发表论文:
(1)Fang Wang, Wenhui Li, Yamiao Gao, et al., Radish cover crop and manure alter organic carbon characteristics and improve soil physicochemical properties as well as wolfberry yields. Agriculture, Ecosystems and Environment, 2024, 371:109097
(2)Fang Wang, Lizhen Zhu, et al. Selecting appropriate forage cover crops to improve growth, yield, and fruit and fruit quality of wolfberry by regulation of photosynthesis and biotic stress resistance. Scientia Horticulturae, 2024, 337:113470
(3)Fang Wang, Haonan Chen, Yamiao Gao, et al., Physicochemical fractionation reveals increased soil organic carbon storage in wolfberry orchard under cover cropping. Plant and Soil, 2024.
(4)Fang Wang, Yanmin Lin, Zhirui Hu, et al., Response of ecosystem carbon storage to land use change from 1985 to 2050 in the Ningxia Section of Yellow River Basin, China, Journal of Arid Land, 2024, 16(1):110~130
(5)Fang Wang, Wenhui Li, Haonan Chen, Ray R. Weil, Lizhen Zhu, Xiongxiong Nan. Forage radish cover crops improve soil quality and fruit yield of Lycium barbarum L. in an arid area of Northwest China. Agronomy, 2023, 13(6): 1634.
(6)Fang Wang, Wenhui Li, Yanmin Lin, Xiongxiong Nan, Jingjing Yuan. Soil organic carbon pool and the production of Goji Berry ( Lycium barbarum L.) as affected by different fertilizer combinations under drip fertigation. Frontiers in Environmental Science, 2022, 10: 1~12.
(7)Fang Wang, Ray Weil, et al. Subsequent nitrogen utilisation and soil water distribution as affected by forageradish cover crop and nitrogen fertiliser in a corn silage production system. Acta Agriculturae Scandinavica, Section B—Soil & Plant Science, 2019, 69(1): 52~61.
(8)Fang Wang,Ray Weil. The form and vertical distribution of soil nitrogen as affected by forage radish cover crop and residual side-dressed N fertilizer. Soil Science, 2018, 183: 22~33.
(9)Fang Wang, Ray Weil, Xiongxiong Nan. Total and permanganate-oxidizable organic carbon in the corn rooting zone of US coastal plain soils as affected by forage radish cover crops and N fertilizer. Soil & Tillage Research, 2017, 165: 247-257.
(10)Fang Wang, Yan’an Tong, Pengcheng Gao, Jinshui Zhang, Ray R. Weil, Nichole J. Coffie, Organic amendments to a wheat crop alter soil aggregation and labile carbon on the Loess Plateau, China. Soil Science, 2014, 179(3):166-173.
(11)Fang Wang, Yan’an Tong, Pengcheng Gao, Jinshui Zhang, Nichole J. Coffie, Effects of various organic materials on soil aggregate stability and soil microbiological properties on the Loess Plateau of China. Plant Soil and Environment, 2013, 59(4): 162-168.
(12)高亚苗,陈浩楠,王芳*等.宁夏典型粮食作物生产水足迹时空演变及节水潜力评价[J].干旱区地理, 2024, 47(12):1-15.
(13)王芳,李文慧,林妍敏等.1990~2020年黄河流域典型生态区生态环境质量时空格局及驱动力分析.环境科学,2023,44(05):2518-2527.
(14)王芳,陈浩楠,赵占宁等.再生水灌溉模式对葡萄园土壤环境、微生物群落结构和葡萄生长的影响.生态学杂志,2023,42(09):2138-2147
(15)李文慧,林妍敏,南雄雄,王芳(通讯).果树-覆盖作物可持续种植体系土壤碳氮固存及其影响因素.应用生态学报,2023,34(02):471-480.
(16)林妍敏,李文慧,南雄雄,王芳(通讯).基于地理探测器的宁夏贺兰山植被覆盖度时空分异及驱动因子.应用生态学报,2022,33(12):3321-3327.
(17)林妍敏,南雄雄,胡志瑞,王芳(通讯).西北典型生态脆弱区植被覆盖度时空变化及其生态安全评价:以宁夏贺兰山为例.生态与农村环境学报,2022,38(05):599-608.
(18)南雄雄,杨柳,李文慧,王芳(通讯)等.缺素条件下枸杞植株生长及营养元素吸收利用互作效应[J/OL].中国土壤与肥料:1-13[2023-10-30].
(19)王芳,马晓,林妍敏等.课程思政视域下“环境土壤学”课程教学改革实践.教育教学论坛, 2022(27):73-76.
出版专著:
1.王芳,典型农田土壤优化管理实践与环境效应,科学出版社,2020,主编
2.南雄,王芳等.枸杞养分缺素诊断与植物营养调控,中国环境出版集团, 2023,副主编
3.郑兰香、王芳等,贺兰山东麓葡萄酒生产废水废物处理与资源化.中国环境出版集团, 2022,副主编
4.孙兆军,何俊,苏宁虎,孙振源,李茜,王芳等.全球典型旱区水土资源持续利用,科学出版社,2019(副主编)
5 .孙兆军,王芳,何俊等.中国北方典型盐碱地生态修复,科学出版社,2017(副主编)
6.孙兆军,王芳,韩磊等.西北地区水资源调控与高效利用技术,阳光出版社,2016(副主编)
7.王芳,庞妍,徐国华等.农业前沿技术与战略性新兴产业(第三十三章土地与养分资源高效利用),中国农业出版社,2011
8.同延安,高鹏程,张树兰,张金水,王芳,刘芬,庞妍,中国农业环境(下篇中国农业环境分论),科学出版社,2011
9.王小英,王芳等,测土配方施肥技术,陕西科学技术出版社,2011
10.马文娟,来源,刘剑,段敏,王芳,尹小芳,赵佐平,同延安,李文祥,周建斌.北方果树测土配方施肥技术(第四章梨树测土配方施肥技术),中国农业出版社,2011
成果转化与登记:
1.枸杞园土壤配植改良(发明专利号:ZL201810216860.7),合同号:2024640101000117
2.节水灌溉对宁夏干旱区枸杞园土壤活性有机碳库及碳排放的影响机制(2023).排名第1
3. AM真菌对贺兰山灌丛群落灌木-草本植物间养分传输与分配的作用机制(2023).排名第2
4.生物质能源植物柳枝稷引种试验示范研究(2018),排名第2
5.思壮赤菇规模化种植技术集成与示范(2018),排名第2
6.困难立地智能风光互补节水设备研制及其特色产业开发(2016),排名第10