教材與著作 1、 曹湊貴、李成芳等,《低碳稻作原理與實踐》,科學出版社,2014 2、 李成芳,《保護性耕作稻田溫室氣體減排原理與實踐》,中國農業出版社,2020 3、 Li Chengfang, Cao Cougui. 2015. Chapter 9 The Ecological Effects of No-Tillage Rice in the Middle and Lower Reaches of the Yangtze River. In: Shiming and Gliessman (Eds). Agroecology in China: Science, Practice and Sustainable. Taylor & Francis. pp. 221-258. 4、 Li Chengfang, Cao Cougui, Luo Shiming. 2018. Method 3 Rice-rice-milk Vetch Rotation System. In: Luo Shiming (ed.) Agroecological Rice Production in China: Restoring Biological Interactions. Food and Agriculture Organization of the United Nations, Rome, pp.19-26. 5、 李成芳參編,稻田土壤培肥與豐産增效耕作理論和技術(張衛建、張俊等),科學出版社,2021 6、 李成芳參編,稻田稭稈還田技術手冊(張俊、張衛建等),中國農業出版社,2020 學術論文 1. Chen BP, Guo LJ, Tang JC, Li YS, Li CF*. Comprehensive impacts of different integrated rice-animal co-culture systems on rice yield, nitrogen fertilizer partial factor productivity and nitrogen losses: A global meta-analysis. Science of the Total Environment, 2024, 915:169994. 2. Ding ZJ, Li JT, Huang F, Hu R, Peng SB, Huang JL, Hou J*, Zhou JL, Li CF*, Su B, Xu MJ. One-time root-zone fertilization of controlled-release urea increases nitrogen use efficiency while reducing nitrogen loss risk in a ratoon rice field under two irrigation practices. Nutrient Cycling in Agroecosystems, 2024, 128:13–33. 3. Guo LJ, Lin W, Cao CG, Li CF*. Integrated rice-crayfish farming system does not mitigate the global warming potential during rice season. Science of the Total Environment, 2023, 867:161520. 4. Du XZ, Hao M, Guo LJ, Li SH, Hu WL, Sheng F*, Li CF*. Integrated assessment of carbon footprint and economic profit from paddy fields under microbial decaying agents with diverse water regimes in central China. Agricultural Water Management, 2022, 262:107403. 5. Hao M, Guo LJ, Du XZ, Wang HL, Sheng F*, Li CF*. Integrated effects of microbial decomposing inoculant on greenhouse gas emissions, grain yield and economic profit from paddy fields under different water regimes. Science of the Total Environment 2022, 805:150295 6. Fan DJ, Cao CG, Li CF*. Integrated organic‐inorganic nitrogen fertilization mitigates nitrous oxide emissions by regulating ammonia‐oxidizing bacteria in Purple Caitai fields. Agriculture, 2022, 12:723. 7. Guo L, Shi J, Lin W, Liang J, Lu Z, Tang X, Liu Y, Wu P, Li C*. Soil bacteria mediate soil organic carbon sequestration under different tillage and straw management in rice-wheat cropping systems. Agriculture, 2022, 12:1552. 8. Guo LJ, Zhang L, Liu L, Sheng F, Cao CG, Li CF*. Effects of long-term no tillage and straw return on greenhouse gas emissions and crop yields from a rice-wheat system in central China. Agriculture, Ecosystems and Environment, 2021, 322:107650 9. Tianqi Liu, Lijin Guo, Cougui Cao, Wenfeng Tan, Chengfang Li*. Long-term rice-oilseed rape rotation increases soil organic carbon by improving functional groups of soil organic matter. Agriculture, Ecosystems and Environment, 2021, 319:107548 10. Shi-hao Li, Li-jin Guo, Cou-gui Cao, Cheng-fang Li*. Integrated assessment of carbon footprint, energy budget and net ecosystem economic efficiency from rice fields under different tillage modes in central China. Journal of Cleaner Production, 2021, 295:126398 11. Feng ZY, Qin T, Du XZ, Sheng F*, Li CF*. Effects of irrigation regime and rice variety on greenhouse gas emissions and grain yields from paddy fields in central China. Agricultural Water Management, 2021, 250:106830 12. Li SH, Guo LJ, Cao CG*, Li CF*. Effects of straw returning levels on carbon footprint and net ecosystem economic benefits from rice-wheat rotation in central China. Environmental Science and Pollution Research, 2021, 28:5742-5754 13. Wang L, Wang T, Liu TQ, Guo LJ, Li CF*, Zhai ZB. Inclusion of microbial inoculants with straw mulch enhances grain yields from rice fields in central China. Food and Energy Security, 2020, e230. 14. Liu Tianqi, Li Shihao, Guo Lijin, Cao Cougui, Li Chengfang*, Zhai Zhongbing, Zhou Jiyong, Mei Yumin, Ke Hongjin. Advantages of nitrogen fertilizer deep placement in greenhouse gas emissions and net ecosystem economic benefits from no-tillage paddy fields. Journal of Cleaner Production, 2020, 263:121322 15. Fan DJ, Liu TQ, Sheng F, Li SH, Cao CG, Li CF*. Nitrogen deep placement mitigates methane emissions by regulating methanogens and methanotrophs in no-tillage paddy fields. Biology and Fertility of Soils, 2020, 56:711-727. 16. Daijia Fan, Haoran Zhang, Tianqi Liu, Cougui Cao, Chengfang Li*. Control Effects of Chelonus munakatae Against Chilo suppressalis and Impact on Greenhouse Gas Emissions From Paddy Fields. Frontiers in Plant Science, 2020, doi: 10.3389/fpls.2020.00228 17. Hu QY, Liu TQ, Jiang SS, Cao CG*, Li CF*, Chen B, Liu JB. Combined Effects of Straw Returning and Chemical N Fertilization on Greenhouse Gas Emissions and Yield from Paddy Fields in Northwest Hubei Province, China. Journal of Soil Science and Plant Nutrition, 2020, 20:392–406. 18. Tianqi Liu, Jinfeng Huang, Kaibin Chai, Cougui Cao, Chengfang Li*. Effects of N Fertilizer Sources and Tillage Practices on NH3 Volatilization, Grain Yield, and N Use Efficiency of Rice Fields in Central China. Frontiers in Plant Science, 2018, 9, 385. 19. Feng Sheng, Cougui Cao*, Chengfang Li*. Integrated rice-duck farming decreases global warming potential and increases net ecosystem economic budget in central China. Environmental Science and Pollution Research, 2018, 25:22744-22753. 20. Zhang ZS, Chen J, Liu TQ, Cao CG, Li CF*. 2016. Effects of nitrogen fertilizer sources and tillage practices on greenhouse gas emissions in paddy fields of central China. Atmospheric Environment, 144:274-281. 21. Guo LJ, Zheng SX, Cao CG, Li CF*. 2016.Tillage practices and straw-returning methods affect topsoil bacterial community and organic C under a rice-wheat cropping system in central China. Scientific Reports, 6:33155. DOI:10.1038/srep33155. 22. Guo LJ, Lin S, Liu TQ, Cao CG, Li CF*. 2016. Effects of conservation tillage on topsoil microbial metabolic characteristics and organic carbon within aggregates under a rice (Oryza sativa L.) –wheat (Triticum aestivum L.) cropping system in central China. PLoS ONE 11(1):e0146145. 23. Zhang ZS, Cao CG, Guo LJ, Li CF*. 2016. Emissions of CH4 and CO2 from paddy fields as affected by tillage practices and crop residues in central China. Paddy and Water Environment, 14(1):85-92. 24. Guo LJ, Zhang RD, Zhang ZS, Cao CG, Li CF*. 2015. Effects of different no-tillage modes on soil CO2 fluxes from paddy fields in central China. Journal of Soil Science and Plant Nutrition, 15(3):737-750. 25. Liu TQ, Fan DJ, Zhang XX, Chen J, Li CF*, Cao CG*. 2015. Deep placement of nitrogen fertilizers reduces ammonia volatilization and increases nitrogen utilization efficiency in no-tillage paddy fields in central China. Field Crops Research, 184:80-90. 26. Zhang ZS, Guo LJ, Liu, TQ, Li CF*, Cao CG*. 2015. Effects of tillage practices and straw returning methods on greenhouse gas emissions and net ecosystem economic budget in rice–wheat cropping systems in central China. Atmospheric Environment, 122:636-644. 27. Guo LJ, Zhang ZS, Wang DD, Li CF*, Cao CG*. 2015. Effects of short-term conservation management practices on soil organic carbon fractions and microbial community composition under a rice-wheat rotation system. Biology and Fertility of Soils, 51(1):65-75. 28. Zhang ZS, Cao CG, Guo LJ, Li CF*. 2014. The effects of rape residue mulching on net global warming potential and greenhouse gas intensity from no-tillage paddy fields. Scientific World Journal, 2014:1-9. 29. Zhang ZS, Cao CG, Cai ML, Li CF*. 2013. Crop yield, P uptake and soil organic phosphorus fractions in response to short-term tillage and fertilization under a rape-rice rotation in central China. Journal of Soil Science and Plant Nutrition, 13(4):871-882. 30. Li CF*, Zhang ZS, Guo LJ, Cai ML, Cao CG*. 2013. Emissions of CH4 and CO2 from double rice cropping systems under varying tillage and seeding methods. Atmospheric Environment, 80:438-444. 31. Zhou DN, Zhang FP, Duan ZY, Liu ZW, Yang KL, Guo R, Yuan FY, Tian YX, Li CF*. 2013. Effects of heavy metal pollution on microbial communities and activities of mining soils in central Tibet, China. Journal of Food, Agriculture & Environment, 11(1):676-681. 32. Cheng-Fang Li, Dan-Na Zhou, Zhi-Kui Kou, Zhi-Sheng Zhang, Jin-Ping Wang, Ming-Li Cai, Cou-Gui Cao. 2012. Effect of tillage and N fertilizers on CH4 and CO2 emissions and soil organic carbon in paddy fields of central China. PLoS ONE, 7(5):e34642. 33. Cheng-fang Li, Li-xin Yue, Zhi-kui Kou, Zhi-sheng Zhang, Jin-ping Wang, Cou-gui Cao. 2012. Short–term effects of conservation management practices on soil labile organic carbon fractions under a rape–rice rotation in central China. Soil & Tillage Research,119:31-37. 34. Zhang Jian-she, Zhang Fu-ping, Yang Jin-hua, Wang Jin-ping, Cai Ming-li, Li Cheng-fang*, Cao Cou-gui.2011. Emissions of N2O and NH3, and nitrogen leaching from direct seeded rice under different tillage practices in central China. Agriculture, Ecosystems and Environment, 140(1-2):164-173. 35. Li Cheng-fang, Kou Zhi-kui, Yang Jin-hua, Cai Ming-li, Wang Jin-ping, Cao Cou-gui. 2010. Soil CO2 fluxes from direct seeding rice fields under two tillage practices in central China. Atmospheric Environment, 44:2696-2704. 36. Li Cheng-fang, Yang Jing, Zhang Chuan, Zhang Zhi-sheng, Zheng Min, Ahmad Shahrear, Cao Cou-gui. 2010. Effects of short-term tillage and fertilization on grain yields and soil properties of rice production systems in central China. Journal of Food, Agriculture & Environment, 8(2):577-584. 37. Zhang Fu-ping#, Li Cheng-fang#, Tong Le-ga, Yue Li-xin, Li Ping, Ciren Yang-jin, Cao Cou-gui. 2010. Response of microbial characteristics to heavy metal pollution of mining soils in central Tibet, China. Applied Soil Ecology, 45:144-151. 38. Ahmad Shahrear#, Li Cheng-fang#,Dai Guang-zhao, Zhan Ming, Wang Jin-ping, Pan Sheng-gang, Cao Cou-gui. 2009. Greenhouse gas emission from direct seeding paddy field under different rice tillage systems in central China. Soil & Tillage Research, 106:54-61. 39. Li Cheng-fang, Cao Cou-gui, Wang Jin-ping, Zhan Ming, Yuan Wei-ling, Shahrear Ahmad. 2009. Nitrous oxide emissions from wetland rice–duck cultivation systems in southern China. Archives of Environmental Contamination and Toxicology, 56(1):21-29. 40. Li Cheng-fang, Cao Cou-gui, Wang Jin-ping, Zhan Ming, Yuan Wei-ling, Shahrear Ahmad. 2008. Nitrogen losses from integrated rice–duck and rice–fish ecosystems in southern China. Plant and Soil, 307:207-217. 41. 李延實, 李成芳*. 不同再生稻栽培模式氮足迹及經濟效益評估. 中國生态農業學報(中英文), 2024, DOI: 10.12357/cjea.20240005. 42. 饒怡晴,嶽子欽,汪金平,李成芳*. 不同氮肥類型對稻-油輪作氨揮發和氮肥利用率的影響. 中國生态農業學報(中英文), 2024, DOI: 10.12357/cjea.20230594. 43. 吳夢琴,曹湊貴,劉天奇,李成芳*. 長期有機無機氮肥配施對玉米-豇豆複種土壤團聚體碳含量和官能團分子結構的影響. 土壤學報, 2023, 60(6):1824–1833. 44. 周浩之,吳夢琴,羅喜秀,陳淯琨,劉天奇,李成芳*. 不同再生稻栽培模式碳足迹與經濟效益評估. 77779193永利官网學報, 2023, 42(2):71‐78. 45. 樊代佳,李成芳*,曹湊貴*. 氮肥深施對免耕稻田土壤有機質化學特性和胞外酶活性的影響. 農業環境科學學報, 2021, 40(3): 621-630. 46. 向偉,王雷,劉天奇,李詩豪,翟中兵,李成芳*. 生物炭與無機氮配施對稻田溫室氣體排放及氮肥利用率的影響. 中國農業科學,2020,53(22): 4634-4645. 47. 馮珺珩, 黃金鳳,劉天奇, 曹湊貴,李成芳*. 耕作與稭稈還田方式對稻田N2O 排放、水稻氮吸收及産量的影響. 作物學報,2019, 45(8): 1250-1259. 48. 鄧橋江, 曹湊貴, 李成芳*. 不同再生稻栽培模式對稻田溫室氣體排放的影響. 農業環境科學學報, 2019, 38(6):1373-1380. 49. 帥豔菊, 劉天奇, 曹湊貴, 李成芳*. 有機無機肥配施對玉米-豇豆種植系統土壤N2O 排放的影響. 中國生态農業學報, 2018, 26(12): 1613-1623. 50. 李詩豪,劉天奇,馬玉華, 李成芳*. 耕作方式與氮肥類型對稻田氨揮發、氮肥利用率和水稻産量的影響. 農業資源與環境學報, 2018, 35(5): 447-454. 51. 李成芳,胡紅青,曹湊貴,黃見良,周勇,朱建強,秦魚生,杭曉甯,堯水紅,張衛建. 中國再生稻田土壤培肥途徑的研究與實踐. 湖北農業科學,2017, 56 (14) :2666-2669. 52. 馬玉華, 劉兵, 張枝盛, 鄭大, 周亮, 曹湊貴, 李成芳*. 免耕稻田氮肥運籌對土壤NH3揮發及氮肥利用率的影響. 生态學報, 2013, 33(18):5556-5564.(*通訊作者) 53. 郭梨錦, 曹湊貴, 張枝盛, 劉天奇, 李成芳*. 耕作方式和稭稈還田對稻田表層土壤微生物群落的短期影響.農業環境科學學報, 2013, 32(8):1577-1584.(*通訊作者) 54. 王丹丹, 周亮, 黃勝奇, 李成芳*, 曹湊貴*. 耕作方式與稭稈還田對表層土壤活性有機碳組分與産量的短期影響.農業環境科學學報,2013, 32(4):735-740.(*通訊作者) 55. 李成芳*, 寇志奎, 張枝盛, 曹湊貴, 吳海亞, 梅金安, 翟中兵, 張叢德, 魏坦雄, 劉詩晴, 夏起昕. 稭稈還田對免耕稻田溫室氣體排放及土壤有機碳固定的影響.農業環境科學學報,2011,30(11):2362-2367.(*通訊作者) 56. 苗全安,曹湊貴,汪金平,高超,李成芳*.丹江口庫區坡耕地不同作物對土壤濺蝕的影響.中國水土保持科學.2011,9(5):11-14.(*通訊作者) 57. 張涪平,曹湊貴,李蘋,次仁央金,通樂嘎,李成芳*.藏中礦區重金屬污染對土壤微生物學特性的影響.農業環境科學學報,2010,29(4):698-704.(*通訊作者) 58. 張涪平,曹湊貴,李蘋,次仁央金,高超,通樂嘎,李成芳*.藏中礦區重金屬污染土壤的微生物活性變化.生态學報,2010,30(16):4452-4459.(*通訊作者) 59. 李成芳,曹湊貴,汪金平,翟中兵,梅少華.不同耕作方式下稻田土壤CH4和CO2的排放及碳收支估算.農業環境科學學報, 2009,28(12):2482-2488. 60. 李成芳,曹湊貴,汪金平,展茗,潘聖剛.稻鴨、稻魚共作生态系統土壤可溶性N的動态.生态學報,2009,29(5):2541-2550. 61. 李成芳,曹湊貴,汪金平,展茗,蔡明曆.稻鴨、稻魚共作對稻田P素動态變化的影響.長江流域資源與環境, 2009,18(2):126-131. 62. 李成芳,曹湊貴,展茗,汪金平,袁偉玲,代光照.稻鴨共作生态系統氧化亞氮排放及溫室效應評估.中國農業科學,2008,41(9):2895-2901. 63. 李成芳,曹湊貴,汪金平,展茗,袁偉玲,潘聖剛,黃豐,代光照.稻鴨共作生态系統稻田土壤固定态铵含量及有效性的研究.生态學報,2008,28(6):2729-2737. 64. 李成芳,曹湊貴,汪金平,葉威,葉成,劉凱,曾金鳳.稻鴨、稻魚共作生态系統中稻田田面水N素動态變化及淋溶損失.環境科學學報,2008,28(10):2125-2132. 65. 李成芳,曹湊貴,徐擁華,汪金平,展茗,楊學偉,龐海東.稻鴨與稻魚生态系統土壤微生物量N和土壤酶活性動态變化.生态學報, 2008, 28(8):3905-3912. 66. 李成芳,曹湊貴,汪金平,展茗,袁偉玲,高超,潘聖剛.稻鴨、稻魚共作生态系統N素平衡的研究.農業環境科學學報,2008,27(4):1326-1334. 67. 李成芳,曹湊貴,展茗,汪金平.稻鴨共作對稻田氮素變化及土壤微生物的影響.生态學報,2008,28(5):2115-2122. 68. 曹湊貴,李成芳,展茗,汪金平.稻田管理措施對土壤碳排放的影響.中國農業科學,2011,44(1):93-98. 69. 通樂嘎,李成芳,楊金花,汪金平,曹湊貴,吳海亞,梅少華,梅金先,翟中兵.免耕稻田田面水磷素動态及其淋溶損失.農業環境科學學報,2010,29(3):527-533. 70. 曹湊貴,李成芳,寇志奎,楊金花,汪金平.不同類型氮肥和耕作方式對稻田土壤氨揮發的影響.江西農業大學學報,2010,32(5):0881-0886. 71. 代光照,李成芳,曹湊貴,展茗,通樂嘎,梅少華,翟中兵,範端陽.免耕施肥對稻田甲烷與氧化亞氮排放及其溫室效應的影響.應用生态學報,2009,20(9):2166-2172. |