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Titlebook: Arsenic Toxicity Remediation; Sustainable Nexus Ap Nitish Kumar,Muhammad Zaffar Hashmi,Shuhong Wang Book 2024 The Editor(s) (if applicable)

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https://doi.org/10.1007/978-3-031-15553-6xicity is a cost-effective and environment-friendly strategy as AMF has a symbiotic relationship with the host plant. However, Biochar has recently gained interest for its capacity to adsorb pollutants. Biochar is a biological residue combusted under low oxygen conditions, resulting in a porous, low
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Bruno Carpentieri,Francesco Palmieriich employs desalination for As removal. However, not much has been done regarding the commercialization of this method. Furthermore, commercial techniques for As removal are also discussed along with emerging technologies. Among commercial techniques, Bangladesh Council of Scientific and Industrial
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Source and Distribution of Arsenic in Soil and Water Ecosystemgeneral, tends to collect in some areas because of things like geological conditions and human activity. High levels of As in geological formations or areas with a high concentration of mining or industrial activity are frequently found in areas with high As concentrations in soil and water. For man
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Source Generation of Arsenic Species and Spatial Distribution in Benthic Ecosystem: A Reviewcess by which new living species arise; this area has been extensively explored in marine habitats and has somewhat been well-researched but less is known about it in freshwater ecosystems. Numerous studies in estuarine ecosystems are well-documented that the main form of arsenic turnover is identic
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Arsenic Exposure Through Dietary Intake and Associated Health Hazards exposure to arsenic can lead to developing cancers in the lungs, kidneys, bladder, skin, and prostate. Though the molecular-level activity that causes cancers is unclear, exposure to arsenic can cause DNA damage, induce cell proliferation, obstruct nucleotide repair, and shut down cellular apoptoti
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Arsenic Contamination in Drinking Water and Healthpmental abnormalities. The precise mechanisms at play, though, remain unknown. In this chapter, we evaluate the molecular processes behind arsenic’s neurotoxic effects. The consequences of arsenic on intellectual and mental function during development are discussed, followed by research demonstratin
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Toward Sustainable Arsenic Mitigation in Bangladesh and Nepal: Differences in Conditions and Progres safe water facilities at an early stage of arsenic mitigation. In contrast, the government of Nepal distributed numerous arsenic removal filters for emergency purposes, most of which were unoperated as of 2015. Third, the two countries differ in hydrogeological conditions (the most popular alternat
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Microbial Removal of Arsenic: An Updateinated soils, waters, and sediments was discussed. Finally, the limitations and challenges of microbial remediation of arsenic were discussed. Overall, microbial removal of arsenic is an effective method to reduce contamination levels. This chapter provides an update on the current state of research
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