
Radioactive Pollutant by Nitish Kumar
This book sheds light on the global environmental issue and proposes solutions to contamination through multi-disciplinary approaches. Radioactivity occurs naturally. Ionizing radiation has always been a threat to humans and all other living things on earth. While the average global readings could be a suitable benchmark for what must be deemed "normal," the natural level of radiation exposure varies by around an order of magnitude for different locations of the earth. Regardless of whether this degree of radiation exposure qualifies as innocuous, it cannot be avoided because some diseases may be caused by exposure to naturally occurring radiation. As a result, these natural exposures serve as the foundation for and comparison point for radiation protection principles such as dose limits or limitations. The majority of the ionizing radiation that the world's population is exposed to comes from natural sources The public receives maximum doses from nuclear sites that are now in normal operation those are typically two orders of magnitude below the background radiation. In industrialized nations, medical uses of radioactivity and ionizing radiation result in mean doses that are comparable to those from natural radiation, but individual doses vary greatly.
This edited book brings together a diverse group of researchers to address the challenges posed by global mass poisoning caused by radionuclides. This book contains three sections. First section describes the different sources of radioactive pollutant in the environment. Second section explains the health risk linked to radioactive pollutant. Third section addresses sustainable remediation strategies of radioactive waste and the potential applications of recent biological technology in providing solutions. This book is a valuable resource to students, academics, researchers, and environmental professionals doing field work on management of radioactive waste throughout the world.
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Regional Pollution Governance: Detection, Transmission Mechanisms, and Sustainable Remediation
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Advanced Remediation Techniques for Managing Emerging Contaminants
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Management of Petroleum Wastewater and Oil Field Discharges: Diagnosis, Impacts and Treatment
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Stability of Tropical Rainforest Margins
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Tropical Rainforests and Agroforests under Global Change
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Climate and Land Degradation
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The Fish Production Potential of the Baltic Sea
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Recycling and Reuse Approaches for Better Sustainability
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Environmental Toxicology of Hazardous Material Waste in Public Health Emergencies
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Environmental Science and Technology: Sustainable Development IV
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Rethinking Seaweeds via Applications and Technologies
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Proceedings of the 12th International Conference on Cold Climate HVAC & Energy (Volume 2)
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Municipal Sewage and Sludge: Treatment and Disposal Strategies
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Sustainable Development of Water and Environment
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Recycled Materials in Geotechnical and Pavement Applications
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Sustainable and Cleaner Technologies for Environmental Remediation
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Advances in Chemical, Bio and Environmental Engineering
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Environment and Sustainable Development
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Protect the Water World: Water Pollution Treatment and Related Biotechnology
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Advances in Watersheds Water Pollution and Ecological Restoration
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Spatial Modeling in Forest Resources Management
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Remotely Sensed Rivers in the Age of Anthropocene
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Environmental Impacts of Mining Activities
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Advanced Industrial Wastewater Treatment and Reclamation of Water
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Emerging Sustainable Technologies for Biofuel Production
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Radioactivity Transfer in Environment and Food
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Photobiogeochemistry of Organic Matter
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Experimental and Theoretical Advances in Fluid Dynamics
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Towards Sustainable Livelihoods and Ecosystems in Mountain Regions
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Making Transparent Environmental Management Decisions
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Water Resources Management and Water Pollution Control
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Knowledge Systems of Societies for Adaptation and Mitigation of Impacts of Climate Change
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Plant Responses to Cadmium Toxicity
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Microbial Approach of Biofiltration in Industrial Wastewater Treatment for the Sustainability of Environment
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Soil, Water Pollution and Mitigation Strategies
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Fluid Dynamics in Physics, Engineering and Environmental Applications
Dr. Nitish Kumar has eight years of teaching and research experience in Plant Biotechnology, and is currently working as an Assistant Professor at the Centre for Biological Science, Biotechnology Programme, Central University of South Bihar, India. He received his PhD degree in Botany from CSIR-CSMCRI/Bhavnagar University, India. He received the Outstanding Faculty in Biological Sciences Award from the Venus International Foundation, Chennai, India in 2017. He has received many other awards\fellowships during his academic career from organizations including the CSIR, DBT, ICAR and DST, as well as a Fast Track Young Scientist Award from the DST, Govt. of India in 2013. Dr. Kumar has published more than 40 research papers in peer-reviewed journals of national & international repute. He is a member of several academic bodies/societies and serves as an Associate Editor for the journal GENE.
| SKU | Unavailable |
| ISBN 13 | 9783031737954 |
| ISBN 10 | 3031737954 |
| Title | Radioactive Pollutant |
| Author | Nitish Kumar |
| Series | Environmental Science And Engineering |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | Springer International Publishing AG |
| Year published | 2024-12-11 |
| Number of pages | 402 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |



























































