Rahayu Hardiani, M. Khair
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摘要

-通过浸渍椰纤维活性炭提高AC-ZnO催化剂对罗丹明B的降解能力进行了研究。采用浸渍法制备了ZnO半导体催化剂对活性炭的催化反应。通过添加5%、10%、15%、20%和25%氧化锌的不同活性炭(AC)浸渍6小时。催化剂在300℃下煅烧105分钟。针对交流氧化锌对罗丹明B的吸附试验结果,采用紫外光照射对罗丹明B溶液(10 ppm)进行了降解试验。获得89.76%。由此可见,椰子纤维活性炭可以支持ZnO对罗丹明b的降解,并通过FTIR对最佳降解率进行表征。表征结果表明,ZnO催化剂制备成功。
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Impregnasi ZnO Karbon Aktif dari Sabut Kelapa (Cocos nucifera L) Fotokatalis Untuk Degradasi Rhodamin B
— Research on increasing the degradation ability of AC-ZnO catalyst against Rhodamine B by impregnation on activated carbon from coconut fiber (Cocos nucifera L) has been carried out. Activated carbon is catalyzed by ZnO semiconductor catalyst by impregnation method. Impregnation was carried out by varying the addition of activated carbon (AC) 5%, 10%, 15%, 20% and 25% ZnO mass for 6 hours. The catalyst was calcined at 300 C for 105 minutes. For the results of the AC-ZnO adsorption test on Rhodamine B, the catalyst was tested on the degradation of Rhodamine B solution (10 ppm) with UV irradiation. obtained 89.76%. This shows that activated carbon from coconut fiber can support to increase the role of ZnO in the degradation of Rhodamine B. Characterization of the optimum degradation yield was carried out by FTIR. The characterization results showed that the ZnO catalyst was successfully formed.
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