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The application of bio absorbents for removal of inorganic materials from water remediation involves repurposing various discarded materials to create efficient and sustainable solutions. Through innovative approaches, waste materials like domestic flower waste and temples residues, are transformed into biosorbents capable of removing toxic contaminants from water sources. This process contributes to both waste management and environmental protection. For this test we are prepare powders of Rose, Hibiscus, Mary gold, Tecoma stans, Chrysanthemum. Then calculate the 8 parameters chlorides, hardness, iron, phosphorus, ammonia, nitrates, sulphates, and florides in the water. Measure the optimization process kinetic study of the best bio absorbents. The study aims to contribute to the advancement of green technologies for water purification by repurposing solid waste into valuable resources.The abstract explores the diverse sources of biosorbents, highlighting their cost- effectiveness and eco-friendliness. The study delves into the synthesis methods, emphasizing the importance of optimizing conditions for enhanced sorption capacities.
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The application of bio absorbents for removal of inorganic materials from water remediation involves repurposing various discarded materials to create efficient and sustainable solutions. Through innovative approaches, waste materials like domestic flower waste and temples residues, are transformed into biosorbents capable of removing toxic contaminants from water sources. This process contributes to both waste management and environmental protection. For this test we are prepare powders of Rose, Hibiscus, Mary gold, Tecoma stans, Chrysanthemum. Then calculate the 8 parameters chlorides, hardness, iron, phosphorus, ammonia, nitrates, sulphates, and florides in the water. Measure the optimization process kinetic study of the best bio absorbents. The study aims to contribute to the advancement of green technologies for water purification by repurposing solid waste into valuable resources.The abstract explores the diverse sources of biosorbents, highlighting their cost- effectiveness and eco-friendliness. The study delves into the synthesis methods, emphasizing the importance of optimizing conditions for enhanced sorption capacities.