Preview

Eurasian Journal of Economic and Business Studies

Advanced search

Economics of Water Supply and Household Behavior: the Transition from Self-Supply to Centralized Systems

https://doi.org/10.47703/ejebs.v69i2.503

Abstract

Access to clean and safe water remains a critical determinant of public health, quality of life, and socio-economic resilience, particularly in emerging economies with unequal infrastructure development. This study aims to identify the key factors that determine consumer behaviour in the water supply sector, taking into account water quality and the level of infrastructure coverage from 2013 to 2023. The research integrates behavioral, infrastructural, and environmental dimensions to understand how access to water infrastructure and source quality influence consumption patterns. Using a mixed-method design, the study combines streamgraph visualization, correlation matrix analysis, and multiple linear regression modeling based on five indicators: quality of centralized water (DW_C), groundwater (DW_G), population connected to centralized systems (AC_P), per capita consumption (WC_PC), and the self-supply population (SA_NP). The results reveal a strong positive correlation between access to centralized systems and per capita water consumption (r = 0.901, p < 0.001). At the same time, higher groundwater contamination is associated with greater reliance on self-supply (r = –0.824, p = 0.002). The regression model confirms the significant influence of centralized water quality (β = –0.2679, p = 0.023) and consumption behavior (β = –0.1506, p = 0.087) on reducing the prevalence of self-supply. Visual analysis via Arc Diagrams reveals structural links between infrastructural expansion and behavioral change, suggesting that improved access and sanitary standards influence household preferences.  The results highlighted the importance of targeted investments and effective governance mechanisms in reducing dependence on unsafe self-supply, particularly in Kazakhstan's regional disparities, especially in rural areas.

 

About the Authors

Askar Adamov
Karaganda University of Kazpotrebsoyuz, Karaganda, Kazakhstan.
Kazakhstan

PhD student, Email: askar.adamov@bk.ru



Aybota Rakhmetova
Center for Research, Analysis and Evaluation of Effectiveness, Astana, Kazakhstan.
Kazakhstan

Doc. Sc. (Econ.), Professor, Email: aibota@mail.ru



Ainur Sugurova
ALT University named after Mukhamedzhan Tynyshpayev, Almaty, Kazakhstan.
Kazakhstan

Cand. Sc. (Econ.), Assistant Professor, Email: a.sugurova@mail.ru



Gulnara Tuleshova
Zhetysu University named after I. Zhansugurov, Тaldykorgan, Kazakhstan.
Kazakhstan

Cand. Sc. (Econ.), Email: tuleshova_04@mail.ru



Raushan Azbergenova
Kazakh National Pedagogical University named after Abay, Institute Sorbonne-Kazakhstan, Almaty, Kazakhstan.
Kazakhstan

Cand. Sc. (Econ.), Associate Professor, Email: azbergenova@bk.ru



References

1. Asefa, T., Adams, A., & Kajtezovic-Blankenship, I. (2014). A tale of integrated regional water supply planning: Meshing socio-economic, policy, governance, and sustainability desires together. Journal of hydrology, 519, 2632-2641. https://doi.org/10.1016/j.jhydrol.2014.05.047

2. Arora, M., Malano, H., Davidson, B., Nelson, R., & George, B. (2015). Interactions between centralized and decentralized water systems in urban context: A review. Wiley Interdisciplinary Reviews: Water, 2(6), 623-634. https://doi.org/10.1002/wat2.1099

3. Bureau of National Statistics. (2024). Bureau of National Statistics of the Republic of Kazakhstan. Retrieved May 21, 2025 from https://stat.gov.kz/en

4. Cipolletta, G., Ozbayram, E. G., Eusebi, A. L., Akyol, Ç., Malamis, S., Mino, E., & Fatone, F. (2021). Policy and legislative barriers to close water-related loops in innovative small water and wastewater systems in Europe: A critical analysis. Journal of Cleaner Production, 288, 125604. https://doi.org/10.1016/j.jclepro.2020.125604

5. Fletcher, S. M., Miotti, M., Swaminathan, J., Klemun, M. M., Strzepek, K., & Siddiqi, A. (2017). Water supply infrastructure planning: Decision-making framework to classify multiple uncertainties and evaluate flexible design. Journal of Water Resources Planning and Management, 143(10), 04017061. https://doi.org/10.1061/(ASCE)WR.1943-5452.0000823

6. Hutton, G., & Chase, C. (2016). The knowledge base for achieving the sustainable development goal targets on water supply, sanitation and hygiene. International journal of environmental research and public health, 13(6), 536. https://doi.org/10.3390/ijerph13060536

7. Issanova, G., Jilili, R., Abuduwaili, J., Kaldybayev, A., Saparov, G., & Yongxiao, G. (2018). Water availability and state of water resources within water-economic basins in Kazakhstan. Paddy and water environment, 16, 183-191. https://doi.org/10.1007/s10333-018-0630-6

8. Israilova, E., Voronina, A., & Shatila, K. (2023). Impact of water scarcity on socio-economic development. In E3S Web of Conferences, 458, 08027. EDP Sciences. https://doi.org/10.1051/e3sconf/202345808027

9. Karatayev, M., Kapsalyamova, Z., Spankulova, L., Skakova, A., Movkebayeva, G., & Kongyrbay, A. (2017). Priorities and challenges for a sustainable management of water resources in Kazakhstan. Sustainability of Water Quality and Ecology, 9, 115-135. https://doi.org/10.1016/j.swaqe.2017.09.002

10. Kayser, G. L., Moriarty, P., Fonseca, C., & Bartram, J. (2013). Domestic water service delivery indicators and frameworks for monitoring, evaluation, policy and planning: a review. International journal of environmental research and public health, 10(10), 4812-4835. https://doi.org/10.3390/ijerph10104812

11. Ke, W., Sha, J., Yan, J., Zhang, G., & Wu, R. (2016). A multi-objective input–output linear model for water supply, economic growth and environmental planning in resource-based cities. Sustainability, 8(2), 160. https://doi.org/10.3390/su8020160

12. Lee, J., Perera, D., Glickman, T., & Taing, L. (2020). Water-related disasters and their health impacts: A global review. Progress in Disaster Science, 8, 100123. https://doi.org/10.1016/j.pdisas.2020.100123

13. Li, P., & Wu, J. (2019). Drinking water quality and public health. Exposure and Health, 11(2), 73-79. https://doi.org/10.1007/s12403-019-00299-8

14. Makanda, K., Nzama, S., & Kanyerere, T. (2022). Assessing the role of water resources protection practice for sustainable water resources management: a review. Water, 14(19), 3153. https://doi.org/10.3390/w14193153

15. Meeks, R. C. (2017). Water works: The economic impact of water infrastructure. Journal of Human Resources, 52(4), 1119-1153. https://doi.org/10.3368/jhr.52.4.0915-7408R1

16. Omarova, A., Tussupova, K., Hjorth, P., Kalishev, M., & Dosmagambetova, R. (2019). Water supply challenges in rural areas: a case study from Central Kazakhstan. International journal of environmental research and public health, 16(5), 688. https://doi.org/10.3390/ijerph16050688

17. Sapkota, M., Arora, M., Malano, H., Moglia, M., Sharma, A., George, B., & Pamminger, F. (2014). An overview of hybrid water supply systems in the context of urban water management: Challenges and opportunities. Water, 7(1), 153-174. https://doi.org/10.3390/w7010153

18. Tarrass, F., & Benjelloun, M. (2011). The effects of water shortages on health and human development. Perspectives in public health, 132(5), 240-244. https://doi.org/10.1177/1757913910391040

19. Tussupova, K., Hjorth, P., & Berndtsson, R. (2016). Access to drinking water and sanitation in rural Kazakhstan. International Journal of Environmental Research and Public Health, 13(11), 1115. https://doi.org/10.3390/ijerph13111115

20. Zhang, J. (2012). The impact of water quality on health: Evidence from the drinking water infrastructure program in rural China. Journal of health economics, 31(1), 122-134. https://doi.org/10.1016/j.jhealeco.2011.08.008

21. Zhang, C. Y., & Oki, T. (2023). Water pricing reform for sustainable water resources management in China’s agricultural sector. Agricultural Water Management, 275, 108045. https://doi.org/10.1016/j.agwat.2022.108045

22. Zhang, D., Sial, M. S., Ahmad, N., Filipe, A. J., Thu, P. A., Zia-Ud-Din, M., & Caleiro, A. B. (2020). Water scarcity and sustainability in an emerging economy: a management perspective for future. Sustainability, 13(1), 144. https://doi.org/10.3390/su13010144

23. Zhupankhan, A., Tussupova, K., & Berndtsson, R. (2018). Water in Kazakhstan, a key in Central Asian water management. Hydrological Sciences Journal, 63(5), 752-762. https://doi.org/10.1080/02626667.2018.1447111

24. Food and Agriculture Organization. (2006). Water: A shared responsibility (UNESCO-WWAP, ed.). United Nations. Retrieved May 21, 2025 from https://www.fao.org/4/y2006e/y2006e0f.htm

25. WWT2. (2021). Centralized and decentralized systems of water and sanitation. SSWM University Course. Retrieved May 21, 2025 from https://sswm.info/sswm-university-course/module-2-centralised-and-decentralised-systems-water-and-sanitation


Review

For citations:


Adamov A., Rakhmetova A., Sugurova A., Tuleshova G., Azbergenova R. Economics of Water Supply and Household Behavior: the Transition from Self-Supply to Centralized Systems. Eurasian Journal of Economic and Business Studies. 2025;69(2):128–140. https://doi.org/10.47703/ejebs.v69i2.503

Views: 35

JATS XML


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2789-8253 (Print)
ISSN 2789-8261 (Online)