The effect of the process condition on synthesis amorphous silica alumina from metakaolin on pore structure and crystallinity of product

The objective of the research to study the effect of amorphous silica alumina (ASA) synthesis condition on pore structure and crystallinity. Synthesis of ASA was done by co-precipitation method, that preceded by neutralization to form a sol phase, followed by introducing a silica solution, and then...

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Main Authors: Rahayu Endang Sri, Subiyanto Gatot, Shoelarta Shoerya, Hartono Marvin Indi, Elisafa Hagai
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2019/17/matecconf_rsce18_04002.pdf
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spelling doaj-c0cc452d6672432ebf701cf0812c86b52021-02-02T05:39:58ZengEDP SciencesMATEC Web of Conferences2261-236X2019-01-012680400210.1051/matecconf/201926804002matecconf_rsce18_04002The effect of the process condition on synthesis amorphous silica alumina from metakaolin on pore structure and crystallinity of productRahayu Endang Sri0Subiyanto GatotShoelarta ShoeryaHartono Marvin IndiElisafa HagaiDepartment of Chemical Engineering, Bandung State PolytechnicThe objective of the research to study the effect of amorphous silica alumina (ASA) synthesis condition on pore structure and crystallinity. Synthesis of ASA was done by co-precipitation method, that preceded by neutralization to form a sol phase, followed by introducing a silica solution, and then aging to form an amorphous phase. Alumina solution is resulted by leaching of metakaolin from kaolin Belitung, Indonesia. The use of alumina source from this kaolin is a novelty method. Process conditions synthesis of ASA were varied on Si /Al ratio, time of neutralization and time of aging. While, a pH and temperature of neutralization are as independent process variable, of 7-8 and 50-55 °C, respectively. Characterization of ASA was performed using XRD, surface area and pore analyzer. The increasing of Si/Al ratio in starting material affects on the surface area of ASA, as well as with aging time. The best product of ASA with a specific surface area of 510 m2/g, average pore diameter of 85 Å, a total pore volume of 1.1 mL/g, and an amorphous phase of 53%-mass were observed.https://www.matec-conferences.org/articles/matecconf/pdf/2019/17/matecconf_rsce18_04002.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Rahayu Endang Sri
Subiyanto Gatot
Shoelarta Shoerya
Hartono Marvin Indi
Elisafa Hagai
spellingShingle Rahayu Endang Sri
Subiyanto Gatot
Shoelarta Shoerya
Hartono Marvin Indi
Elisafa Hagai
The effect of the process condition on synthesis amorphous silica alumina from metakaolin on pore structure and crystallinity of product
MATEC Web of Conferences
author_facet Rahayu Endang Sri
Subiyanto Gatot
Shoelarta Shoerya
Hartono Marvin Indi
Elisafa Hagai
author_sort Rahayu Endang Sri
title The effect of the process condition on synthesis amorphous silica alumina from metakaolin on pore structure and crystallinity of product
title_short The effect of the process condition on synthesis amorphous silica alumina from metakaolin on pore structure and crystallinity of product
title_full The effect of the process condition on synthesis amorphous silica alumina from metakaolin on pore structure and crystallinity of product
title_fullStr The effect of the process condition on synthesis amorphous silica alumina from metakaolin on pore structure and crystallinity of product
title_full_unstemmed The effect of the process condition on synthesis amorphous silica alumina from metakaolin on pore structure and crystallinity of product
title_sort effect of the process condition on synthesis amorphous silica alumina from metakaolin on pore structure and crystallinity of product
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2019-01-01
description The objective of the research to study the effect of amorphous silica alumina (ASA) synthesis condition on pore structure and crystallinity. Synthesis of ASA was done by co-precipitation method, that preceded by neutralization to form a sol phase, followed by introducing a silica solution, and then aging to form an amorphous phase. Alumina solution is resulted by leaching of metakaolin from kaolin Belitung, Indonesia. The use of alumina source from this kaolin is a novelty method. Process conditions synthesis of ASA were varied on Si /Al ratio, time of neutralization and time of aging. While, a pH and temperature of neutralization are as independent process variable, of 7-8 and 50-55 °C, respectively. Characterization of ASA was performed using XRD, surface area and pore analyzer. The increasing of Si/Al ratio in starting material affects on the surface area of ASA, as well as with aging time. The best product of ASA with a specific surface area of 510 m2/g, average pore diameter of 85 Å, a total pore volume of 1.1 mL/g, and an amorphous phase of 53%-mass were observed.
url https://www.matec-conferences.org/articles/matecconf/pdf/2019/17/matecconf_rsce18_04002.pdf
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