教育部人文社会科学重点研究基地  |  中国CTTI智库来源单位 |  陕西高校新型智库

穆兰
基本概况

姓 名:穆兰

职 称:副研究员、博士生导师、加拿大UBC访问学者

研究方向:水资源可持续利用与绿色发展

电子邮件:mulan820706@snnu.edu.cn

办公地点:陕西师范大学长安校区教育博物馆西副楼N221

通讯地址:西安市长安区陕西师范大学42号信箱

个人简介
穆兰,2014年毕业于中国科学院大学获博士学位,同年进入陕西师范大学理论经济学博士后流动站做师资博士后,2017年进入陕西师范大学西北历史环境与经济社会发展研究院工作。2018年获陕西师范大学优秀青年学术骨干资助计划(第二批)。2019年9月至2020年9月受国家留学基金委公派出国留学项目资助赴加拿大UBC(不列颠哥伦比亚大学)做访问学者一年。《water》期刊客座主编,现主要从事环境经济学、水资源经济学研究。
获奖情况
2020年作为第二参与人完成的项目获陕西省科学院技术奖一等奖;
2018年12月参与撰写的《西安市多元化生态环境治理体系研究》荣获2018年度重点课题调研成果一等奖;
2015年3月,完成的《西安市农业水资源利用效率调查及节水战略研究》,被评为“西安市决策咨询奖”课题三等奖;
2014年6月,被评为“中国科学院大学朱李月华优秀博士奖”;
教学工作
西方经济学、人口资源与环境经济学硕士课程:发展经济学
代表性论著
1. Lan Mu, Chunxia Luo, Ying Li, Zongjia Tan, Shengrong Gao. ‘They adopt, I also adopt’: The neighborhood effects and irrigator farmers’ conversion to adopt water-saving irrigation technology. Agricultural Water Management. 2024, 305, 109141.  (中科院一区top)
2. Lan Mu, Yuan Wang, Binrui Xue. The Impacts of Agricultural Water Pricing on 
Sustainable Agricultural Production. Water Resources Management. 2024, 38: 1061-1078.  (JCR一区)
3.Wanping Yang, Muge Mou, Lan Mu*(通讯作者), Xuanwen Zeng. Are farmers willing to pay for low-carbon agriculture? Evidence from China. China Agricultural Economic Review. 2024. (中科院二区)
4. Mu L,Mou MG.,et al. Exploring preference and willingness for rural water pollution control: A choice 
experiment approach incorporating extended theory of planned behaviour.Journal of Environmental Management. 2023,332,117408.
5.Mu L, Johannus Janmaat, Joanne Taylor, Lauren Arnold. Comparing Climate 
Change Adaptation Intentions and Decisions of Agricultural Producers in Shaanxi, China and British Columbia, Canada. Mitigation and Adaptation Strategies for Global Change. 2023, 28 (8), 1-27.
6.Mu L, Yuan Wang, Hui Mao. Does agricultural insurance drive variations in carbon emissions in China? Evidence from a quasi-experiment. Polish Journal of Environmental Studies. 2023, 32 (1), 1-13.
7.Mu L,Zongjia Tan, Chunxia Luo.Exploring the contribution of the river chief system on controlling 
industrial water pollution under quasi‑natural experimental conditions.Environmental Science and Pollution Research. 2023.
8. Mu L.,Liu YH., et al. Alleviating water scarcity and poverty through water rights trading pilot policy: A quasi-natural experiment based approach. Science of the Total Environmental.2022, 823, 153318. 
9. Mu L.,Zhang XY., et al. The effectiveness of a water resource tax policy in improving water-use efficiency: a quasi-natural experiment-based approach. Water Policy. 2022, 24: 899-922.
10. Mu L.,Mou MG., et al.Does the water resources "fee to tax" policy alleviate water poverty? Evidence from a quasi-natural experiment.Water Supply. 2022,22:8465-8482.
11. Mu L., Wang Y.,et al. Interregional transverse space carbon compensation for agricultural production in China: carbon barget-based approach. Western China Studies. 2022,01.
12. Mu L, Fang L, et al. Urbanization-induced spatio-temporal variation of water resources utilization in northwestern China: A spatial panel model based approach. Ecological Indicators. 2021, 125, 107457.
13. Mu L, et al. Enhancing capacity building to climate adaptation and water conservation among Chinese young people. Environmental Science and Pollution Research. 2021. 
14. Mu L, et al. Identifying barriers and enablers for climate change adaptation of farmers in semi-arid north-western China. Sustainability. 2020, 12, 7494. 
15. Yan XC, Fang L, Mu L. How does the water-energy-food nexus work in developing countries? An empirical study of China. Science of the total environment. 2020, 716, 134791.
16. Qiao N, Fang L, Mu L. Evaluating the impacts of water resources technology progress on development and economic growth over the northwest, China. Plos One. 2020, 15 (3): e0229571.
17. Zhu SM, Liang YL, Mu L. 1-Methylcyclopropene on fruit quality of Se-Enriched grape during shelf life period. Agronomy. 2020, 10, 1411.
18. Mu L, et al. Assessing the impact of water price reform on farmers’ willingness to pay for agricultural water in northwest China. Journal of Cleaner Production. 2019, 234: 1072-1081
19. An X, Liang Y, Mu L, et al. Fruit quality components of balsam pear Momordica charantia, L.) and soil respiration in response to soil moisture under two soil conditions. Journal of Food Measurement & Characterization. 2017(2):1-11.
20. Mu L, Fang L. Exploring northwestern China's agricultural water saving strategy: analysis of water use efficiency based on SE-DEA model conducted in Xi'an, Shaanxi province. Water science and technology. 2016, 74(5):1106-1115.
21. Mu L, Fang L. Temporal and spatial variation of soil respiration under mulching in a greenhouse cucumber cultivation. Pesquisa agropecuaria brasileira. 2016, 51(7), 869-879.
22. Mu L, Fang L. Changes to Tomato Fruit Quality and Antioxidant Enzyme activities under Deficit Irrigation and Fertilizer Application in a Solar Greenhouse in Northwest China. Communication in soil science and plant analysis. 2016, 47(10): 1329-1341.
23. Mu L, Fang L. Effects of different mulching practices on the photosynthetic characteristics of hot pepper (Capsicum annuum L.) in a greenhouse in Northwest China. Acta Agriculturae Scandinavica, Section B - Plant Soil Science. 2015, 65 (8): 735-746. 
24. Mu L, Liang YL. Assessment of the soil organic carbon sink in a project for the conversion of farmland to forest land: a case study in Zichang county, Shaanxi, China. Plos One. 2014, 9(4):1-9.
25. Mu L, Liang YL, et al. Soil respiration of hot pepper (Capsicum annuum L.) under different mulching practices in a greenhouse, including controlling factors in China. Acta Agriculturae Scandinavica, Section B - Plant Soil Science. 2014, 64(1): 85-95. 
26. Mu L, Liang YL, et al. Using the DNDC model to compare soil organic carbon dynamics under varing crop rotation and fertilizer strategies. Spanish Journal of Agricultural research. 2014, 12(1): 265-276. 
27. Mu L, Liang YL, et al. The response of hot pepper (Capsicum annuum L.) in water use efficiency and soil environments to mulching practices under greenhouse. International Conference on Agriculture Science and Environment Engineering (ICASEE 2013). (EI收录)
28. Liang YL, Bao TL, Mu L. Soil Respiration and Photosynthesis of Leaves in Greenhouse Cultivation Cherry Tomato. Advances in Biological Sciences Research. 2016, 3, 231-233. (EI收录)
29. Liang YL, Bai CH, Mu L. Soil respiration in cucumber (Cucumis statirus L.) field under six crop rotations in solar greenhouse. Scientia Agicola. 2014, 71(4): 337-341. 
30. Liang YL, Luo AR, Mu L. Polices and Measures of Chinese Local Government on Grain-for-Green policy and desertification control. In: Tsunekawa A, Liu G, Yamanaka N, Du S, edtitors. Ecological Research Monographs. Springer: Dordrecht; P. 161-171.
31. 牟牧戈,穆兰*,汤鹤延。黄河流域水贫困评价及时空分异特征研究。人民黄河,2023,45:73-78.
32. 王缘,穆兰*。自贸试验区建设对外商投资的溢出效应——基于合成控制法的陕西实证。2022,33:37-47。
33. 王运昌,穆兰*。土地流转如何推动农业现代进程——基于中介效应模型的实证分析。农业与技术,2022,42:137-142。
34. 张笑琰,穆兰*。西北地区水资源生态环境系统服务功能量与价值量评估。农业与技术,2022,42:60-65。
35. 穆兰,方兰。水生态文明视阈下提升区域城镇化质量的机制与对策研究。生态经济,2016,32(4):18-23。
36. 穆兰,方兰。水生态文明视阈下我国新型城镇化发展研究。经济视角,2016,1:1-7。
37. 方兰,王浩,穆兰。西部地区水资源评价与分析报告。西部蓝皮书:中国西部发展报告(2015)-经济新常态下新的西部改革与发展。
主持或参与的科研项目
1. 主持国家自然科学青年基金项目:黄河流域农业水价改革效应测度、支付意愿与优化调控,2021-2023,在研;
2. 主持教育部人文社会科学青年基金研究项目:基于利益相关者的农业完全成本水价形成及效应机理研究,2017-2019;结项;
3. 主持陕西省社会科学基金项目:陕西省农业水价改革多维效应及政策优化研究,2022-2024,在研;
4. 主持陕西省创新能力支撑计划项目:陕西省农业水价改革效应测度、支付意愿与优化调控,2022-2023,在研;
5. 主持中央高校基本科研业务费专项资金资助项目:西北地区经济贫困与水贫困时空耦合机制研究,2021-2023,在研;
6. 主持中国博士后科学基金第58批面上一等资助:水权视域下的农业水价形成及传导机制研究,2015-2017;已结项;
7. 主持陕西省博士后资助项目二等资助:陕西省县域绿色经济差异化发展研究,2015-2017;已结项;
8. 主持陕西师范大学青年学术带头人及学术骨干资助计划项目:我国农业水价形成机制、传导效应及预警研究,2019-2021;在研;
9. 主持中央高校基本科研业务费专项资金资助项目:果蔬农户农药使用行为及控制研究,2015-2017;已结项;