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Titlebook: Global Arsenic Hazard; Ecotoxicology and Re Nabeel Khan Niazi,Irshad Bibi,Tariq Aftab Book 2023 The Editor(s) (if applicable) and The Autho

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978-3-031-16362-3The Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Switzerl
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National Human Resource Development in Koreae than the organic ones. Both geogenic and anthropogenic sources led to contamination of terrestrial and aquatic ecosystems with variable As concentrations in over 115 countries worldwide, posing health risk to ~ 250 million people. The pathways of As exposure to humans include drinking well water,
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https://doi.org/10.1007/978-3-662-45983-6. Due to the large population density in Asian countries, such as India, Bangladesh, Pakistan, and China, the problem requires more serious attention. The importance of studying the dynamics of the metalloid in the soil-plant system, as well as the rice plant‘s inherent ability to uptake, transport,
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Arbeitsrelevante Einstellungen,ation options to mitigate mobilization and human health impacts. In situating the As problem in a broader science, concepts related to As chemistry, As pollution, As mobilization, and As toxicity are discussed. Relying on empirical data from mine sites and nearby communities in southwestern Ghana an
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Industrial Relations at the Place of Work,tal, economic, and public concern due to its adverse consequences on global rice production, food safety, and human health. Mining exploitation, weathering of As-bearing minerals, dissolution of aquifer sediments, and As-contaminated groundwater irrigation have extensively contributed to the contami
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https://doi.org/10.1057/9780230374799rption has shown promising results in remediating As, the speciation of As poses a challenge. Bioavailability and mobility of As can be potentially improved with the addition of biochar to contaminated soil systems. Further, biochar modification can also aid in better As removal. Biochar, prepared v
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Human Resource Management im Umbruchjects in recent times. Arsenic translocates in rice plants in a descending manner from root to stem followed by leaf and grain. The present study finds the same descending translocation pattern in paddy grains of a single pedicel of paddy plants in both the arsenic exposed and control sites. The dis
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