Integrated Exploitation of Rainwater and Groundwater: A Strategy for Water Self-Sufficiency in Ca Mau Province of the Mekong Delta

Author:

Vinh Dang Hoa1ORCID,Tran Dung Duc2ORCID,Cham Dao Dinh34,Hang Phan Thi Thanh34ORCID,Man Duong Ba1,Mon Danh1,Hai Tung Luu1,Kiem Le Van5,Nguyen Thien Duc2ORCID,Tuyen Duong Thi Ngoc6

Affiliation:

1. HCMC Institute of Resources Geography, Tay Nguyen Institute of Scientific Research, Vietnam Academy of Science and Technology, Ho Chi Minh City 700000, Vietnam

2. Center of Water Management and Climate Change, Institute of Environment and Natural Resources, Vietnam National University Ho Chi Minh City, Ho Chi Minh City 700000, Vietnam

3. Graduate University of Science and Technology, Vietnam Academy of Science and Technology, Hanoi 100000, Vietnam

4. Institute of Geography, Vietnam Academy of Science and Technology, Hanoi 100000, Vietnam

5. Southern Institute for Water Resources Research, Ho Chi Minh City 700000, Vietnam

6. Department of Natural Resources and Environment of Ca Mau Province, Ca Mau 970000, Vietnam

Abstract

Groundwater sources have been exploited excessively for numerous purposes worldwide, leading to increasingly severe depletion. However, the replenishment of groundwater sources has not usually been a focus in economically and socially underdeveloped countries and regions. In coastal provinces of the Vietnamese Mekong Delta (VMD), rural areas are facing difficulties in accessing fresh water due to shortages from the water supply plant and excessive use of groundwater, highlighting an urgent need for sustainable development solutions. Our study first conducted interviews with 200 households in Ca Mau Province of the VMD to identify the current situation and the challenges and obstacles of rainwater harvesting and to find sustainable and proactive solutions. We then analyzed daily rainfall data from 10 meteorological stations to construct four scenarios of the water balance method: (i) potential rainwater harvesting based on existing roof area; (ii) optimal scale of storage tank and catchments for different levels of water usage; (iii) tank scale utilizing rainwater entirely during the rainy season and basic needs during the dry season; and (iv) integrated water supply between rain and groundwater. The results showed that using rainwater entirely for domestic water supply requires large storage tank capacities, making these scenarios difficult to achieve in the near future. Our research introduces a novel integrated water supply approach to storing rain and groundwater that has demonstrated high effectiveness and sustainability. With existing tank capacities (0.8 m3 per person), rainwater could only meet over 48% (14 m3 per year) of the water demand while requiring 14.8 m3 of additional groundwater extraction. With a tank capacity of 2.4 m3 per person, ensuring rainwater harvesting meets basic demand, harvested rainwater could satisfy 64% of the demand, with artificial groundwater supplementation exceeding 1.79 times the required extraction, while excess rainwater discharge into the environment would be minimal. Our research results not only provide potential solutions for rainwater and groundwater collection to supplement sustainable domestic water sources for Ca Mau but also serve as an example for similar regions globally.

Funder

Vietnam Academy of Science and Technology

Publisher

MDPI AG

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