椰子壳活性Adsoben活性试验与活性位点2 - 3进行了改装

Shinta Amelia, Zahrul Mufrodi
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引用次数: 0

摘要

在纺织工业中使用染料会产生负面影响,即如果废物直接排放到河流中或未经适当处理,则会造成水污染。纺织工业的废液通常仍含有对生物和环境有害的染料。本研究以椰壳改性活性炭为原料,加入活性位点fe2o3,采用染料吸附法。对铁/多孔氧化物活性炭吸附剂进行了表征和活性测试。所采用的多孔活性炭为具有微孔特性的椰壳活性炭。本研究的阶段包括氧化铁在多孔碳上的浸渍过程、亚甲基蓝的吸附过程和所得吸附剂的表征。通过以上研究可知,椰壳活性炭吸附fe2o3是一种非常有效的染料废水处理方法。随着Fe活性位点负载浓度的增加,亚甲基蓝的吸附量增加,在氧化铁/椰壳吸附剂负载2%的情况下,180 min的吸附率为89.8%。此外,从吸附剂质量添加量变化对吸附剂活性的测试结果可以看出,吸附剂质量的增加对蓝亚甲基吸附收率有显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Uji Aktivitas Adsoben Karbon Aktif Tempurung Kelapa Termodifikasi dengan Active Site Fe2O3
The use of dyes in the textile industry has a negative impact, namely water pollution if the waste is discharged directly into the river or not treated properly. Liquid waste from the textile industry generally still contains dyes that are harmful to living things and the environment. In this study the dye adsorption method was used by using modified activated carbon from the coconut shell with the addition of the active site Fe 2 O 3 . Characterization and activity testing of iron / porous oxide activated carbon adsorbent will be carried out. The type of porous activated carbon used is coconut shell carbon with micropore characters. The stages of this study consisted of the impregnation process of iron oxide on porous carbon, the methylene blue adsorption process and the characterization of the resulting adsorbent. Based on the research that has been done, it can be concluded that the adsorption of Fe 2 O 3 / coconut shell activated carbon is very effectively applied for the absorption of dye wastewater. The adsorption capacity of methylene blue increased with increasing concentrations of loading of active sites of Fe and the percentage of adsorption capacity in the 180 minute reaction was 89.8% with the loading of iron oxide / coconut shell adsorbent 2%. In addition, from the results of the adsorbent activity test with variations in the mass addition of the adsorbent it can be concluded that the mass increase of the adsorbent significantly affected the yield of blue methylene adsorption.
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