重庆师范大学 经济与管理学院,重庆,401331
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王江婷, 赖苹, 周小琛. 长江中游地区水资源生态足迹时空分布及可持续利用[J]. 水土保持通报, 2024,44(6):129-139.
Wang Jangting, Lai Ping, Zhou Xiaochen. Spatiotemporal Distribution and Sustainable Utilization of Water Resources Ecological Footprint in Middle Reaches of Yangtze River[J]. Bulletin of Soiland Water Conservation, 2024, 44(6): 129-139.
王江婷, 赖苹, 周小琛. 长江中游地区水资源生态足迹时空分布及可持续利用[J]. 水土保持通报, 2024,44(6):129-139. DOI: 10.13961/j.cnki.stbctb.2024.06.014.
Wang Jangting, Lai Ping, Zhou Xiaochen. Spatiotemporal Distribution and Sustainable Utilization of Water Resources Ecological Footprint in Middle Reaches of Yangtze River[J]. Bulletin of Soiland Water Conservation, 2024, 44(6): 129-139. DOI: 10.13961/j.cnki.stbctb.2024.06.014.
[目的] 探究长江中游地区水资源生态足迹时空变化及可持续利用,为长江中游地区及其他省市、城市群或流域地区的水资源可持续利用提供决策参考。[方法] 选取长江中游地区覆盖的湖北、湖南和江西3省作为研究对象,以2011—2021年作为研究时段,运用水资源生态足迹模型对3省的生态足迹等相关指标进行时空分析,并基于PSR模型框架构建长江中游地区水资源可持续利用评价指标体系。[结果] ①3省的人均水资源生态足迹和生态承载力总体都呈上升趋势,且生态承载力都高于生态足迹,全部实现生态盈余。江西省的人均水资源生态盈余最高,介于3.186~7.966之间;湖北省的人均水资源生态盈余最低,介于0.304~2.603之间。②3省各用水账户的生态足迹所占比例最大的是生产用水,生活用水次之;生态环境用水占比虽然最小,但是上升幅度最大,其中湖北省的人均生态环境用水足迹上升最明显。③万元GDP水资源生态足迹呈现明显下降趋势,其中江西省最高,湖北省最低,三者之间的差距呈逐年缩小态势。④3省水资源可持续利用的压力指数、状态指数和响应指数整体呈现下降、上升和上升的趋势;综合评价指数都处于波动中上升的趋势,但上升幅度不大,指数值总体都不高。[结论] 3省需要继续加大对生产用水和生活用水合理使用的管理,进一步鼓励生态环境用水的使用,同时加大对实现水资源可持续利用措施的推进,以此提高水资源的可持续利用水平。
[Objective] The spatiotemporal changes and sustainable utilization of water resources ecological footprint were explored in the middle reaches of the Yangtze River to provide decision-making references for the sustainable utilization of water resources in this region and in other provinces
metropolitan areas
and river basins. [Methods] This study selected the Hubei
Hunan
and Jiangxi provinces in the middle reaches of the Yangtze River from 2011 to 2021 as the research subjects. Employing the water resource ecological footprint model
a spatiotemporal analysis was conducted on the ecological footprint and related indicators of the three provinces. Based on the pressure-state-response model framework
an evaluation index system for sustainable water resource utilization in the middle reaches of the Yangtze River region was developed. [Results] ① The per-capita water resource ecological footprint and ecological carrying capacity of the three provinces showed an overall increasing trend
with the ecological carrying capacity exceeding the ecological footprint
resulting in an overall ecological surplus. Jiangxi Province had the highest per-capita ecological surplus of water resources
ranging from 3.186 to 7.966
whereas Hubei Province had the lowest
ranging from 0.304 to 2.603. ② The ecological footprint of each water account in the three provinces was predominantly industrial followed by domestic. Although ecological environmental water had the smallest share
it showed the most significant increase
particularly in Hubei Province. ③ The ecological footprint of water resources per ten thousand GDP exhibited a significant downward trend
with Jiangxi Province having the highest value and Hubei Province having the lowest
and the gap between the two gradually narrowed each year. ④ The pressure
state
and response indices for sustainable water resource utilization in the three provinces generally exhibited declining
rising
and increasing trends
respectively. The comprehensive evaluation indices exhibited a fluctuating upward trend; however
the rate of increase was modest and the overall index values remained relatively low. [Conclusion] Continued efforts are required to enhance the rational use of water for industrial and domestic purposes
promote the utilization of ecological and environmental water
and develop advanced measures to achieve sustainable water resource utilization. These findings can serve as a decision-making reference for water resource sustainability in the middle reaches of the Yangtze River and other provinces
city clusters
or basin areas.
Rees W E. Ecological footprints and appropriated carrying capacity: What urban economics leaves out [J]. Environment and Urbanization, 1992,4(2):121-130.
徐中民,张志强,程国栋.甘肃省1998年生态足迹计算与分析[J].地理学报,2000,55(5):607-616. Xu Zhongmin, Zhang Zhiqiang, Cheng Guodong. The calculation and analysis of ecological footprints of Gansu Province [J]. Acta Geographica Sinica, 2000,55(5):607-616.
黄林楠,张伟新,姜翠玲,等.水资源生态足迹计算方法[J].生态学报,2008,28(3):1279-1286. Huang Linnan, Zhang Weixin, Jiang Cuiling, et al. Ecological footprint method in water resources assessment [J]. Acta Ecologica Sinica, 2008,28(3):1279-1286.
谭秀娟,郑钦玉.我国水资源生态足迹分析与预测[J].生态学报,2009,29(7):3559-3568. Tan Xiujuan, Zheng Qinyu. Dynamic analysis and forecast of water resources ecological footprint in China [J]. Acta Ecologica Sinica, 2009,29(7):3559-3568.
孙才志,张智雄.中国水生态足迹广度、深度评价及空间格局[J].生态学报,2017,37(21):7048-7060. Sun Caizhi, Zhang Zhixiong. Assessment of water ecological footprint size, depth, and spatial pattern in China [J]. Acta Ecologica Sinica, 2017,37(21):7048-7060.
Li Jiahong, Lei Xiaohui, Fu Qiang, et al. Multi-scale research of time and space differences about ecological footprint and ecological carrying capacity of the water resources [J]. Applied Water Science, 2018,8:22.
Wang Huan, Huang Jiejun, Zhou Han, et al. Analysis of sustainable utilization of water resources based on the improved water resources ecological footprint model: A case study of Hubei Province, China [J]. Journal of Environmental Management, 2020,262:110331.
岳晨,刘峰,杨柳,等.北京市2010—2019年水资源生态足迹和生态承载力[J].水土保持通报,2021,41(3):291-295.Yue Chen, Liu Feng, Yang Liu, et al. Ecological footprint and ecological carrying capacityof water resources in Beijing City during 2010—2019[J]. Bulletin of Soil and Water Conservation, 2021,41(3):291-295.
岳晨,李凡,付路路,等.天津市水资源生态足迹研究[J].水文,2022,42(6):56-60. Yue Chen, Li Fan, Fu Lulu, et al. Research on the ecological footprint and ecological carrying capacity of water resources in Tianjin [J]. Journal of China Hydrology,2022,42(6):56-60.
贾诗琪,张鑫,彭辉,等.湖北省水生态足迹时空动态分析[J].长江科学院院报,2022,39(3):27-32. Jia Shiqi, Zhang Xin, Peng Hui, et al. Spatio-temporal dynamics of water ecological footprint in Hubei Province [J]. Journal of Yangtze River Scientific Research Institute,2022,39(3):27-32.
卢亚丽,徐帅帅,沈镭.基于胡焕庸线波动的长江经济带水资源环境承载力动态演变特征[J].自然资源学报,2021,36(11):2811-2824. Lu Yali, Xu Shuaishuai, Shen Lei. The dynamic evolution of water resources environmentalcarrying capacity in the Yangtze River economic belt based on the fluctuation of Hu Line [J]. Journal of Natural Resources, 2021,36(11):2811-2824.
陈义忠,乔友凤,卢宏玮,等.长江中游城市群水—碳—生态足迹变化特征及其平衡性分析[J].生态学报,2022,42(4):1368-1380. Chen Yizhong, Qiao Youfeng, Lu Hongwei, et al. Water-carbon-ecological footprint change characteristics and its balance analysis in the Triangle of Central China [J]. Acta Ecologica Sinica, 2022,42(4):1368-1380.
唐莲,刘子西,黑正军,等.宁夏沿黄城市带不同区域碳水压力驱动机制研究[J].安全与环境学报,2023,23(8):2931-2938. Tang Lian, Liu Zixi, Hei Zhengjun, et al. Study on the driving mechanism of carbon-water pressure in different regions of the urban belt along the Yellow River in Ningxia [J]. Journal of Safety and Environment, 2023,23(8):2931-2938.
张婉玲,邹磊,夏军,等. 长江中游城市群水资源生态足迹时空演变及其驱动因素分析[J]. 长江流域资源与环境,2023,32(1):83-92. Zhang Wanling, Zou Lei, Xia Jun, et al. Spatial-temporal evolution and driving factorsanalysis of water resources ecological footprint of urban agglomeration in middle reaches of Yangtze River [J]. Resources and Environmentin the Yangtze Basin, 2023,32(1):83-92.
许典子,张万顺,彭虹,等.三峡库区水资源生态足迹及承载力时空演变研究[J].人民长江,2019,50(5):99-106.Xu Dianzi, Zhang Wanshun, Peng Hong, et al. Spatio-temporal analysis of water resources ecological footprint and ecological carrying capacity in Three Gorges Reservoir area[J]. Yangtze River, 2019,50(5):99-106.
邵骏,卢满生,杜涛,等.长江流域水资源生态足迹及其驱动因素[J].长江科学院院报,2021,38(12):19-24. Shao Jun, Lu Mansheng, Du Tao, et al. Water resources ecological footprint in Yangtze River basin and its driving factors[J]. Journal of Yangtze River Scientific Research Institute, 2021,38(12):19-24.
张羽,左其亭,曹宏斌,等.沁蟒河流域水资源生态足迹时空变化特征及均衡性分析[J].水资源与水工程学报,2022,33(3):50-57. Zhang Yu, Zuo Qiting, Cao Hongbin, et al. Spatio-temporal variation characteristics and equilibrium analysis of water resourcesecological footprint in the Qinmang River basin [J]. Journal of Water Resources and Water Engineering, 2022,33(3):50-57.
赵子萌,曹永强,常志冬,等.黄河沿线9省区水土资源生态承载力耦合协调分析[J].水资源保护,2023,39(6):121-129. Zhao Zimeng, Cao Yongqiang, Chang Zhidong, et al.Coupling coordination analysis of ecological carrying capacity of water and land resources in nine provinces along the Yellow River [J].Water Resources Protection,2023,39(6):121-129.
李雨欣,薛东前,宋永永.中国水资源承载力时空变化与趋势预警[J].长江流域资源与环境,2021,30(7):1574-1584. Li Yuxin, Xue Dongqian, Song Yongyong. Spatio-temporal characteristics and trend warnings of water resources carrying capacity in China [J]. Resources and Environment in the Yangtze Basin, 2021,30(7):1574-1584.
安慧,范历娟,吴海林,等.基于BP神经网络的淮河流域水生态足迹分析与预测[J].长江流域资源与环境,2021,30(5):1076-1087. An Hui, Fan Lijuan, Wu Hailin, et al. Analysis and prediction of water ecological footprint of Huaihe River basin based on BP neural network [J]. Resources and Environment in the Yangtze Basin, 2021,30(5):1076-1087.
魏亚茹,朱永明,康艳青.基于组合预测模型的沿黄省区水资源生态足迹研究[J].水文,2022,42(6):52-55. Wei Yaru, Zhu Yongming, Kang Yanqing. Water resources ecological footprint research based on the combination forecast model of the provinces along the Yellow River basin [J]. Journal of China Hydrology, 2022,42(6):52-55.
宾零陵,蒋睿文,曹永强,等.京津冀水资源生态足迹动态变化与预测[J].水资源保护,2023,39(5):32-38. Bin Lingling, Jiang Ruiwen, Cao Yongqiang, et al. Dynamic change and prediction of ecological footprint of water resources in Beijing-Tianjin-Hebei region [J]. Water Resources Protection, 2023,39(5):32-38.
王广州,窦身堂,凡姚申,等.黄河下游地区水资源生态足迹时空分析与预测[J].水土保持通报,2023,43(1):117-123. Wang Guangzhou, Dou Shentang, Fan Yaoshen, et al. Spatiotemporal analysis and prediction of ecological footprint of water resources in lower reaches of Yellow River basin [J]. Bulletin of Soil and Water Conservation,2023,43(1):117-123.
李逢港,刘伟,董战峰,等.四川省水资源生态足迹及可持续利用综合评价[J].环境污染与防治,2023,45(2):245-249. Li Fenggang, Liu Wei, Dong Zhanfeng, et al. Comprehensive evaluation of water resources ecological footprint and sustainable utilization in Sichuan Province [J]. Environmental Pollution & Control, 2023,45(2):245-249.
Rapport D J, Singh A. An Ecohealth-based framework for state of environment reporting [J]. Ecological Indicators, 2006,6(2):409-428.
赵敏敏,何志斌,蔺鹏飞,等.基于压力—状态—响应模型的黑河中游张掖市生态安全评价[J].生态学报,2021,41(22):9039-9049. Zhao Minmin, He Zhibin, Lin Pengfei, et al. Ecological security evaluation of Zhangye City in the middle reachesof the Heihe River based on pressure-state-response model [J]. Acta Ecologica Sinica, 2021,41(22):9039-9049.
李港,陈诚,姚斯洋,等.基于压力—状态—响应和物元可拓模型的城市河流健康评价[J].生态学报,2022,42(9):3771-3781. Li Gang, Chen Cheng, Yao Siyang, et al. Health assessment of urban river based on pressure-state-response and matter-element extension model [J]. Acta Ecologica Sinica, 2022,42(9):3771-3781.
陈志芳,李晴.基于PSR模型的政府环境绩效审计评价研究:以滇池治理项目为例[J].科技与经济,2019,32(1):106-110. Chen Zhifang, Li Qing. Research on the government environmental performance auditing evaluation based on PSR model:Taking Dianchi Lake pollution control project as an example [J]. Science & Technology and Economy, 2019,32(1):106-110.
李重阳,江磊,刘兆香,等.中国大气污染防治技术推广效果评价:基于PSR评价模型[J].科技管理研究,2021,41(8):209-214. Li Chongyang, Jiang Lei, Liu Zhaoxiang, et al. Effect evaluation of air pollution control technology extension in China:Based on PSR assessment model [J]. Science and Technology Management Research, 2021,41(8):209-214.
孙小祥,秦艺娟.基于PSR模型的城市土地集约利用评价研究:以苏州市为例[J].西南大学学报(自然科学版),2021,43(4):100-108. Sun Xiaoxiang, Qin Yijuan. An evaluation study of urban land intensive utilization in Suzhou based on PSR model [J]. Journal of Southwest University (Natural Science Edition), 2021,43(4):100-108.
苗欣然,李泽红,王梦媛.粮食供应安全下东北黑土区耕地利用系统韧性时空演变:以齐齐哈尔市为例[J].资源科学,2023,45(9):1801-1816. Miao Xinran, Li Zehong, Wang Mengyuan. Spatiotemporalchanges of cultivated land use system resilience in the black soil region of Northeast China under food supply security: A case study of Qiqihar City [J]. Resources Science, 2023,45(9):1801-1816
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