4.4 Article

Enhanced Adsorption of Rose Bengal Dye from Aqueous Solution Using NaOH Activated Hydrochar Derived from Corncob Waste

Journal

ADSORPTION SCIENCE & TECHNOLOGY
Volume 2023, Issue -, Pages -

Publisher

HINDAWI LTD
DOI: 10.1155/2023/6695350

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This study prepared hydrochar from corncob wastes through hydrothermal carbonization and activated it with NaOH to enhance its adsorption capabilities. The findings showed that the adsorption capacity of hydrochar was significantly influenced by retention duration, liquid-to-solid ratios, and temperatures. The activated hydrochar exhibited a high specific surface area and adsorption capacity, making it a promising sorbent for removing anionic dyes.
A potential approach to the preparation of affordable activated hydrochar is the hydrothermal carbonization of biomass wastes. In this study, hydrochar was made by hydrothermally carbonizing corncob wastes and then activating them with sodium hydroxide (NaOH). According to the findings, the adsorption capabilities of hydrochar generated at prolonged retention durations, lesser liquid-to-solid ratios, and elevated temperatures were considerably greater. The hydrochars were then analyzed utilizing a variety of characterization methods, and batch tests involving the sorption of rose bengal dye were carried out under a variety of conditions. According to the findings, activated hydrochar has a specific surface area of 12.794 m2/g. In order to better understand and characterize the process of rose bengal dye adsorption, sorption kinetics, and sorption equilibrium onto the produced hydrochars, sorption kinetics and isotherms were further examined through experimental data fitting. The NaOH-activated hydrochar's adsorption capacity was 799.9 mg/g, respectively. The objective of this research was to assess the viability of using NaOH-activated hydrochar derived from corncobs as an economical and efficient sorbent for eliminating anionic dyes like rose bengal from aqueous solutions. Additionally, the study sought to investigate how various factors influence its sorption capabilities and to provide insights into the adsorption process through kinetic and isotherm analyses.

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