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Leveraging plant-based remediation technologies against chromite mining toxicity
Chirasmita Mohanty1, Chinnadurai Immanuel Selvaraj2
1Department of Biotechnology, School of Bio Sciences and Technology, Vellore Institute of Technology, Vellore, Tamil Nadu, India.
Hexavalent chromium from mining contaminates ecosystems and harms health. Biochar and phytoremediation using plants offer sustainable solutions for chromium remediation, protecting human well-being and environments.
Area of Science:
- Environmental Science
- Toxicology
- Bioremediation
Background:
- Chromite mining releases hazardous hexavalent chromium (Cr(VI)) into water, air, and soil.
- Cr(VI) poses significant health risks to humans (respiratory, gastrointestinal, skin) and animals.
- Cr(VI) toxicity impairs plant physiology, affecting germination, nutrient uptake, and growth.
Purpose of the Study:
- To review the environmental and health impacts of hexavalent chromium from mining.
- To highlight sustainable remediation strategies for Cr(VI) contamination.
- To emphasize the role of plants and plant-derived materials in environmental rehabilitation.
Main Methods:
- Review of existing literature on Cr(VI) contamination and remediation.
- Analysis of phytoremediation and nanotechnology approaches.
- Evaluation of biochar as a sustainable remediation agent.
Main Results:
- Hexavalent chromium contamination from mining severely impacts ecosystems and living organisms.
- Phytoremediation and nanotechnology offer innovative solutions for heavy metal removal.
- Biochar, derived from plant waste, is an effective and sustainable material for Cr(VI) remediation.
Conclusions:
- Integrating nature-based solutions like biochar and phytoremediation is crucial for rehabilitating chromite mining regions.
- Sustainable remediation strategies are essential for mitigating the harmful effects of chromium mining.
- Protecting human health and ecosystems requires a holistic approach to managing Cr(VI) contamination.
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