Assessment and Management of the Water Quality and Heavy-Metal Pollution of a Protected Hypersaline Wetland in the United Arab Emirates

Author:

Samara Fatin1ORCID,Knuteson Sandra L.1ORCID,Abdulateef Tala A.1,Yaghmour Fadi2,Whittington-Jones Brendan3,Al Abdalla Sara Mohamed4,Khalil Baha5ORCID,Ahmed Norhan6

Affiliation:

1. Department of Biology, Chemistry and Environmental Sciences, American University of Sharjah, Sharjah P.O. Box 26666, United Arab Emirates

2. Hefaiyah Mountain Conservation Centre (Scientific Research Department), Environment and Protected Areas Authority, Sharjah, United Arab Emirates

3. Sharjah Desert Park (Scientific Research Department), Environment and Protected Areas Authority, Sharjah P.O. Box 26666, United Arab Emirates

4. Wasit Wetland Center (Scientific Research Department), Environment and Protected Areas Authority, Sharjah P.O. Box 26666, United Arab Emirates

5. Materials Science and Engineering Program, College of Arts and Sciences, American University of Sharjah, Sharjah, P.O. Box 26666, United Arab Emirates

6. Engineering Systems Management Program, College of Engineering, American University of Sharjah, Sharjah P.O. Box 26666, United Arab Emirates

Abstract

A hypersaline protected wetland in the UAE was assessed from February to April of 2021 for parameters such as temperature, pH, COD, total dissolved solids, ORP, electrical conductivity, total and E. coli, salinity, turbidity, chloride, ammonia, nitrate, total nitrogen, phosphorus, and heavy metals to assess its current status. Wasit Nature Reserve’s salinity values ranged between 17.1 and 64.78 psu, while D.O values ranged between 6.3 and 8.41 ppm. The values for nitrate were between 50.70 and 57.6 ppm, while the values for chloride were between 12,642.0 and 37,244.0 ppm. Results for heavy metals showed that Iron and Aluminum were the highest concentrations in sediments, with an average of 5599.3 mg/kg and 3171.1 mg/kg, respectively. Mercury and arsenic reported the lowest concentrations, with an average of 0.0 mg/kg and 2.4 mg/kg, respectively. Hazard quotient values were 2239.72 mg/kg for iron, 0 mg/kg for mercury, and 0.05 mg/kg for arsenic, indicating that iron levels are considered hazardous and water-quality indicators concluded high pollution levels. The results indicate that the hypersaline nature of the wetland contributes to the deviation from the permissible limits, as demonstrated by the calculated “poor“water-quality index and “highly polluted” water-pollution index. Due to their ecological relevance, wetlands in the region could serve as indicators of ecological well-being, highlighting the need for regular monitoring and evaluation.

Funder

Undergraduate Research

Faculty Research

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

Reference87 articles.

1. Ramsar Convention on Wetland (2022, May 01). The Introductory Ramsar Brochure, Available online: https://www.ramsar.org/about-the-convention-on-wetlands-0.

2. US EPA (2023, March 15). What is a Wetland?|US EPA, Available online: https://www.epa.gov/wetlands/what-wetland.

3. Wetland water quality assessment in cold and dry regions (Case study: Choghakhor wetland, Iran);Dorche;Limnol. Rev.,2019

4. Comparative Study of Seasonal Variation in Physicochemical Properties of Selected Wetlands of Mehsana Districts, North Gujarat;Barot;Indian J. Appl. Res.,2011

5. The effects of water-level fluctuations on vegetation in a Lake Huron wetland;Wilcox;Wetlands,2008

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