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Evaluation on the integrated water resources management in China's major cities - Based on City Blueprint® Approach

机译:中国主要城市综合水资源管理评价 - 基于CityBluePrint®方法

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Though with abundant water resources in China, unevenly geographical and temporal distribution of water resources have constantly resulted in many severe water issues in various cities, such as inundation, drought, urban flooding, water shortage, water pollution, and inaccessibility of safe drinking water, in addition to the negative impacts of climate change. Intensive industrialization, fast urbanization, and prompt modernization have aggravated the water conflicts between different stakeholders. Furthermore, nearly 60% of Chinese population is agglomerated in urban area to exacerbate the water stress in cities, especially in megacities. In order to evaluate the performance of the integrated water resources management (IWRM) in major cities in China, and to reveal the key obstacles and challenges to the IWRM in these cities for future improvement, the modified City Blueprint (R) Approach, in combining with the hierarchical cluster analysis (HCA), were applied to examine the efficiency, effectiveness, and capability of the IWRM in 32 selected major cities in China, including 4 municipalities directly under the Central Government, 27 provincial capitals, and Shenzhen (a fast-emerging city located on the Pearl River Delta). The City Blueprint (R) Approach, consisting of three complementary frameworks, is a systematic analytic and diagnostic tool to assess the major challenges to cities (Trends and Pressures Framework, TPF), to appraise the management of urban water cycle (City Blueprint Framework, CBF), and to identify the paths of water governance improvement (Governance Capacity Framework, GCF). Significant differences have been observed between various districts and different cities. For TPF, in general, environmental pressures increase as the city scale expands, where river peak discharges and urban drainage flood are two common environmental challenges encountered by all cities. Social pressures decline and the financial pressures slightly decrease as city scale enlarged, where economic pressure and education rate are dominant indicators within each city category, respectively. For CBF, all cities have realized a great achievement in providing good basic water services, in addition to excellent performance of five indicators, drinking water quality, access to drinking water, access to sanitation, wastewater treatment, and management and action plans. In contrast, nutrient and energy recovery, public participation, and solid waste recycling, are the most critical issues to be resolved by all cities. For GCF, higher score in Enabling symbolizes the good performance of governance capacity to result in well management and action plans. Unfortunately, low score in Knowing, especially in the condition of useful knowledge, has caused the poor performance of public participation. Through HCA, the similarities and disparities between cities within diverse city categories were also revealed. In order to enhance the IWRM in major cities in China, various recommendations for future improvement were then provided, accordingly. (C) 2020 Elsevier Ltd. All rights reserved.
机译:虽然中国的水资源丰富,但水资源的不均格地理和时间分布不断导致各个城市的许多严重的水问题,如淹没,干旱,城市洪水,水资源短缺,水污染,安全饮用水可接近,除了气候变化的负面影响。强化工业化,快速城市化和及时现代化加剧了不同利益相关者之间的水冲突。此外,近60%的中国人口在城市地区凝聚着,加剧了城市的水分压力,特别是在巨型物质上。为了评估我国主要城市综合水资源管理(IWRM)的表现,揭示了这些城市IWRM在未来改进中的关键障碍和挑战,改进的城市蓝图(R)方法,结合通过分层集群分析(HCA),应用于审查IWRM在中国选定的主要城市的效率,有效性和能力,包括直接在中央政府,27个省级资本和深圳市中心的4个市政当局(快速)新兴市位于珠江三角洲)。由三个互补框架组成的城市蓝图(R)方法是一个系统的分析和诊断工具,可以评估城市(趋势和压力框架,TPF)的主要挑战,以评估城市水循环管理(城市蓝图框架, CBF),并识别水治理改善的路径(治理能力框架,GCF)。各地区和不同城市之间观察到了显着差异。对于TPF,一般来说,随着城市规模的扩展,环境压力增加,河峰排放和城市排水洪水是所有城市遇到的两个共同的环境挑战。社会压力下降,金融压力略有下降,因为城市规模放大,经济压力和教育率分别是每个城市类别的主要指标。对于CBF而言,所有城市都实现了提供良好的基本水服务的巨大成就,除了优秀的五个指标,饮用水质量,饮用水,卫生,卫生,污水处理和管理和行动计划的表现之外,还提供了良好的基本水服务。相比之下,营养和能源回收,公众参与和固体废物回收,是所有城市最重要的问题。对于GCF,更高的分数使得能够象征良好的治理能力表现,从而导致良好的管理和行动计划。不幸的是,在知识的情况下,低得分,特别是在有用知识的条件下,导致公众参与的差。通过HCA,各种城市类别中的城市之间的相似性和差异也被揭示。为了加强中国主要城市的IWRM,因此提供了未来改进的各种建议。 (c)2020 elestvier有限公司保留所有权利。

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