4.7 Article

A water pricing model for urban areas based on water accessibility

期刊

JOURNAL OF ENVIRONMENTAL MANAGEMENT
卷 327, 期 -, 页码 -

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jenvman.2022.116880

关键词

Water price; Water accessibility; Citizen water use; SHRD model; Han river basin

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This study proposed a novel water pricing model, the Water Price at Grid-scale (WPG) model, which dynamically allocates water prices to fine grids for urban residents, spatially determining three different tiers of water prices. The results proved that the WPG model can more accurately price water resources than the current system, and has the potential to alleviate water shortage pressure and be integrated into smart city networks for efficient water resource management.
Water resource, with properties of scarcity, is one of the vital resource endowments. Like land resources, the prices of these resource endowments should be correlated to their locations to follow fair and reasonable principles. The current water price systems are mainly policy-oriented fixed regimes. And the water use was charged according to the regional-average situation with scarce consideration of the fine-scale geographical water accessibility. With a combination of the water accessibility and the current water pricing regime, this paper first proposed a novel water pricing model, the Water Price at Grid-scale (WPG) model, to dynamically allocate water prices to fine grids for urban residents. The WPG model was examined in the case study of the Han River Basin in the Hubei province of China. The specific results were: (1) the Pgrid of Tier I is between 0.66 and 3.94 yuan/m3, the Pgrid of Tier II is between 0.57 and 5.44 yuan/m3, and the Pgrid of Tier III is between 0.47 and 6.94 yuan/m3 in the study area. (2) the grids with more water acquisition generally have lower water prices than others and vice versa. (3) the average water prices in tiers obtained by the WPG model are generally higher than that derived from the current water pricing system. The results proved that the proposed WPG model spatially allocates the three-tier water prices into grids of urban areas. The WPG framework can be adopted in any society by involving its water price regimes and adjusting the scale of grids and the pricing year. This study provided a new viewpoint of domestic water pricing involving fine-scale water accessibility. The WPG model has great potential to ease water shortage pressure in water-limited societies and can be utilized and loaded into the current smart-city network for efficient and fine-scale water resource management.

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