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Rabia Baby

Researcher at Universiti Putra Malaysia

Publications -  16
Citations -  293

Rabia Baby is an academic researcher from Universiti Putra Malaysia. The author has contributed to research in topics: Chemistry & Freundlich equation. The author has an hindex of 4, co-authored 6 publications receiving 120 citations. Previous affiliations of Rabia Baby include Sukkur Institute of Business Administration.

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Carbon Nanomaterials for the Treatment of Heavy Metal-Contaminated Water and Environmental Remediation

TL;DR: Recent advancements in the applications of carbon nanotubes, fullerenes, graphene, graphene oxide, and activated carbon in the treatment of heavy metal-contaminated water and their application in environmental remediation are reviewed.
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Palm Kernel Shell as an effective adsorbent for the treatment of heavy metal contaminated water.

TL;DR: The palm oil kernel shell (PKS), an agricultural waste is utilized as effective adsorbent for the removal of heavy metals, namely; Cr6+, Pb2+, Cd2+ and Zn2+ from water.
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Dual Drugs Anticancer Nanoformulation using Graphene Oxide-PEG as Nanocarrier for Protocatechuic Acid and Chlorogenic Acid

TL;DR: The designed formulation was biocompatible with normal 3T3 cells and showed strong anticancer activity against liver and colon cancer cells, and the in vitro release of the drugs PCA and CA was found to be of sustained manner which took more than 100 h for the release.
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Ecofriendly Approach for Treatment of Heavy-Metal-Contaminated Water Using Activated Carbon of Kernel Shell of Oil Palm.

TL;DR: This study converted palm kernel shells from a palm oil plantation into activated carbon having a surface area of 1099 m2/g using phosphoric acid as an activator and applied it for the treatment of heavy metal-contaminated water.
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Functionalized Activated Carbon Derived from Palm Kernel Shells for the Treatment of Simulated Heavy Metal-Contaminated Water.

TL;DR: In this article, functionalized activated carbon (FAC) was used for the treatment of heavy metal-contaminated water using different adsorption parameters, i.e., solution pH, contact time, adsorbent dosage and heavy metal ion concentrations, and these parameters were systematically optimized.