[1] Cheng JY, You QL, Zhou YQ, et al. Increasing cloud water resource in a warming world. Environmental Research Letters, 2021, 16: 124067 [2] Kattel GR. State of future water regimes in the world's river basins: Balancing the water between society and nature. Critical Reviews in Environmental Science and Technology, 2019, 49: 1107-1133 [3] Jia F, Hubbard M, Zhang TY, et al. Water stewardship in agricultural supply chains. Journal of Cleaner Production, 2019, 235: 1170-1188 [4] Saccon P. Water for agriculture, irrigation management. Applied Soil Ecology, 2018, 123: 793-796 [5] 康绍忠. 中国农业节水十年:成就、挑战及对策. 中国水利, 2024(10): 1-9 [6] Hoekstra AY, Hung PQ. Virtual Water Trade: A Quantification of Virtual Water Flows between Nations in Relation to International Crop Trade. Value of Water Research Report Series No. 12. Delft, Netherlands: IHE, 2003 [7] 张瑛, 顾嘉怡, 王琛, 等. 2011—2020年长江中下游地区主要粮食作物生产碳足迹. 应用生态学报, 2023, 34(12): 3364-3372 [8] 金谦, 桂东伟, 高霄鹏, 等. 新疆主要农作物生产水足迹研究. 干旱地区农业研究, 2018, 36(6): 243-249 [9] Hogeboom RJ. The water footprint concept and water's grand environmental challenges. One Earth, 2020, 2: 218-222 [10] 易武英, 苏维词, 喻理飞, 等. 基于STIRPAT扩展模型平塘县农业水足迹变化及驱动机制研究. 水资源与水工程学报, 2018, 29(5): 243-248 [11] Zhu H, Zhang Q, Xu LG, et al. Dynamics of the agricultural water footprint and the decoupling associations with agricultural economic growth in Hangzhou, China. Water, 2023, 15: 3705 [12] Fu MR, Wang QJ, Wang J, et al. Comprehensive assessment of water footprints and water scarcity pressure for main crops in Shandong Province, China.Sustainability, 2019, 11: 1856 [13] Wang JT, Dong XL, Zhang XL, et al. Comparing water related indicators and comprehensively evaluating cropping systems and irrigation strategies in the North China Plain for sustainable production. Ecological Indicators, 2023, 147: 110014 [14] Yang Y, Gao HH. Spatiotemporal evolution characteristics and influencing factors of the crop water use efficiency in watersheds based on the water footprint. Environmental Monitoring and Assessment, 2024, 196: 620 [15] Li XC, Chen D, Cao XC, et al. Assessing the components of, and factors influencing, paddy rice water footprint in China. Agricultural Water Management, 2020, 229: 105939 [16] 李甜. 1985—2014年长江中下游地区农业气象灾害时空分布及对农业生产影响研究. 硕士论文. 武汉: 华中师范大学, 2022 [17] 国家发展和改革委员会价格司. 全国农产品成本收益资料汇编. 北京: 中国统计出版社, 1990-2019 [18] Hoekstra AY. 刘俊国, 曾昭, 赵乾斌, 等, 译. 水足迹评价手册. 北京: 科学出版社, 2012: 2-3 [19] 江激宇, 刘嘉铭, 张士云. 淮河流域谷物生产水足迹及用水效率研究. 农业资源与环境学报, 2024, 41(2): 371-382 [20] Wu MY, Li YY, Xiao JF, et al. Blue, green, and grey water footprints assessment for paddy irrigation-drainage system.Journal of Environmental Management, 2022, 302: 114116 [21] 杨伟歆. 黑龙江省水田水土资源可持续利用评价指标体系构建. 博士论文. 哈尔滨: 东北农业大学, 2023 [22] 国务院第一次全国污染源普查领导小组办公室. 第一次全国污染源普查:农业污染源肥料流失系数手册. 北京: 国务院第一次全国污染源普查领导小组办公室, 2009 [23] 国家环境保护总局, 国家质量监督检验检疫总局. 地表水环境质量标准. 北京: 国家环境保护总局, 国家质量监督检验检疫总局, 2002 [24] 杨润丁, 杨冬民. 基于LMDI模型的湖北省农业水足迹时空分布与驱动力研究. 中国水土保持科学, 2024, 22(1): 106-113 [25] 杨洋, 丁镭, 曾克峰. 基于LMDI模型的广西水足迹驱动力分析. 国土资源科技管理, 2017, 34(2): 20-29 [26] 杜鹃. 通径分析在Excel和SPSS中的实现. 陕西气象, 2012(1): 15-18 [27] Wang Q, Huang K, Liu H, et al. Factors affecting crop production water footprint: A review and meta-analysis. Sustainable Production and Consumption, 2023, 36: 207-216 [28] 徐群, 赵亮. 近136年(1885—2020年)长江中下游伏旱期划分及其演变分析. 大气科学, 2024, 48(3): 1072-1094 [29] Chukalla AD, Krol MS, Hoekstra AY. Grey water footprint reduction in irrigated crop production: Effect of nitrogen application rate, nitrogen form, tillage practice and irrigation strategy. Hydrology and Earth System Sciences, 2018, 22: 3245-3259 [30] Lu Y, Zhang XY, Chen SY, et al. Changes in water use efficiency and water footprint in grain production over the past 35 years: A case study in the North China Plain. Journal of Cleaner Production, 2016, 116: 71-79 [31] 姜秋香, 李鑫莹, 王子龙, 等. 黑龙江省农业水足迹时空分布及用水效率分析. 东北农业大学学报, 2020, 51(11): 87-96 |