
虚拟水流视角下西北地区农业水资源安全格局与调控
张家欣, 邓铭江, 李鹏, 李占斌, 黄会平, 时鹏, 冯朝红
中国工程科学 ›› 2022, Vol. 24 ›› Issue (1) : 131-140.
虚拟水流视角下西北地区农业水资源安全格局与调控
Security Pattern and Regulation of Agricultural Water Resources in Northwest China from the Perspective of Virtual Water Flow
西北地区在我国经济建设、社会稳定、国土安全方面都具有极其重要的战略地位,但水资源短缺、生态环境脆弱,当地经济发展与居民生活质量改善受制于稀缺的水资源。本文基于水足迹和虚拟水视角,分析了西北地区2000—2018 年农业生产和贸易特征,以此明确虚拟水流动对当地水资源的影响。研究数据表明,2000—2018 年西北地区农作物生产水足迹呈波动上升趋势;虚拟水流出规模随着水果、棉花输出量的增大而逐渐增加,2018 年水果、棉花的虚拟水输出量为3.212×1011 m3,占到作物生产水足迹总量的69.8 %;黄河流域是西北地区虚拟水的主要流入区,“奇策线”西北部是西北地区虚拟水的主要流出区。鉴于西北地区水资源严重短缺,而水果、棉花种植更多用于贸易以期带动经济的现状,优化作物种植和虚拟水贸易结构并与跨流域调水相结合,是实现实体水– 虚拟水循环调控、缓解水资源供需矛盾、保障区域水安全的关键措施。
Northwest China is strategically crucial for China’s economic development, social stability, and national defense security. However, the shortage of water resources and its fragile ecological environment have been hindering local economic development and life quality improvement for local residents. In this study, we analyze the characteristics of agricultural production and trade in Northwest China from 2000 to 2018 from the perspective of water footprint and virtual water, and clarifies the impact of virtual water flow on local water resources. Research shows that the water footprint regarding crop production in Northwest China showed a fluctuating upward trend from 2000 to 2018. The outflow scale of virtual water gradually increases alongside with the transfer-out of fruits and cotton. The outflow of virtual water regarding fruits and cotton in Northwest China was 3.212 × 1011 m3 in 2018, accounting for 69.8 % of the total water footprint regarding crop production. The Yellow River Basin is the primary inflow area of virtual water from Northwest China, and the region northwest to the "Qice line" is the primary outflow area of virtual water. Water shortage is severe in Northwest China and fruit and cotton are planted for trade to drive economic growth. Therefore, optimizing the crop planting and virtual water trade structures and encouraging inter-basin water transfer are key measures to regulate physical–virtual water cycle, alleviate the contradiction between water supply and demand, and ensure regional water security.
西北地区 / 农作物生产和贸易 / 水安全 / 粮食安全 / 实体水–虚拟水循环调控 / 区域协调发展
Northwest China / crop production and trade / water security / food security / regulation of physical and virtual water cycle / regional coordinated development
[1] |
邓铭江. 中国西北“水三线”空间格局与水资源配置方略 [J]. 地 理学报, 2018, 73(7): 1189–1203. Deng M J. “Three water lines” strategy: Its spatial patterns and effects on water resources allocation in Northwest China [J]. Journal of Geographical Sciences, 2018, 73(7): 1189–1203.
|
[2] |
郜延华. 石羊河流域水污染防治案例研究 [D]. 兰州: 兰州大学 (硕士学位论文), 2008. Gao Y H. Study about water pollution control case of shiyang river basin [D]. Lanzhou: Lanzhou University(Master’s thesis), 2008.
|
[3] |
宋万祯. 黔中水利枢纽工程区域水资源演变规律及水资源配置 研究 [D]. 天津: 天津大学(博士学位论文), 2016. Song W Z. The Research on runoff evolution and allocation of water resources in area of Qianzhong water diversion project [D]. Tianjin: Tianjin University(Doctoral dissertation), 2016.
|
[4] |
Allan J A. Fortunately there are substitutes for water otherwise our hydro political future would be impossible [C]. Southampton: Proceedings of the Conference on Priorities for Water Resources Allocation and Management, 1992.
|
[5] |
钱海洋. 中国区域间粮食贸易量化方法及虚拟水流动格局评价 [D]. 西安: 西北农林科技大学(硕士学位论文), 2020. Qian H Y. Development of quantitative method of inter-provincial grain trade and evaluation of virtual water flow pattern in China [D]. Xi’an: Northwest A & F University(Master’s thesis), 2020.
|
[6] |
陈洪星, 李江月, 杨德刚, 等. 水足迹视角下的农业生产空间布 局——以天山北麓农产品主产区为例 [J]. 中国科学院大学学 报, 2021, 38(2): 240–251. Chen H X, Li J Y, Yang D G, et al. Spatial distribution of agricultural production from perspective of water footprint: A case study of north-piedmont major agriculture production regions of Tianshan Mountains, Xinjiang [J]. Journal of University of Chinese Academy of Sciences, 2021, 38(2): 240–251.
|
[7] |
张沛, 龙爱华, 海洋, 等. 1988—2015年新疆农业用水时空变化 与政策驱动研究——基于农作物水足迹的统计分析 [J]. 冰川冻 土, 2021, 43(1): 242–253. Zhang P, Long A H, Hai Y, et al. Spatiotemporal variations and driving forces of agricultural water consumption in Xinjiang during 1988—2015: Based on statistical analysis of crop water footprint [J]. Journal of Glaciology and Geocryology, 2021, 43(1): 242–253.
|
[8] |
孙才志, 陈丽新, 刘玉玉. 中国农作物绿水占用指数估算及时空 差异分析 [J]. 水科学进展, 2010, 21(5): 637–643. Sun Z C, Chen L X, Liu Y Y. Spatial and temporal variation of crops green water occupancy index in China [J]. Advances in Water Science, 2010, 21(5): 637–643.
|
[9] |
王玉宝, 刘显, 史利洁, 等. 西北地区水资源与食物安全可持续 发展研究 [J]. 中国工程科学, 2019, 21(5): 38–44. Wang Y B, Liu X, Shi L J, et al. Sustainable development of water resources and food security in Northwest China [J]. Strategic Study of CAE, 2019, 21(5): 38–44.
|
[10] |
赵东升, 高璇, 吴绍洪, 等. 基于自然分区的1960—2018年中国 气候变化特征 [J]. 地球科学进展, 2020, 35(7): 750–760. Zhao D S, Gao X, Wu S H, et al. Trend of climate variation in China from 1960 to 2018 based on natural regionalization [J]. Advances in Earth Science, 2020, 35(7): 750–760.
|
[11] |
李新生. 京津冀农业水足迹协调度与调控研究 [D]. 郑州: 华北 水利水电大学(硕士学位论文), 2020. Li X S. Study on coordination and regulation of agricultural water footprint in Beijing, Tianjin and Hebei [D]. Zhengzhou: North China University of Water Resources and Electric Power(Master’s thesis), 2020.
|
[12] |
秦娅青. 水足迹视角下河南省农业水土资源匹配研究 [D]. 焦 作: 河南理工大学(硕士学位论文), 2019. Qin Y Q. Study on the matching of agricultural water and soil resources in Henan Province from the perspective of water footprint [D]. Jiaozuo: Henan University of Technology(Master’s thesis), 2019.
|
[13] |
Hoekstra A Y, Chapagain A K, Alday M M, et al. The water footprint assessment manual: Setting the global standard [M]. London: Earthscan, 2011.
|
[14] |
李新生, 黄会平, 韩宇平, 等. 京津冀农业虚拟水流动及对区域水 资源压力影响研究 [J]. 南水北调与水利科技, 2019, 17(2): 40–48. Li X S, Huang H P, Han Y P, et al. Agriculture virtual flow and its impacts on regional water resources in Beijing-Tian-Jin-Hebei region [J]. South-to-North Water Transfers and Water Science & Technology, 2019, 17(2): 40–48.
|
[15] |
史利洁, 吴普特, 王玉宝, 等. 基于作物生产水足迹的陕西省水 资源压力评价 [J]. 中国生态农业学报, 2015, 23(5): 650–658. Shi L J, Wu P T, Wang Y B, et al. Assessment of water stress in Shaanxi Province based on crop water footprint [J]. Chinese Journal of Eco-Agriculture, 2015, 23(5): 650–658.
|
[16] |
李天奇. “一带一路”背景下达州市构建区域商贸物流中心发展 战略及竞争博弈研究 [D]. 成都: 西南交通大学(硕士学位论文), 2019. Li T Q. A Study on the development strategy and competition game of the construction of the regional commercial and trade logistics center in Dazhou City under the background of the “One Belt and One Road” [D]. Chengdu: Southwest Jiaotong University(Master’s thesis), 2019.
|
[17] |
杨朝晖, 王婷, 游进军, 等. 我国用水演变趋势及驱动效应分析 [J]. 中国水利, 2020 (21): 26–28. Yang Z H, Wang T, You J J, et al. Evolution of water consumptions and analysis of driving effect in China [J]. China Water Resources, 2020 (21): 26–28.
|
/
〈 |
|
〉 |