1. Phytoremediation of heavy metals: A Review 2. Biogenic nanoparticles enhance the phytoremediation potential of medicinal and aromatic plants 3. Heavy Metal Accumulation Potential of Medicinal plants: Phytoremediation perspective 4. Role of microbial nanotechnology in medicinal plants growth and phytoremediation 5. Phytoremediation Potential of Ocimum sanctum: A Sustainable Approach for Remediation of Heavy Metals 6. Understanding the potential of Cymbopogon species in remediation of heavy metal contaminated soils 7. An overview on aspects, possibilities, remediation and fortification of contaminants via medicinal and aromatic plants 8. Phytoremediation efficiency improvement: Role of nanoparticles and need for optimizations 9. Role of Aromatic and medicinal plants in phytoremediation of heavy metal pollutants 10. Sustainability of Aromatic Plants In Remediation of Cadmium From Contaminated Sites 11. Assessment of heavy metals and their induced toxicity in medicinal plants: a public health concern 12. Medicinal Plants and Their Role in Mitigation of Arsenic Induced Toxicity 13. Phytoremediation of Arsenic: An Overview
The book brings about a critical overview of the prospects of utilizing medicinal and aromatic plants in phytoremediation including their utility, economical benefits and human safety issues.
Environmental contamination of heavy metals is a major problem, threatening sustainable agricultural production and health of millions of people. The extensive distribution of heavy metals in soil and water makes it necessary to employ environment-friendly low-cost and sustainable approaches for the remediation of contaminated sites. Phytoremediation has been considered a viable approach to meet these demands; however, it must provide some economic gains too. The use of economically important medicinal and aromatic plants is helpful in restoration of metal-contaminated sites and l!