The Adsorption of Copper by SBA-15-CPTMS Mesoporous for Water Remediation

The high development of science and technology affects the economic growth and industrialization process. The industrialization process produces industrial waste which contain heavy metal such as copper (Cu). This industrial waste can harm the environment surronding industrial areas where 15 million...

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Main Authors: Dhaneswara Donanta, Delayori Farhan, Utami Siti, Kuskendrianto Falah Riski, Abdurrahman Muhammad Hanif, Fatriansyah Jaka Fajar
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:E3S Web of Conferences
Online Access:https://doi.org/10.1051/e3sconf/20186505007
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spelling doaj-73d93ae5683244ed8d9db06869b33cff2021-04-02T11:27:50ZengEDP SciencesE3S Web of Conferences2267-12422018-01-01650500710.1051/e3sconf/20186505007e3sconf_iccee2018_05007The Adsorption of Copper by SBA-15-CPTMS Mesoporous for Water RemediationDhaneswara DonantaDelayori FarhanUtami SitiKuskendrianto Falah RiskiAbdurrahman Muhammad HanifFatriansyah Jaka FajarThe high development of science and technology affects the economic growth and industrialization process. The industrialization process produces industrial waste which contain heavy metal such as copper (Cu). This industrial waste can harm the environment surronding industrial areas where 15 million or 6% of the Indonesian population live. In order to overcome this problem, mesoporous silica material Santa Barbara Amorphous-15 (SBA-15) is used as an adsorbent. SBA-15 was synthesized through sol gel process using tetraorthosilicate as precursor, Pluronic 123 triblock copolymer as template, and (3-chloropropyl)trimethoxysilane (CPTMS) as functionalized agent. CPTMS was used to modify the SBA-15 surface in order to improve the materials as adsorbent. The materials were characterized using SAXRD and TEM to study material’s cristallinity and pore structure, the presence of organic group was examined using FTIR, the surface area of SBA-15 and SBA-15 CPTMS were characterized using Brunauer Emmett Teller (BET) N2 adsorption isotherm test at 77 K, and the ions concentration in solution after adsorption process was determined using AAS. The crystal structure of SBA-15 and SBA-15 CPTMS was found 2D heksagonal with a more regular SBA-15 pore structure than SBA-15 CPTMS. The surface area of SBA-15-CPTMS was found to be lower than SBA-15, 711.061 m2/g in comparison to 831.996 m2/g. However, in copper adsorption test, it was found that SBA-15-CPTMS has higher adsorption ability.https://doi.org/10.1051/e3sconf/20186505007
collection DOAJ
language English
format Article
sources DOAJ
author Dhaneswara Donanta
Delayori Farhan
Utami Siti
Kuskendrianto Falah Riski
Abdurrahman Muhammad Hanif
Fatriansyah Jaka Fajar
spellingShingle Dhaneswara Donanta
Delayori Farhan
Utami Siti
Kuskendrianto Falah Riski
Abdurrahman Muhammad Hanif
Fatriansyah Jaka Fajar
The Adsorption of Copper by SBA-15-CPTMS Mesoporous for Water Remediation
E3S Web of Conferences
author_facet Dhaneswara Donanta
Delayori Farhan
Utami Siti
Kuskendrianto Falah Riski
Abdurrahman Muhammad Hanif
Fatriansyah Jaka Fajar
author_sort Dhaneswara Donanta
title The Adsorption of Copper by SBA-15-CPTMS Mesoporous for Water Remediation
title_short The Adsorption of Copper by SBA-15-CPTMS Mesoporous for Water Remediation
title_full The Adsorption of Copper by SBA-15-CPTMS Mesoporous for Water Remediation
title_fullStr The Adsorption of Copper by SBA-15-CPTMS Mesoporous for Water Remediation
title_full_unstemmed The Adsorption of Copper by SBA-15-CPTMS Mesoporous for Water Remediation
title_sort adsorption of copper by sba-15-cptms mesoporous for water remediation
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2018-01-01
description The high development of science and technology affects the economic growth and industrialization process. The industrialization process produces industrial waste which contain heavy metal such as copper (Cu). This industrial waste can harm the environment surronding industrial areas where 15 million or 6% of the Indonesian population live. In order to overcome this problem, mesoporous silica material Santa Barbara Amorphous-15 (SBA-15) is used as an adsorbent. SBA-15 was synthesized through sol gel process using tetraorthosilicate as precursor, Pluronic 123 triblock copolymer as template, and (3-chloropropyl)trimethoxysilane (CPTMS) as functionalized agent. CPTMS was used to modify the SBA-15 surface in order to improve the materials as adsorbent. The materials were characterized using SAXRD and TEM to study material’s cristallinity and pore structure, the presence of organic group was examined using FTIR, the surface area of SBA-15 and SBA-15 CPTMS were characterized using Brunauer Emmett Teller (BET) N2 adsorption isotherm test at 77 K, and the ions concentration in solution after adsorption process was determined using AAS. The crystal structure of SBA-15 and SBA-15 CPTMS was found 2D heksagonal with a more regular SBA-15 pore structure than SBA-15 CPTMS. The surface area of SBA-15-CPTMS was found to be lower than SBA-15, 711.061 m2/g in comparison to 831.996 m2/g. However, in copper adsorption test, it was found that SBA-15-CPTMS has higher adsorption ability.
url https://doi.org/10.1051/e3sconf/20186505007
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