Quality Testing the Water Resource of Chaiyaphum Rajabhat University

Quality Testing of Water Sources at Chaiyaphum Rajabhat University

Authors

  • Wiparat Nisapai -
  • Worachate Sangsida

Keywords:

Heavy metal, Raw water resource, Wastewater treatment

Abstract

Abstract

The aim of this study was to investigating heavy metals in homegrown vegetable water resource of chaiyaphum rajabhat university including water in the lake beside convention hall, raw water, water in the nine-storeyed building, water in establishment of faculty of Engineering building and faculty of art and science building. The selected heavy metals were Copper (Cu), Iron (Fe), Nickel (Ni), Magnesium (Mg), Zinc (Zn), Cadmium (Cd), Lead (Pb), Potassium (K), Arsenic (As) and Mercury (Hg). The samples were filtered and digested by concentrated Nitric acid (HNO3). The decomposed samples were investigated for heavy metals by Atomic Absorption Spectrophotometer. The findings showed that heavy metals in Chaiyaphum Rajabhat University water resource were found lower than the standard indices prescribed by Pollution Control Department.

References

แผนยุทธศาสตร์การพัฒนาของมหาวิทยาลัยราชภัฏชัยภูมิ (4 ปี) พ.ศ. 2562-2565. สืบค้นเมื่อ 4 กุมภาพันธ์ 2566. จาก https://plan.cpru.ac.th/th/wp-content/uploads/2021/05/o11.pdf

สันทัด ศิริอนันต์ไพบูลย์. (2020). น้ำเสียชุมชน (Domestic Wastewater). วารสารการอาชีวศึกษาภาคกลาง vocational education Central Region Journal. 4(1): 1-10.

สำนักทรัพยากรน้ำแห่งชาติ. (2562). การบริหารจัดการทรัพยากรน้ำ. สืบค้นเมื่อ 11 มีนาคม 2566. จาก http://www.onwr.go.th/wpcontent/uploads/2019/11/การบริหารจัดการทรัพยากรน้ำ.pdf

กรมวิชาการเกษตร. (2565). คู่มือการเก็บตัวอย่างน้ำเพื่อการวิเคราะห์คุณภาพน้ำ. กรุงเทพฯ: กรมวิชาการ เกษตร.

กรมควบคุมมลพิษ. (2560). มาตรฐานคุณภาพน้ำผิวดิน พ.ศ. 2560. กรุงเทพฯ: กรมควบคุมมลพิษ.

Alloway, B. J. (2013). Heavy metals in soils: Trace metals and metalloids in soils and their bioavailability (3rd ed.). Dordrecht, Netherlands: Springer.

APHA, AWWA, & WEF. (2017). Standard methods for the examination of water and wastewater (23rd ed.). Washington, DC: American Public Health Association.

Bai, B., Bai, F., Li, X., Nie, Q., Jia, X., & Wu, H. (2022). The remediation efficiency of heavy metal pollutants in water by industrial red mud particle waste. Environmental Technology & Innovation, 28, 102944.

Marx, C., Tetzlaff, D., Hinkelmann, R., & Soulsby, C. (2023). Effects of 66 years of water management and hydroclimatic change on the urban hydrology and water quality of the Panke catchment, Berlin, Germany. Science of the Total Environment, 900, 165764.

Metcalf & Eddy, Inc. (2014). Wastewater engineering: Treatment and resource recovery (5th ed.). New York, NY: McGraw-Hill Education.

Jathan, Y., Pagilla, K. R., & Marchand, E. A. (2023). Understanding the influence of dissolved organic nitrogen characteristics on enhanced coagulation performance for water reuse. Chemosphere, 337, 139384.

Lee, H. K., Chang, S., Park, W., Kim, T. J., Park, S., & Jeon, H. (2022). Effective treatment of uranium - contaminated soil-washing effluent using precipitation/flocculation process for water reuse and solid waste disposal. Journal of Water Process Engineering, 48, 102890.

Xiaobing, L. I., Zhang, C., & Jiongtian, L. I. U. (2010). Adsorption of oil from waste water by coal: characteristics and mechanism. Mining Science and Technology (China), 20(5), 778-781.

Luo, H., Huang, G., Fu, X., Liu, X., Zheng, D., Peng, J., ... & Sun, X. (2013). Waste oyster shell as a kind of active filler to treat the combined wastewater at an estuary. Journal of Environmental Sciences, 25(10), 2047-2055.

Qin, J., Zhang, Y., & Yi, Y. (2023). Water washing and acid washing of gasification fly ash from municipal solid waste: Heavy metal behavior and characterization of residues. Environmental Pollution, 320, 121043.

Ravindiran, G., Rajamanickam, S., Ramalingam, M., Hayder, G., Sathaiah, B. K., Gaddam, M. K. R., & Arunkumar, P. (2024). Conversion of seaweed waste to biochar for the removal of heavy metal ions from aqueous solution: A sustainable method to address eutrophication problem in water bodies. Environmental Research, 241, 117551.

Seijger, C. (2023). How shifts in societal priorities link to reform in agricultural water management: Analytical framework and evidence from Germany, India and Tanzania. Science of the Total Environment, 886, 163945.

Tang, S., Gao, L., Tian, A., Zhao, T., & Zou, D. (2023). The coagulation behavior and removal efficiency of microplastics in drinking water treatment. Journal of Water Process Engineering, 53, 103885.

Yang, W., Kong, Y., Yin, H., & Cao, M. (2023). Study on the adsorption performance of ZIF-8 on heavy metal ions in water and the recycling of waste ZIF-8 in cement. Journal of Solid State Chemistry, 326, 124217.

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Published

2025-12-25

How to Cite

Nisapai, W., & Sangsida, W. (2025). Quality Testing the Water Resource of Chaiyaphum Rajabhat University: Quality Testing of Water Sources at Chaiyaphum Rajabhat University. Journal of Arts and Science Chaiyaphum Rajabhat University, 12(2), 75–89. retrieved from https://so06.tci-thaijo.org/index.php/JAS_CPRU/article/view/266811