博士生导师
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刘小刚

发布时间:2023-04-10    作者:      来源: 美高美网络平台游戏       浏览次数:    


博士

教授

博士生导师/硕士生导师

研究方向:

节水理论与技术、水土资源优化、现代农业工程

电子邮箱:

liuxiaogangjy@126.com

     刘小刚

招生专业:

农业水土工程、农田水土工程、农业工程、环境生态

 

 

刘小刚男,中共党员,甘肃庆阳人,博士,教授,博士生导师国家自然科学基金通讯评审专家,教育部学位中心学位论文评审专家,《排灌机械工程学报》青年编委,云南省农业工程学会理事,中国农业工程学会高级会员,多个国际期刊审稿专家。2009年毕业于西北农林科技大学农业水土工程国家重点学科,获博士学位。20019月至20047月在塔里木大学任教,20098月到美高美网络平台游戏从事教学科研工作,201610月晋升为教授。2012年至2017年任美高美网络平台游戏农工学院副经理。2015年获得云南省引进高层次人才政府购房补贴。已主持国家自然科学基金(面上、青年、地区)4项、云南省自然科学重点和面上基金3项、四川省科技厅项目1项、云南省教育厅重点项目1项。参与完成10项国家和省部级项目。发表学术论文125篇,其中SCI/EI收录49篇。授权国家发明专利13项,团体标准1项,软件著作8项。主/参编学术专著3部。指导老员工创新创业项目4项(国家级2项、省级2项)。指导的研究生有6人获得国家奖学金,8人获得省政府奖学金,1人获得省级优秀硕士论文,1个团队荣获全国老员工农业水利工程及相关专业创新设计大赛特等奖。2012年和2017年分别获美高美网络平台游戏伍达观教育基金先进教师奖和红云园丁优秀教师奖。2021年荣获校级教学成果一等奖1项和云南省科技进步二等奖1项。

 

 

2004.09-2009.6

西北农林科技大学

农业水土工程硕博连读

博士

 

 

 

 

 

            

 

1. Micro-moistening irrigation combined with bio-organic fertilizer: An adaptive irrigation and fertilization strategy to improve soil environment, edible Rose yield, and nutritional quality, Industrial Crops and Products,2023.

2. Optimizing irrigation and fertilization at various growth stages to improve mango yield, fruit quality and water-fertilizer use efficiency in xerothermic regions, Agricultural Water Management, 2022.

3. Optimizing shade cultivation method and irrigation amount to improve photosynthetic characteristics, bean yield, and quality of coffee in a subtropical monsoon climate, Frontiers in Plant Science,2022.

4. Exploring the optimisation of mulching and irrigation management practices for mango production in a dry hot environment based on the entropy weight method, Scientia Horticulturae,2022.

5. Coupling of regulated deficit irrigation at maturity stage and moderate fertilization to improve soil quality, mango yield and water-fertilizer use efficiency, Scientia Horticulturae, 2022.

6. A novel edible packaging film based on chitosan incorporated with persimmon peel extract for the postharvest preservation of banana, Food Quality and Safety,2022.

7. A novel intelligent film with high stability based on chitosan/sodium alginate and coffee peel anthocyanin for monitoring minced beef freshness, International Journal of Food Science and Technology,2022.

8. A study of the conversion of different evaporation pans in South China based on the extreme learning machine model, Hydrological Sciences Journal,2021.

9. AHP-GIS and MaxEnt for delineation of potential distribution of Arabica coffee plantation under future climate in Yunnan, China, Ecological Indicators, 2021.

10. Alternate infiltration irrigation improves photosynthetic characteristics and water use efficiency in mango seedlings, Journal of Plant Growth Regulation,2021.

11. Effects of deficit irrigation on soil microorganisms and growth of Arabica coffee (Coffea arabica L.) under different shading cultivation modes, International Journal of Agricultural and Biological Engineering,2021.

12. Evaluation of coffee ecological adaptability using Fuzzy, AHP, and GIS in Yunnan Province, China, Arabian Journal of Geosciences,2021.

13. Exploring the coupling mode of irrigation method and fertilization rate for improving growth and water-fertilizer use efficiency of young mango tree, Scientia Horticulturae, 2021.

14. Determining optimal deficit irrigation and fertilization to increase mango yield, quality, and WUE in a dry hot environment based on TOPSIS, Agricultural Water Management, 2021.

15. Drought assessment of southwestern China based on HadGEM2‑ES model under representative concentration pathway 4.5 scenario, Natural Hazards,2020.

16. Effects of pressure heads and soil bulk density on infiltration characteristics of vertically inserted moistube irrigation, Environmental and Earth Sciences Research Journal,2019.

17. Estimation of daily dew point temperature by using bat algorithm optimization based extreme learning machine, Applied Thermal Engineering, 2020.

18. Simulation of daily diffuse solar radiation based on three machine learning models, Computer Modeling in Engineering & Sciences,2020.

19. Effect of moistube fertigation on infiltration and distribution of water-fertilizer in mixing waste biomass soil,Sustainability,2019.

20. Influences of alternate partial root-zone irrigation and urea rate on water- and nitrogen-use efficiencies in tomato, International Journal Of Agricultural And Biological Engineering,2017.

21. Light-response curve of photosynthesis and model fitting in leaves of Mangifera indica under different soil water conditions,Photosynthetica,2019.

22. Impacts of regulated deficit irrigation on yield, quality and water use efficiency of Arabica coffee under different shading levels in dry and hot regions of southwest China, Agricultural Water Management,2018.

23. Effects of alternate drip irrigation and superabsorbent polymers on growth and water use in young coffee tree, Journal of Environmental Biology,2016.

24. Effects of deficit irrigation on yield and nutritional quality of Arabica coffee (Coffea arabica) under different N rates in dry and hot region of southwest China, Agricultural Water Management,2016.

25. Response of tomato yield and quality to alternate partial root-zone irrigation at different water and nitrogen levels, Carpathian Journal of Food Science And Technology,2015.

26. Water consumption characteristics of sugarcane in dry-hot region under climate change, Chemical Engineering Transactions,2015.

27. 保水剂和灌水对小粒咖啡苗木的节水调控效应,农业机械学报,2014.

28. 不同荫蔽栽培下亏缺灌溉对干热区小粒咖啡水光利用和产量的影响,应用生态学报,2018.

29. 不同遮阴下亏缺灌溉对小粒咖啡生长和水光利用的影响,农业机械学报,2017.

30. 不同遮荫条件下施肥量对西南干热区小粒咖啡产量和肥料利用的影响,应用生态学报,2020.

31. 调亏灌溉与氮营养对玉米根区土壤水氮有效性的影响,农业工程学报,2010.

32. 干旱胁迫-复水与氮肥耦合对小粒咖啡生长和水氮生产力的影响,应用生态学报,2017.

33. 干热区小粒咖啡提质增产的灌水和遮荫耦合模式,应用生态学报,2018.

34. 河南省主粮作物需水量变化趋势与成因分析,农业机械学报,2015.

35. 减量施肥耦合调亏灌溉对干热区芒果产量和品质的影响,植物营养与肥料学报,2022.

36. 微润灌溉施肥对干热区芒果光合特性、产量和水肥利用的影响,水土保持学报,2020.

37. 基于1961-2100SPISPEI 的云南省干旱特征评估,农业机械学报,2018.

38. 基于卷积神经网络的草莓识别方法,农业机械学报,2020.

39. 基于主成分分析的广西省干旱时空格局,生态学报,2020.

40. 交替隔沟灌溉和施氮对玉米根区水氮迁移的影响,中国农业科学,2008.

41. 交替隔沟灌溉条件下玉米群体水氮利用研究,农业机械学报,2011.

42. 交替灌溉下不同水氮供给对番茄产量和品质的影响,水土保持学报,2013.

43. 控制性分根区灌溉对玉米根区水氮迁移和利用的影响,农业工程学报,2009.

44. 石羊河流域武威绿洲春玉米水氮耦合效应,应用生态学报,2013.

45. 水氮处理对玉米根区水氮迁移和利用的影响,农业工程学报,2008.

46. 水氮耦合对干热区小粒咖啡产量和品质的影响,农业机械学报,2015.

47. 水氮耦合下小粒咖啡幼树生理特性及水氮利用效率,农业机械学报,2014.

48. 水肥耦合对芒果光合特性和产量及水肥利用的影响,农业工程学报,2019.

49. 香蕉树中度荫蔽下充分灌水提高干热区咖啡产量及品质,农业工程学报,2019.

50. 小粒咖啡水肥光耦合理论与调控模式,科学出版社,2018

51. 一种引导根系生长的变深度地下灌溉装置及方法, ZL202010890952.0

52. 一种分层自控排灌装置、方法及引导根系生长的灌溉方法, ZL202210189792.1

53. 小粒种咖啡种植水肥一体化技术规程, T/YNRZ 024-2022

54. 一种微润灌溉水肥一体控制系统, ZL201710373085.1

55. 一种地下水肥气一体化灌溉系统, ZL201510172781.7

56. 一种灌溉用引水管密封连接装置, ZL202110177346.9

57. 一种磁性液位计, ZL201510162328.8

58. 一种取样器, ZL201510722959.0

59. 一种咖啡鲜果去皮干燥装置, ZL 201811621824.5

60. 一种咖啡鲜果去皮除胶装置, ZL201810017252.3

61. 一种山药工厂化种植收获集成装置, ZL201510488086.1

62. 一种自动摘果去叶装置, ZL201310579383.8

63. 云南省科技进步奖二等奖,干热区特色作物水肥高效利用关键技术与产品研发及应用,排名第22021

 

            

 

1. 国家自然科学基金面上项目:滴灌施肥与咖皮还田协同提高干热区咖啡水肥生产力和特征风味的机制及模式(2020.01-2023.12

2. 国家自然科学基金地区项目:微润灌溉施肥条件下干热河谷区芒果品质调控机制及水肥耦合模式(2018.01-2021.12

3. 国家自然科学基金地区项目:有限灌溉和荫蔽栽培下干热河谷区小粒咖啡提质高产机制(2015.1-2018.12

4. 国家自然科学基金青年项目:有限灌溉对云南干热河谷区小粒咖啡的水氮耦合效应(2012.01-2014.12

5. 云南省基础研究专项重点项目:精品咖啡绿色生产的生物有机肥和复合种植协同机制及耦合模式(2023.06-2026.05

 

 

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