ADSORPTION DEHP USING PAN/GO-FE3O4 COMPOSITE MATERIAL

DEHP (di-(2-ethylhexyl)phthalate) is a plasticizer that is widely used as an additive added to polymers such as in food and beverage packaging products, beauty, household appliances, as well as medical equipment. DEHP waste in waters can pose a risk of hepatomegaly and tests toxicity. The method tha...

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Main Author: Ma'rifatussolihat
Format: Final Project
Language:Indonesia
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Online Access:https://digilib.itb.ac.id/gdl/view/60600
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:60600
spelling id-itb.:606002021-09-18T11:38:17ZADSORPTION DEHP USING PAN/GO-FE3O4 COMPOSITE MATERIAL Ma'rifatussolihat Kimia Indonesia Final Project adsorption, adsorption performance, di-(2-ethylhexyl)phtalate (DEHP), PAN/GO-Fe3O4. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/60600 DEHP (di-(2-ethylhexyl)phthalate) is a plasticizer that is widely used as an additive added to polymers such as in food and beverage packaging products, beauty, household appliances, as well as medical equipment. DEHP waste in waters can pose a risk of hepatomegaly and tests toxicity. The method that has been used to remove DEHP is the Rotating Biological Contractor but the disadvantage is that the operation and maintenance process is difficult. Adsorption can be an alternative in the removal of DEHP because the process is simple. PAN (poliakrilonitril) has been widely used to remove organic contaminants in water. Modification by using GO- Fe3O4 can improve the physical properties and chemical stability of PAN. In this study the composite material synthesized from poliakrilonitril modified GO-Fe3O4 in dimethylformamide solvent has been carried out by the casting method, characterizing it and evaluating the performance parameters of the adsorp si by determining the optimum conditions for absorption of DEHP. Characterization results using FTIR obtained dominant peaks at 530- 570 cm-1, 2244 cm-1 and 3464-3579 cm-1 indicating the presence of Fe-O bonds, CN groups and OH groups. Surface morphology and cross-section were evaluated using SEM-EDS. The optimum conditions for DEHP adsorption occurred at a contact time of 90 minutes, the mass of the PAN/GO-Fe3O4 material was 0.08 grams, the temperature was 25°C and the initial concentration of the analyte was 300 ppm. The results of the study of adsorption kinetics found that the adsorption process followed a pseudo-first order. The results of the adsorption isotherm study showed that the adsorption process followed the Langmuir isotherm. The adsorption thermodynamic parameters showed that the adsorption process was exothermic with delta H° = -63.122 kJ/mol. From the results of the literature review, it can be seen that the DEHP adsorption kinetics and isotherms are mostly the same as the results obtained from the experiment. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
topic Kimia
spellingShingle Kimia
Ma'rifatussolihat
ADSORPTION DEHP USING PAN/GO-FE3O4 COMPOSITE MATERIAL
description DEHP (di-(2-ethylhexyl)phthalate) is a plasticizer that is widely used as an additive added to polymers such as in food and beverage packaging products, beauty, household appliances, as well as medical equipment. DEHP waste in waters can pose a risk of hepatomegaly and tests toxicity. The method that has been used to remove DEHP is the Rotating Biological Contractor but the disadvantage is that the operation and maintenance process is difficult. Adsorption can be an alternative in the removal of DEHP because the process is simple. PAN (poliakrilonitril) has been widely used to remove organic contaminants in water. Modification by using GO- Fe3O4 can improve the physical properties and chemical stability of PAN. In this study the composite material synthesized from poliakrilonitril modified GO-Fe3O4 in dimethylformamide solvent has been carried out by the casting method, characterizing it and evaluating the performance parameters of the adsorp si by determining the optimum conditions for absorption of DEHP. Characterization results using FTIR obtained dominant peaks at 530- 570 cm-1, 2244 cm-1 and 3464-3579 cm-1 indicating the presence of Fe-O bonds, CN groups and OH groups. Surface morphology and cross-section were evaluated using SEM-EDS. The optimum conditions for DEHP adsorption occurred at a contact time of 90 minutes, the mass of the PAN/GO-Fe3O4 material was 0.08 grams, the temperature was 25°C and the initial concentration of the analyte was 300 ppm. The results of the study of adsorption kinetics found that the adsorption process followed a pseudo-first order. The results of the adsorption isotherm study showed that the adsorption process followed the Langmuir isotherm. The adsorption thermodynamic parameters showed that the adsorption process was exothermic with delta H° = -63.122 kJ/mol. From the results of the literature review, it can be seen that the DEHP adsorption kinetics and isotherms are mostly the same as the results obtained from the experiment.
format Final Project
author Ma'rifatussolihat
author_facet Ma'rifatussolihat
author_sort Ma'rifatussolihat
title ADSORPTION DEHP USING PAN/GO-FE3O4 COMPOSITE MATERIAL
title_short ADSORPTION DEHP USING PAN/GO-FE3O4 COMPOSITE MATERIAL
title_full ADSORPTION DEHP USING PAN/GO-FE3O4 COMPOSITE MATERIAL
title_fullStr ADSORPTION DEHP USING PAN/GO-FE3O4 COMPOSITE MATERIAL
title_full_unstemmed ADSORPTION DEHP USING PAN/GO-FE3O4 COMPOSITE MATERIAL
title_sort adsorption dehp using pan/go-fe3o4 composite material
url https://digilib.itb.ac.id/gdl/view/60600
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