Analysis of ecological health status of the Muni Lagoon: Evidence from heavy metal content in its water and fish samples

IF 1.7 Q2 GEOGRAPHY Geo-Geography and Environment Pub Date : 2023-01-18 DOI:10.1002/geo2.115
Emmanuel Yeboah Okyere, Kofi Adu-Boahen, Isaac Boateng, Ishmael Yaw Dadson, Nelson Yeboah Boanu, Sender Kyeremeh
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引用次数: 1

Abstract

The study examined the ecological health status of the Muni lagoon amidst increasing development in and around its catchment using a concentration of heavy metals in its water and fish samples as a proxy. Flame atomic absorption spectrophotometer (FAAS) laboratory analysis was employed to determine heavy metals (cadmium [Cd], lead [Pb], iron [Fe], manganese [Mn] and zinc) present in water and fish samples within the Muni Lagoon. The study revealed that the Muni Lagoon and feeder rivers were polluted with heavy metals (Fe = 0.453, Cd = 0.201, Mn = 0.105 and Pb = 0.024) comparing their concentrations with the US Environmental Protection Agency (USEPA) and Water Resources Commission (WRC) limit. Fish within the lagoon were found to pose no harm to consumers as traces of heavy metal concentrations were below the Food and Agriculture Organisation of the United Nations/World Health Organisation maximum permissible limit. The study further revealed that the application of agricultural inputs such as fertilisers, pesticides and domestic waste as well as unregulated gutter channels were the major source of heavy metals. A paired sample t-test showed a statistically significant difference between the wet and dry season's concentrations of cadmium and lead. For cadmium, the t-test found t(5) = −7.265; p = .001 between the wet season's concentration and the dry season's concentration and for lead, the t-test found t(5) = 5.061, p = .004 between the wet and dry season concentrations in the lagoon. It is therefore recommended that the Forestry Commission, Municipal Assembly and the local leaders should collaborate in regulating activities occurring in and around the catchment of the lagoon.

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木尼泻湖生态健康状况分析:来自水体和鱼类重金属含量的证据
该研究利用水和鱼样本中的重金属浓度作为代理,检查了穆尼泻湖在其集水区及其周围不断发展的生态健康状况。采用火焰原子吸收分光光度计(FAAS)实验室分析方法测定了木尼泻湖水和鱼样品中的重金属(镉[Cd]、铅[Pb]、铁[Fe]、锰[Mn]和锌)。研究结果表明,穆尼潟湖及其下游河流的重金属污染(Fe = 0.453, Cd = 0.201, Mn = 0.105, Pb = 0.024)达到了美国环境保护署(USEPA)和水资源委员会(WRC)的标准。调查发现,环礁湖内的鱼类不会对消费者造成伤害,因为痕量的重金属浓度低于联合国粮食及农业组织/世界卫生组织规定的最高允许限量。该研究进一步表明,化肥、农药、生活垃圾等农业投入物的使用以及不受管制的排水沟是重金属的主要来源。配对样本t检验显示,湿季和旱季镉和铅的浓度存在统计学上的显著差异。对于镉,t检验发现t(5) =−7.265;p =。对于铅,t检验发现t(5) = 5.061, p =。004在湿季和干季之间的浓度在泻湖。因此,建议林业委员会、市议会和地方领导人合作管理在泻湖集水区内和周围发生的活动。
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来源期刊
CiteScore
3.20
自引率
0.00%
发文量
12
审稿时长
25 weeks
期刊介绍: Geo is a fully open access international journal publishing original articles from across the spectrum of geographical and environmental research. Geo welcomes submissions which make a significant contribution to one or more of the journal’s aims. These are to: • encompass the breadth of geographical, environmental and related research, based on original scholarship in the sciences, social sciences and humanities; • bring new understanding to and enhance communication between geographical research agendas, including human-environment interactions, global North-South relations and academic-policy exchange; • advance spatial research and address the importance of geographical enquiry to the understanding of, and action about, contemporary issues; • foster methodological development, including collaborative forms of knowledge production, interdisciplinary approaches and the innovative use of quantitative and/or qualitative data sets; • publish research articles, review papers, data and digital humanities papers, and commentaries which are of international significance.
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