Heavy metal distribution in sediment | Blazingprojects Postgraduate Thesis
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Heavy metal distribution in sediment

 

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Thesis Abstract

Heavy metals are a group of elements that are naturally occurring in the environment but can become pollutants when present in high concentrations. Sediments play a crucial role in the transport and fate of heavy metals in aquatic systems. Understanding the distribution of heavy metals in sediment is essential for assessing the environmental impact and potential risks associated with their presence. In this study, the distribution of heavy metals in sediment from a specific aquatic environment was investigated. Sediment samples were collected from different locations within the study area and analyzed for heavy metal content. The concentrations of various heavy metals, including lead, cadmium, copper, and zinc, were determined using analytical techniques such as atomic absorption spectrometry. The results showed that the distribution of heavy metals in sediment was not uniform across the study area. Higher concentrations of certain heavy metals were found in sediments collected from industrial areas compared to those from natural or less impacted areas. This spatial variation in heavy metal distribution can be attributed to anthropogenic activities such as industrial discharge and urban runoff. Furthermore, the study also revealed seasonal variations in heavy metal concentrations in sediment. Higher levels of heavy metals were observed during the wet season compared to the dry season, indicating that factors such as rainfall and runoff can influence the transport and deposition of heavy metals in sediment. The findings of this study have important implications for environmental management and risk assessment. By identifying hotspots of heavy metal contamination in sediment, appropriate remediation measures can be implemented to reduce the environmental impact. Furthermore, the seasonal variations in heavy metal concentrations highlight the dynamic nature of heavy metal distribution in sediment and the need for continuous monitoring and assessment. Overall, this study provides valuable insights into the distribution of heavy metals in sediment and emphasizes the importance of understanding the factors influencing their transport and fate in aquatic environments. Further research in this area is warranted to expand our knowledge of heavy metal contamination in sediment and its potential effects on ecosystem health.

Thesis Overview

<p> </p><div><p><strong>1.1 INTRODUCTION</strong></p><p>Heavy metals pollution of aquatic ecosystem is becoming a potential global problem, pollution typically refers to chemicals or other substance in concentration greater than it would occur under natural conditions. Water pollution is the introduction by man of substances into the aquatic environment resulting from deleterious effect as harm to human health (FAO 1990).The presence of increased level of heavy metals in the aquatic environment has been of much concern for the past decades due to adverse effect of some metals on living organisms in food chains leading to man. Pollutants are the cause of major water quality degradation around the world. Several toxic metals which are important to the environment and human health have been detected in aquatic media. These toxic metals include the non-essential meals and are no importance to humans (Borgman and Norwood 2002).</p><p>&nbsp; &nbsp; Trace amount of heavy metals are always present in fresh water from terrigenous sources &nbsp; such as weathering of rocks resulting into geo-chemical recycling of heavy metal elements in these ecosystem. Trace elements may be immobilised within the stream sediments and could be involved in absorption, co-precipitation and complex formation. Sometimes they are co-adsorbed with other elements as oxides, hydroxides of Fe, Mn, or may occur in particulate form.</p><p>&nbsp; &nbsp; &nbsp; Heavy metal may enter into aquatic ecosystem from anthropogenic sources, such as industrial wastewater discharge, sewage wastewater, fossil fuel combustion, and atmospheric deposition. Trace element in stream sediment compartment can be used to reveal the history and intensity of local and regional pollution. In this work, the of stream sediment contamination was assess using geo-accumulation index.</p><p><strong>1.2 AIMS AND OBJECTIVES</strong></p><p>The main objectives of the current study area are:</p><ol><li>To assess the extent and degree of metals, and the origin of these metals, using the geo-accumulation index of the metals.</li><li>To determine the total content of heavy metals in surface sediments of Akpabuyo.</li><li>To estimate the anthropogenic input and to assess the pollution status on the area.</li></ol><p>1.3 STUDY AREA</p><p>The study area which is located in Akpabuyo, Cross River State &nbsp;lies between longitudes 80 22I &nbsp;30II E – 80 &nbsp;30I 0II E and latitude 40 52I 30II N – 40 57I 30II N (fig 2). &nbsp;With an area of 126,4032 Square Km. Although many stream samples where collected but few was selscted for the heavy metal analysis. The various Locations in Akpabuyo which sediment samples were collected and used to carry out the analysis are Esuk Mbat stream(L1), Esuk Ekpo Eyo Stream(L2), Ikot Akwa Stream(L3), Dan Archibong Stream(L4), Itu Stream(L5), Ikot Ndarake Stream(L6), Asioha Stream(L7), Ikot Ekpo Ene Stream(L8), Ekpene Ikot Imo Stream(L9), Ikot Nakanda(L10), and their following coordinate shown respectively (table 1.3) . It originate from a hilly region and flows through several villages and farmland</p><p></p></div><h3></h3><br> <br><p></p>

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