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The Impact of Water Quality on Human Nutrition: A Review of the Relationship between Water Intake and Nutrient Absorption Musa Yahaya Abubakar; Mohammed Haladu; Pambani Reuben; Twan Sale Mathew; Ansar Bilyaminu Adam; Ruslan Shamsuddeen
African Multidisciplinary Journal of Sciences and Artificial Intelligence Vol 1 No 1 (2024): African Multidisciplinary Journal of Sciences and Artificial Intelligence
Publisher : Darul Yasin Al Sys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/amjsai.v1i1.3544

Abstract

Water quality is intrinsically linked to human health, and ensuring access to clean and safe water is a fundamental public health goal, Water is essential to human health as it assists with nutrient delivery and digestion. The chemical, physical, and microbiological qualities of water have a substantial impact on the gastrointestinal tract's ability to absorb nutrients. Heavy metals, insecticides, and microbial infections are examples of contaminants that can hinder digestive processes, resulting in nutrient shortages and absorption. Pure, high-grade water can improve the absorption of nutrients and the effectiveness of digestion. This review examines the connection between nutrient absorption and water quality, with a particular emphasis on the effects of water pollution on human health. According to the review, nutrient absorption is greatly impacted by water quality, particularly in groups that are more sensitive. It emphasizes how crucial it is to monitor and control water quality better in order to provide the best possible nutrition and health results. This review synthesizes current research to elucidate the mechanisms through which water quality impacts nutrient absorption and overall nutritional status. It also highlights the public health implications, particularly in areas with inadequate access to clean water, and suggests interventions to improve water quality and support optimal health outcomes. water quality has a significant impact on human nutrition by influencing nutrient absorption, overall health, and hydration. Contaminants in water can interfere with nutrient absorption and cause a range of health issues, ultimately affecting the availability of essential nutrients in the body. Therefore, addressing water quality issues is crucial for promoting optimal nutrition and improving human health. The findings underscore the importance of ensuring access to clean drinking water as a fundamental component of nutritional health and public well-being.
Effect and Remediation of Environmental Pollution on the Concept of Chemistry - Review Musa Yahaya Abubakar; Mohammed Haladu; Ogunwole Adeshewa Titilayo; Ansar Bilyamin Adam
African Journal of Sciences and Traditional Medicine Vol 1 No 1 (2024): African Journal of Sciences and Traditional Medicine
Publisher : Darul Yasin Al Sys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/ajstm.v1i1.3726

Abstract

The science of chemistry has been greatly impacted by environmental degradation, which has led to important breakthroughs and changed educational perspectives. This review highlights the role of chemists in tackling global environmental concerns by examining the diverse effects of environmental contamination on the study of chemistry. Green chemistry principles, which attempt to design safer chemicals and processes that limit waste and lessen detrimental environmental impacts, have been motivated by pollution. Environmental chemistry, which focuses on the behavior, consequences, and mitigation of pollutants, has emerged as a crucial sub-discipline as a result of the pressing need to address pollution. In addition, pollution has made it necessary to integrate interdisciplinary techniques, bringing together the fields of chemistry, biology, environmental science, and engineering to provide novel ways to pollution treatment and control. Educational curricula have evolved to incorporate these trends, emphasizing sustainable practices and the environmental implications of chemical processes. This review highlights how the growing awareness of environmental pollution continues to drive innovation and shape the future of chemical education and research, underscoring the importance of chemists in developing sustainable solutions to protect our planet.
Heavy Metal Pollution in Aquatic Ecosystems: A Review of Toxic Impacts and Remediation Strategies Musa Yahaya Abubakar; Kabiru Bashir Ahmad; Twan Sale Mathew; Ruslan Shamsudden; Haladu Mahmud Muhammad; Mohammed Haladu; Ansar Bilyaminu Adam
Kwaghe International Journal of Sciences and Technology Vol 1 No 1 (2024): Kwaghe International Journal of Sciences and Technology
Publisher : Darul Yasin Al Sys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/kijst.v1i1.3621

Abstract

Heavy metals contamination in aquatic ecosystems is a critical environmental issue with far-reaching implications for ecological health and human safety, Heavy metal pollution in aquatic ecosystems is a pressing environmental concern, posing significant risks to aquatic life and human health. This review summarizes the toxic effects of heavy metals (HMs) on aquatic organisms, ecosystems, and human consumers. The study explores the sources, fate, and transport of HMs in aquatic environments, highlighting their bioaccumulation, biomagnification, and ecological impacts. Remediation strategies, including phytoextraction, bioaugmentation, and chemical treatment, are critically eval_uated. Emerging technologies, such as Nano remediation and bioremediation, offer promising solutions. The study showed heavy metal pollution in aquatic ecosystems is a significant environmental challenge that requires coordinated efforts from governments, industries, and communities to mitigate its impacts and protect water quality and aquatic life. By addressing the sources and effects of heavy metals in aquatic habitats, we can mitigate their impact on the environment and human health, ensuring the sustainability of these vital ecosystems.