通过在甘蔗渣活性炭上浸渍氧化锌提高罗丹明 B 的降解能力

Winda Anisa, M. Khair
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引用次数: 0

摘要

-研究的目的是了解由甘蔗渣废料制成的活性炭的特性,用浸渍法作为氧化锌催化剂的载体,以及催化剂降解罗丹明B染料的能力。将不同浓度的Zn(no3) 2.6 h2o浸渍活性炭,分别为5%、10%、15%、20%和25%至15 g Zn(no3) 2.6 h2o,然后将浸渍后的KA/ZnO与10 ppm罗丹明B染料接触,降解时间为120分钟。KA/ZnO用量分别为25 mg、50 mg和75 mg。KA/ZnO催化剂的FTIR(傅里叶变换红外光谱)结果表明,Zn-O分子进入了活性炭的孔隙,在426.28 cm-1、419.52 cm-1和437.85 cm-1波长处出现了吸收峰。紫外可见分光光度计测定结果表明,在KA/ZnO浓度为10%、催化剂质量为75 mg时,罗丹明B染料的降解率最高,为88.23%。
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Peningkatan Kemampuan Degradasi ZnO Terhadap Rhodamin B Dengan Impregnasinya Pada Karbon Aktif Dari Ampas Tebu
— Research has been carried out with the aim of knowing the characteristics of activated carbon made from bagasse waste to be used as a support for zinc oxide (ZnO) catalysts using the impregnation method and the ability of the catalyst to degrade Rhodamin B dyes. Activated carbon is impregnated with Zn(NO 3 ) 2 .6H 2 O with variations activated carbon 5%, 10%, 15%, 20%, and 25% to 15 gram mass of Zn(NO 3 ) 2 .6H 2 O. The impregnated KA/ZnO was then contacted with 10 ppm Rhodamine B dye with a degradation time of 120 minutes. The mass of KA/ZnO used was 25 mg, 50 mg and 75 mg. The FTIR (Fourier Transform Infra Red) results of the KA/ZnO catalyst show that Zn-O molecules have entered into the pores of the activated carbon marked by the appearance of absorption peaks at wavelengths of 426.28 cm-1, 419.52 cm-1, and 437.85 cm-1 . The results of UV-Vis spectrophotometer measurements obtained the highest degradation percentage of Rhodamin B dye, namely 88.23% at 10% KA/ZnO with a catalyst mass of 75 mg.
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