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Nijerya’daki Mmubete Deresi’nin Su Kalitesi ve Kirlilik Yük Kapasitesinin Değerlendirilmesi

Year 2025, Volume: 20 Issue: 1, 173 - 184, 27.03.2025
https://doi.org/10.55525/tjst.1541073

Abstract

Su kütlelerine yüksek organik içerikli atıkların sürekli deşarjı su kirliliğine neden olur. Bu çalışma, su kirliliğinin izlenmesi ve değerlendirilmesine odaklanarak Mmubete Deresi’ndeki kirlilik seviyesini değerlendirmektedir. Dere, balıkçılık ve evsel faaliyetler için faydalıdır. Su ve atık su örnekleri, derenin toplam 1 km’lik bölümünü kapsayan 12 örnekleme noktasından bir yıl boyunca her iki ayda bir toplandı. Ocak, Mart, Mayıs, Temmuz, Eylül ve Kasım 2020’yi kapsayan yağışlı ve kurak mevsimlerde yetmiş iki su örneği toplandı. Her örnekleme ayında on iki örnek toplandı ve yirmi parametre açısından analiz edildi: çözünmüş oksijen, bulanıklık, toplam çözünmüş katılar, toplam askıda katılar, biyokimyasal oksijen ihtiyacı, pH, sıcaklık, elektriksel iletkenlik, fosfat, nitrat, bakır, kurşun, demir, manganez, klorür, tuzluluk, nikel ve kimyasal oksijen ihtiyacı. Kirlilik durumu, değiştirilmiş Su Kirliliği Endeksi ve Ulusal Sanitasyon Vakfı Su Kalitesi Endeksi (NSFWQI) yöntemi kullanılarak değerlendirildi. Sonuçlar, Mmubete Deresi’nin orta düzeyde kirli olduğunu, yağışlı ve kurak mevsimlerdeki su kirliliği indekslerinin sırasıyla 1,037 ve 1,329, kurak ve yağışlı mevsimlerdeki su kalitesi indekslerinin ise sırasıyla 55,87 ve 53,22 olduğunu ortaya koymuştur.

References

  • Amira S, Astono W, Hendrawan D. Study of pollution effect on water quality of Grogal River, DK1 Jarkata. In: The 4th International Seminar on Sustainable Urban Development; 10P Conference Series: Earth and Environmental Science; 2018.
  • Ugbebor JN. Modelling the variability of water quality of the Oshika Lake. PhD Thesis, University of Nigeria, Nsukka, Nigeria; 2011.
  • Oguntimehin II, Babatola JO. The pollution status of some selected rivers in Ado-Ekiti, Nigeria. Pak J Sci Ind 2007; 50(1): 22-26.
  • Ledogo AB, Akatah BM. Assimilative capacity of Khana rivers in present-day Niger Delta, Nigeria. Int J Emp Res Sust Dev 2011; 2(2): 210-217.
  • Aboyeji OO. Freshwater pollution in some Nigerian local communities, causes, consequences, and probable solutions. Acad J Int Stud 2013.
  • Asik BB, Ozsoy G. Determination of pollution status of Nitifer river by water and bottom sediment analysis. Water Supply 2023; 001.
  • Hammer Sr MJ, Hammer Jr MJ. Water quality. In: Hammer MJ, Hammer Jr MJ, editors. Water and Wastewater Technology. 5th ed. London, UK: Pearson; 2004. pp. 139-159.
  • Galadima A, Garba ZN, Leke L, Almustapha MN, Adam IK. Domestic water pollution among local communities in Nigeria - causes and consequences. Eur J Sci Res 2011; 52(4).
  • Gerardi MH, Zimmerman MC. Wastewater Pathogens. In: Wastewater Pathogens. 2005.
  • Grzywna A, Sender J. The assessment of the amount of water pollution and its suitability for drinking of the Tysoniaenica River Basin, Poland. Environ Monit Assess 2021; 315.
  • Putri MSA, Lou C, Syaiin MO, Oii S, Wang Y. Long-term river water quality trends and pollution source apportionment in Taiwan. Water 2018; 10: 1394.
  • Sivaranjani S, Rakshit A, Singh S. Water quality assessment with water quality indices. Int J Biores Sci 2015; 2(2).
  • Zela G, Demiraj E, Marko O, Gjipalaj J, Erebara A, Malltezi J, Zela E, Bani A. Assessment of the Water Quality Index in the Semani River in Albania. J Environ Prot 2020; 11: 998-1013.
  • Akatah BM. Evaluation and modelling of pollution level and self-purification capacity of Mmubete River, Nigeria. PhD Thesis, University of Benin, Benin City, Edo State, Nigeria; 2023.
  • Chidiac S, El Najjar P, Ouaini N, El Rayess Y, El Azzi D. A comprehensive review of water quality indices (WQIs): history, models, attempts and perspectives. Rev Environ Sci Biotechnol 2023; 22(2): 349–395.
  • Mohammed Redha Z, Bu-Ali Q, Janahi AY, AlQahtani MM, Buhindi RA. Development of wastewater quality index as an assessment tool of treated wastewater quality for sea discharge. Water Environ J 2024; 38(3): 450–464.
  • Jahnig SC, Cai Q. River water quality assessment in selected Yangtze tributaries: background and method development. J Earth Sci 2010; 21(6): 876-881.
  • Ontiveros HC, Castillo NA, Tristan AC, Cardenas MC, Hernandez CAI, Putri RF. Determination of water quality index (NSFWQI) of water bodies in the Huasteca Potosinna, Mexico. E35 Web Conf 2021; 325: 08002.
  • Kalagbor IA, Johnny VI, Ogbolokot IE. Application of National Sanitation Foundation and Weighted Arithmetic Water Quality indices for the assessment of Kaani and Kpean Rivers in Nigeria. Am J Water Res 2019; 7(1): 11-50
  • World Health Organization (WHO). Guidelines for drinking water quality. Geneva, Switzerland: WHO; 2021.
  • Damo R, Iqbal R. Water quality assessment using WQI and multivariate statistical analysis in Albania. Environ Monit Assess 2018; 190(9): 554.

Assessment of Water Quality and Pollution Load Capacity of the Mmubete Stream in Nigeria

Year 2025, Volume: 20 Issue: 1, 173 - 184, 27.03.2025
https://doi.org/10.55525/tjst.1541073

Abstract

The continuous discharge of waste with high organic content into water bodies causes water pollution. This study evaluates the level of pollution in the Mmubete Stream by focusing on monitoring and evaluating water pollution. The stream is useful for fishing and domestic activities. Water and effluent samples were collected every two months for one year at 12 sampling points covering a total of 1 km stretch of the stream. Seventy-two water samples were collected during the wet and dry seasons covering January, March, May, July, September, and November 2020. Twelve samples were collected in each sampling month and analyzed for twenty parameters: dissolved oxygen, turbidity, total dissolved solids, total suspended solids, biochemical oxygen demand, pH, temperature, electrical conductivity, phosphate, nitrate, copper, lead, iron, manganese, chloride, salinity, nickel, and chemical oxygen demand. The pollution status was evaluated using the modified Water Pollution Index and the National Sanitation Foundation Water Quality Index (NSFWQI) method. The results revealed that Mmubete stream is moderately polluted with water pollution indices for wet and dry seasons as 1.037 and 1.329 respectively and water quality index of 55.87 and 53.22 for dry and wet seasons respectively.

References

  • Amira S, Astono W, Hendrawan D. Study of pollution effect on water quality of Grogal River, DK1 Jarkata. In: The 4th International Seminar on Sustainable Urban Development; 10P Conference Series: Earth and Environmental Science; 2018.
  • Ugbebor JN. Modelling the variability of water quality of the Oshika Lake. PhD Thesis, University of Nigeria, Nsukka, Nigeria; 2011.
  • Oguntimehin II, Babatola JO. The pollution status of some selected rivers in Ado-Ekiti, Nigeria. Pak J Sci Ind 2007; 50(1): 22-26.
  • Ledogo AB, Akatah BM. Assimilative capacity of Khana rivers in present-day Niger Delta, Nigeria. Int J Emp Res Sust Dev 2011; 2(2): 210-217.
  • Aboyeji OO. Freshwater pollution in some Nigerian local communities, causes, consequences, and probable solutions. Acad J Int Stud 2013.
  • Asik BB, Ozsoy G. Determination of pollution status of Nitifer river by water and bottom sediment analysis. Water Supply 2023; 001.
  • Hammer Sr MJ, Hammer Jr MJ. Water quality. In: Hammer MJ, Hammer Jr MJ, editors. Water and Wastewater Technology. 5th ed. London, UK: Pearson; 2004. pp. 139-159.
  • Galadima A, Garba ZN, Leke L, Almustapha MN, Adam IK. Domestic water pollution among local communities in Nigeria - causes and consequences. Eur J Sci Res 2011; 52(4).
  • Gerardi MH, Zimmerman MC. Wastewater Pathogens. In: Wastewater Pathogens. 2005.
  • Grzywna A, Sender J. The assessment of the amount of water pollution and its suitability for drinking of the Tysoniaenica River Basin, Poland. Environ Monit Assess 2021; 315.
  • Putri MSA, Lou C, Syaiin MO, Oii S, Wang Y. Long-term river water quality trends and pollution source apportionment in Taiwan. Water 2018; 10: 1394.
  • Sivaranjani S, Rakshit A, Singh S. Water quality assessment with water quality indices. Int J Biores Sci 2015; 2(2).
  • Zela G, Demiraj E, Marko O, Gjipalaj J, Erebara A, Malltezi J, Zela E, Bani A. Assessment of the Water Quality Index in the Semani River in Albania. J Environ Prot 2020; 11: 998-1013.
  • Akatah BM. Evaluation and modelling of pollution level and self-purification capacity of Mmubete River, Nigeria. PhD Thesis, University of Benin, Benin City, Edo State, Nigeria; 2023.
  • Chidiac S, El Najjar P, Ouaini N, El Rayess Y, El Azzi D. A comprehensive review of water quality indices (WQIs): history, models, attempts and perspectives. Rev Environ Sci Biotechnol 2023; 22(2): 349–395.
  • Mohammed Redha Z, Bu-Ali Q, Janahi AY, AlQahtani MM, Buhindi RA. Development of wastewater quality index as an assessment tool of treated wastewater quality for sea discharge. Water Environ J 2024; 38(3): 450–464.
  • Jahnig SC, Cai Q. River water quality assessment in selected Yangtze tributaries: background and method development. J Earth Sci 2010; 21(6): 876-881.
  • Ontiveros HC, Castillo NA, Tristan AC, Cardenas MC, Hernandez CAI, Putri RF. Determination of water quality index (NSFWQI) of water bodies in the Huasteca Potosinna, Mexico. E35 Web Conf 2021; 325: 08002.
  • Kalagbor IA, Johnny VI, Ogbolokot IE. Application of National Sanitation Foundation and Weighted Arithmetic Water Quality indices for the assessment of Kaani and Kpean Rivers in Nigeria. Am J Water Res 2019; 7(1): 11-50
  • World Health Organization (WHO). Guidelines for drinking water quality. Geneva, Switzerland: WHO; 2021.
  • Damo R, Iqbal R. Water quality assessment using WQI and multivariate statistical analysis in Albania. Environ Monit Assess 2018; 190(9): 554.
There are 21 citations in total.

Details

Primary Language English
Subjects Water Resources and Water Structures
Journal Section TJST
Authors

Abiodun Oyetunji 0000-0002-5396-4722

Barry Akatah This is me 0000-0002-7245-6547

Ishmael Onungwe 0000-0003-3749-3235

Lebabari Bariture This is me 0009-0009-8486-6189

Publication Date March 27, 2025
Submission Date August 31, 2024
Acceptance Date March 15, 2025
Published in Issue Year 2025 Volume: 20 Issue: 1

Cite

APA Oyetunji, A., Akatah, B., Onungwe, I., Bariture, L. (2025). Assessment of Water Quality and Pollution Load Capacity of the Mmubete Stream in Nigeria. Turkish Journal of Science and Technology, 20(1), 173-184. https://doi.org/10.55525/tjst.1541073
AMA Oyetunji A, Akatah B, Onungwe I, Bariture L. Assessment of Water Quality and Pollution Load Capacity of the Mmubete Stream in Nigeria. TJST. March 2025;20(1):173-184. doi:10.55525/tjst.1541073
Chicago Oyetunji, Abiodun, Barry Akatah, Ishmael Onungwe, and Lebabari Bariture. “Assessment of Water Quality and Pollution Load Capacity of the Mmubete Stream in Nigeria”. Turkish Journal of Science and Technology 20, no. 1 (March 2025): 173-84. https://doi.org/10.55525/tjst.1541073.
EndNote Oyetunji A, Akatah B, Onungwe I, Bariture L (March 1, 2025) Assessment of Water Quality and Pollution Load Capacity of the Mmubete Stream in Nigeria. Turkish Journal of Science and Technology 20 1 173–184.
IEEE A. Oyetunji, B. Akatah, I. Onungwe, and L. Bariture, “Assessment of Water Quality and Pollution Load Capacity of the Mmubete Stream in Nigeria”, TJST, vol. 20, no. 1, pp. 173–184, 2025, doi: 10.55525/tjst.1541073.
ISNAD Oyetunji, Abiodun et al. “Assessment of Water Quality and Pollution Load Capacity of the Mmubete Stream in Nigeria”. Turkish Journal of Science and Technology 20/1 (March 2025), 173-184. https://doi.org/10.55525/tjst.1541073.
JAMA Oyetunji A, Akatah B, Onungwe I, Bariture L. Assessment of Water Quality and Pollution Load Capacity of the Mmubete Stream in Nigeria. TJST. 2025;20:173–184.
MLA Oyetunji, Abiodun et al. “Assessment of Water Quality and Pollution Load Capacity of the Mmubete Stream in Nigeria”. Turkish Journal of Science and Technology, vol. 20, no. 1, 2025, pp. 173-84, doi:10.55525/tjst.1541073.
Vancouver Oyetunji A, Akatah B, Onungwe I, Bariture L. Assessment of Water Quality and Pollution Load Capacity of the Mmubete Stream in Nigeria. TJST. 2025;20(1):173-84.