Skip to main content

Physicochemical and Microbial Analysis of Deep Well Water in Sitio Cabalawan, Barangay Rizal, Surigao City: Implications for Domestic Use and Health

Author(s): Liwaya S. Longos
Author(s) information:
Surigao del Norte State University, Surigao City, Philippines

Corresponding author

Groundwater from deep wells was the primary source of domestic water for many rural communities in the Philippines. However, routine groundwater quality monitoring remained limited, increasing the risk of exposure to physicochemical and microbiological contaminants. This study evaluated the quality of untreated deep-well water in Sitio Cabalawan, Barangay Rizal, Surigao City, Philippines. Water samples were collected from three groundwater supply configurations: a communal hand pump, a household hand pump, and a household faucet supplied through an elevated storage tank. Physicochemical parameters, including temperature, pH, total dissolved solids (TDS), nitrate, and iron, together with microbiological indicators comprising heterotrophic plate count (HPC), total coliforms, and thermotolerant (fecal) coliforms, were analyzed using standard laboratory methods and compared with the Philippine National Standards for Drinking Water (PNSDW) and the World Health Organization (WHO) Guidelines for Drinking-water Quality. The results showed that pH, nitrate, and iron concentrations complied with both PNSDW and WHO standards, whereas TDS exceeded the PNSDW acceptable limit at two sampling sites. In contrast, microbiological analyses revealed elevated HPC in all samples, total coliforms at every sampling site, and fecal coliform contamination in water collected from the household storage and distribution system. These findings suggested that while groundwater chemistry remained generally acceptable, microbial contamination likely occurred during post-extraction storage and household distribution. The study concluded that untreated deep-well water was microbiologically unsuitable for direct human consumption despite meeting most physicochemical standards. The findings highlighted the need for routine groundwater monitoring, improved well protection, proper storage and distribution infrastructure, and household water treatment to reduce waterborne disease risks and support integrated groundwater quality management in flood-prone rural communities.

Next article

Progress on Household Drinking-Water, Sanitation and Hygiene 2000–2022: Special Focus on Gender; World Health Organization: Geneva, Switzerland. . (accessed on 1 March 2026) Available online: https://www.who.int/publications/i/item/progress-on-household-drinking-water--sanitation-and-hygiene-2000-2022--special-focus-on-gender.

The United Nations World Water Development Report 2022: Groundwater: Making the Invisible Visible; UNESCO on behalf of UN-Water: Paris, France. . (accessed on 1 March 2026) Available online: https://unesdoc.unesco.org/ark:/48223/pf0000380721.

Adimalla, N.; Qian, H. (2021). Groundwater chemistry, distribution and potential health risk appraisal of nitrate-enriched groundwater: A review. Environmental Pollution, 271, 116102. https://doi.org/10.1016/j.envpol.2020.116102.

Lapworth, D.J.; Nkhuwa, D.C.W.; Okotto-Okotto, J.; Pedley, S.; Stuart, M.E.; et al. (2020). Urban groundwater quality in sub-Saharan Africa: Current status and implications for water security and public health. Hydrogeology Journal, 28, 1099–1116. https://doi.org/10.1007/s10040-020-02127-5.

Sudaria, M.A.M.; Burca, C.; Francisco, B.; Palomas, M.; Rodrigo, K.; Caber, M. (2020). Potability of deep-well water sources in Calbayog, Samar, Philippines. Journal of Agriculture and Ecology, 9, 30–40. https://doi.org/10.53911/JAE.2020.9103.

World Health Organization. (2022). Guidelines for Drinking-Water Quality, 4th ed. incorporating the first and second addenda; World Health Organization: Geneva, Switzerland.

Ashbolt, N.J.; Grabow, W.O.K.; Snozzi, M. (2001). Indicators of microbial water quality. In Water Quality: Guidelines, Standards and Health; Fewtrell, L., Bartram, J., Eds.; IWA Publishing: London, United Kingdom; pp. 289–316.

Edberg, S.C.; Rice, E.W.; Karlin, R.J.; Allen, M.J. (2000). Escherichia coli: The best biological drinking water indicator for public health protection. Journal of Applied Microbiology, 88, 106S–116S. https://doi.org/10.1111/j.1365-2672.2000.tb05338.x.

Magwilang, E.B.; Paredes, A.L.Y.; Armas, F.C.; Bugnay, H.G.P.; Dagupen, R.D. (2023). Physico-chemical and microbiological assessment of domestic water supply in Bontoc, Mountain Province, Philippines. H2Open Journal, 6, 242–255. https://doi.org/10.2166/h2oj.2023.019.

Administrative Order No. 2017-0010: Philippine National Standards for Drinking Water of 2017; Department of Health, Republic of the Philippines: Manila, Philippines. (accessed on 1 March 2026) Available online: https://doh.gov.ph/wp-content/uploads/2023/08/Administrative-Order-No.-2017-0010-Philippine-National-Standards-for-Drinking-Water.pdf.

American Public Health Association; American Water Works Association; Water Environment Federation. (2023). Standard Methods for the Examination of Water and Wastewater, 24th ed.; American Public Health Association: Washington, DC, USA.

Duy, N.H.; Nguyen, C.N. (2020). Physicochemical and bacteriological assessment of groundwater quality in a rural area. Journal of Agriculture and Ecology, 9, 3–10. https://doi.org/10.53911/JAE.2020.9103.

Knüsel, M.; Alther, R.; Altermatt, F. (2024). Terrestrial land use signals on groundwater fauna beyond local groundwater compartments. Ecological Applications, 34, e3040. https://doi.org/10.1002/eap.3040.

Manalang, M.F.; Ocampo, G.; Alonto, A.; Rimocal, G. (2023). Geo-spatial mapping of iron (Fe) and manganese (Mn) present in groundwater of Clark, Philippines. ASEAN Engineering Journal, 13, 101–107.

Maran, N.H.; Crispim, B.D.A.; Iahnn, S.R.; de Araújo, R.P.; Grisolia, A.B. (2016). Depth and well type related to groundwater microbiological contamination. International Journal of Environmental Research and Public Health, 13, 1036. https://doi.org/10.3390/ijerph13101036.

About this article

SUBMITTED: 22 June 2026
ACCEPTED: 27 July 2026
PUBLISHED: 30 July 2026
SUBMITTED to ACCEPTED: 35 days
DOI: https://doi.org/10.53623/tasp.v6i2.1269

Cite this article
Longos, L. S. (2026). Physicochemical and Microbial Analysis of Deep Well Water in Sitio Cabalawan, Barangay Rizal, Surigao City: Implications for Domestic Use and Health. Tropical Aquatic and Soil Pollution, 6(2), 105–117. https://doi.org/10.53623/tasp.v6i2.1269
Keywords
Citations
0
Share this article