接触时间变化和吸附剂量编辑器粉煤灰活化NaOH对抗蓝亚甲基吸附

Eksergi Pub Date : 2022-11-15 DOI:10.31315/e.v19i3.7207
Brilian Gema Morentera, Sri Wahyuningsih, Dyan Hatining Ayu Sudarni
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引用次数: 0

摘要

纺织业的快速发展给环境带来了新的问题,其中之一就是染料废物的存在。亚甲蓝是一种对生物有毒的染料,是引发人类发绀和藻类光合作用的原因之一。因此,它需要努力减少,其中之一就是通过吸附。本研究旨在确定吸附剂用量变化和接触时间变化对亚甲基蓝吸附的影响。吸附是发生在吸附剂表面的一种吸附质分子吸附过程。本研究采用PG.Pagottan粉煤灰,经NaOH活化。本研究采用紫外-可见分光光度法测定亚甲蓝在最大波长下的浓度。根据数据,NaOH活化粉煤灰和未活化粉煤灰遵循Langmuir等温线吸附,这意味着形成了单层位点。活化后吸附量也增加,约为21,74mg/g至2325mg/g。基于该研究,粉煤灰具有作为一种新型吸附剂的潜力。
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Pengaruh Variasi Waktu Kontak dan Dosis Adsorben Fly ash teraktivasi NaOH terhadap Adsorpsi Metilen Biru
A rapid growth of  textile industry creates a new problems  on environment, one of those is the presence of dye waste. Methylene blue is one of the dyes which is toxic to living things, one of those triggers cyanosis for human and bother photosyntesis  of algae. Therefore, it needs the effort to reduce, one of those is by adsorption. This study aims to determined the effect of dosage adsorbent variation and contact time variation to adsorb methylene blue. Adsorption is an adsorbate molecule absorption process that occurs on the surface of the adsorbent. This study used fly ash from PG. Pagottan and has been activated by NaOH. Measure method of this study using UV-Vis Spectrophotometry to measure concentration of methylene blue at maximum wavelenght. Based on data, NaOH-activated fly ash and non-activated fly ash  following Langmuir isotherm adsorption, it mean a monolayer site is formed. Adsorption capacity also increase after activation, it about 21,74 mg/g to 23, 25 mg/g. Based on the study fly ash has a potential as a new adsorbent. 
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