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- W4211241623 abstract "Global industrialization in recent years has resulted in the emission of abundant anthropogenic chemicals in the surroundings and ecosystem worldwide. The management and the use of anthropogenic chemicals like pesticides are associated with a history of complications because of the lack of storage, use, and proper planning. Lately, pesticides tend to be an alarming risk to human health and the environment globally due to their transportation in soil, water, or over long distances, bioaccumulation in the food chain, and their dispersion affinity. Therefore, it is of great importance for remediating and destructing the pesticide-contaminated sites. One of the promising technologies, which has drawn the attention of various researchers over the years for eliminating these pollutants is phytoremediation, often considered as green technology. It is a plant-based innovative and cost-effective technology that involves the rhizospheric interaction of plants or transgenic plants and microbes for producing the pesticide degrading enzymes like carboxylesterase, peroxidase, peroxygenase, cytochrome P450, etc., at the contaminated sites that can mineralize and degrade different classes of pesticides and their subsequent metabolites. Phytoremediation involves several processes like rhizodegradation, phytovolatilization, rhizofilteration, phytostabilization, phytotransformation, phytogedradation, and phytoaccumlation. This low-cost technology takes advantage of the ability of the plant to remove or make environmental pollutants such as pesticides less harmful or less dangerous which makes it one of the rising technologies worldwide. This chapter gives an overview of different classes of pesticides, focuses on the role of phytoremediation technology on pesticide pollution, processes uptaken by plants in eliminating these pollutants, and shedding light on the rhizospheric plant bacterial association for the enhanced degradation." @default.
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- W4211241623 date "2022-01-01" @default.
- W4211241623 modified "2023-09-23" @default.
- W4211241623 title "Green technology: Phytoremediation for pesticide pollution" @default.
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- W4211241623 doi "https://doi.org/10.1016/b978-0-323-85763-5.00008-8" @default.
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