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- W3047100712 abstract "Living organisms require trace amounts of some heavy metals including copper, lead, magnesium, vanadium, zincetc. Human activities have influenced bio-chemical and geological cycles. Metal ions become toxic in nature whenthey are beyond tolerance limit. In aquatic ecosystem, fishes and microbes have close, intimate and unseparatedcontact from the embryonic to adult stage. Bioremediation is therefore an eco-friendly and efficient method ofreclaiming environments contaminated with heavy metals by making use of the inherent biological mechanismsof microorganisms and plants to eradicate hazardous contaminants. Microbes play a key role in controlling thespeciation and cycling of metals in water. Bio-availability, toxicity and reactivity of metals is greatly influenced tohave a better understanding of the major factors that link microbial activity to the bio-geo-chemistry of metals.Micro-organism and other natural products plants and animals and there by- products capable of cycling metalsfor bio-remediation of contaminated site without any side effect on environment. This investigation discusses thetoxic effects of heavy metal pollution and the mechanisms used by microbes for environmental remediation. It alsoemphasized the importance of modern techniques and approaches in improving the ability of microbial enzymesto effectively degrade heavy metals at a faster rate, highlighting recent advances in microbial bioremediation for theremoval of heavy metals from the environment." @default.
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- W3047100712 date "2021-01-01" @default.
- W3047100712 modified "2023-09-27" @default.
- W3047100712 title "Spirulina platensis and Chlorella vulgaris Assisted Bioremediation Heavy Metal Contaminated Aquatic Ecosystem" @default.
- W3047100712 doi "https://doi.org/10.35248/1948-5948.21.13.457" @default.
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