MODIFICATION OF IRON OXIDE CATALYSTS SUPPORTED ON THE BIOMASS BASED ACTIVATED CARBON FOR DEGRADATION OF DYE WASTEWATER

Shinta Amelia, W. B. Sediawan, Z. Mufrodi, T. Ariyanto
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引用次数: 8

Abstract

Methylene blue is one of the dyes in textile industries which has a negative impact on the environment. This compound is very stable, so it is difficult to degrade naturally. Methylene blue can be harmful to the environment if it is in a very large concentration, because it can increase the value of Chemical Oxygen Demand (COD) which can damage the balance of environment ecosystem. Adsorption method by using activated carbon as the adsorbent is one of the most efficient and effective techniques in dye removal due to its large adsorption capacity. However, the adsorption method using activated carbon only removes the pollutant compounds to other media or phases. Other method that can be used includes Advanced Oxidation Processes (AOPs). This method has the advantage of being able to degrade harmful compounds in the waste through oxidation (oxidative degradation) processes. One method of AOPs is the process by using Fenton reagents. This study was aimed to prepare and characterize iron oxide/porous activated carbon catalyst. The type of porous activated carbon used was carbon from biomass derived carbon with microporous character. This biomass carbon is obtained from renewable natural products, namely coconut shell.The kinetics and adsorption models in the material will be derived and evaluated from the research data. Based on the research, it can be concluded that catalytic degradation is very effective for degradation of dye wastewater. Methylene blue degradation increases with the use of Fe2O3/activated carbon catalyst and the addition of hydrogen peroxide as the Fenton reagent. In addition, the pore structure difference in the catalyst also had a significant effect on the methylene blue degradation reaction resulting in increased capacity of methylene blue degradation reactions.
生物质活性炭负载氧化铁催化剂降解染料废水的研究
亚甲基蓝是纺织工业中对环境有负面影响的染料之一。这种化合物非常稳定,因此很难自然降解。如果亚甲基蓝的浓度非常高,它会对环境有害,因为它会增加化学需氧量(COD)的值,从而破坏环境生态系统的平衡。以活性炭为吸附剂的吸附法由于具有较大的吸附能力,是去除染料最有效的技术之一。然而,使用活性炭的吸附方法仅将污染物化合物去除到其他介质或相中。可以使用的其他方法包括高级氧化工艺(AOPs)。这种方法的优点是能够通过氧化(氧化降解)过程降解废物中的有害化合物。AOP的一种方法是使用芬顿试剂的过程。本研究旨在制备氧化铁/多孔活性炭催化剂并对其进行表征。所使用的多孔活性炭的类型是来自具有微孔特性的生物质衍生碳的碳。这种生物质碳是从可再生的天然产品,即椰子壳中获得的。材料中的动力学和吸附模型将根据研究数据进行推导和评估。研究表明,催化降解染料废水是非常有效的。使用Fe2O3/活性炭催化剂和添加过氧化氢作为芬顿试剂会增加亚甲蓝的降解。此外,催化剂中的孔结构差异也对亚甲蓝降解反应产生了显著影响,导致亚甲蓝的降解反应能力增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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