemistry, 72, 87-121. [Google Scholar] [CrossRef
[24] 王志秀. 贺兰山东麓不同年限葡萄地土壤有机碳变化特征研究[D]: [硕士学位论文]. 银川: 宁夏大学, 2019.
[25] Stewart, C.E., Paustian, K., Conant, R.T., Plante, A.F. and Six, J. (2007) Soil Carbon Saturation: Concept, Evidence and Evaluation. Biogeochemistry, 86, 19-31. [Google Scholar] [CrossRef