Pengolahan Minyak Jelantah Menggunakan Membran Poliamida/Titanium Dioksida/Arang Aktif Kulit Durian

Processing of wasted cooking oil uses the photocatalyst method with metal catalysts and zeolites to reduce organic compounds. In this study, researchers used activated charcoal from durian skin and titanium dioxide embedded in a polyamide membrane as an adsorbent which was used as a medium for proce...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Rika Endara Safitri, Ria Sheftiana Rusli Hayaati
Formato: article
Lenguaje:EN
ID
Publicado: Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Andalas 2021
Materias:
Acceso en línea:https://doaj.org/article/6996773d81d04052bfead3ece6ad2e1c
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:6996773d81d04052bfead3ece6ad2e1c
record_format dspace
spelling oai:doaj.org-article:6996773d81d04052bfead3ece6ad2e1c2021-12-02T18:47:31ZPengolahan Minyak Jelantah Menggunakan Membran Poliamida/Titanium Dioksida/Arang Aktif Kulit Durian1978-628X2476-896010.25077/jrk.v12i2.410https://doaj.org/article/6996773d81d04052bfead3ece6ad2e1c2021-09-01T00:00:00Zhttp://jrk.fmipa.unand.ac.id/index.php/jrk/article/view/410https://doaj.org/toc/1978-628Xhttps://doaj.org/toc/2476-8960Processing of wasted cooking oil uses the photocatalyst method with metal catalysts and zeolites to reduce organic compounds. In this study, researchers used activated charcoal from durian skin and titanium dioxide embedded in a polyamide membrane as an adsorbent which was used as a medium for processing wasted cooking oil. The purpose of this study was to determine the effect of processing used cooking oil using a membrane of polyamide/titanium dioxide/durian peels activated charcoal on changes in the characteristics of wasted cooking oil. Based on the results of research on the processing of wasted cooking oil with a membrane of polyamide/titanium dioxide/activated charcoal from durian peels, there was an increase in water content by 10.21%, a decrease in free fatty acids by 33.75%, a decrease in the peroxide number by 18.33%. Used cooking oil that has passed through the membrane has a decrease in %Transmission for the functional groups of C-H alkenes, C-O esters, and C-H alkanes. In the analysis of the compound content by mass spectrophotometry, it was found that the content of the methyl ester compound with the C17 and C19 chains was close to the composition of the biodiesel constituents.Rika Endara SafitriRia Sheftiana Rusli HayaatiDepartment of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Andalasarticlepolyamidetitanium dioxidewasted cooking oilactived charcoalChemistryQD1-999BiochemistryQD415-436ENIDJurnal Riset Kimia, Vol 12, Iss 2 (2021)
institution DOAJ
collection DOAJ
language EN
ID
topic polyamide
titanium dioxide
wasted cooking oil
actived charcoal
Chemistry
QD1-999
Biochemistry
QD415-436
spellingShingle polyamide
titanium dioxide
wasted cooking oil
actived charcoal
Chemistry
QD1-999
Biochemistry
QD415-436
Rika Endara Safitri
Ria Sheftiana Rusli Hayaati
Pengolahan Minyak Jelantah Menggunakan Membran Poliamida/Titanium Dioksida/Arang Aktif Kulit Durian
description Processing of wasted cooking oil uses the photocatalyst method with metal catalysts and zeolites to reduce organic compounds. In this study, researchers used activated charcoal from durian skin and titanium dioxide embedded in a polyamide membrane as an adsorbent which was used as a medium for processing wasted cooking oil. The purpose of this study was to determine the effect of processing used cooking oil using a membrane of polyamide/titanium dioxide/durian peels activated charcoal on changes in the characteristics of wasted cooking oil. Based on the results of research on the processing of wasted cooking oil with a membrane of polyamide/titanium dioxide/activated charcoal from durian peels, there was an increase in water content by 10.21%, a decrease in free fatty acids by 33.75%, a decrease in the peroxide number by 18.33%. Used cooking oil that has passed through the membrane has a decrease in %Transmission for the functional groups of C-H alkenes, C-O esters, and C-H alkanes. In the analysis of the compound content by mass spectrophotometry, it was found that the content of the methyl ester compound with the C17 and C19 chains was close to the composition of the biodiesel constituents.
format article
author Rika Endara Safitri
Ria Sheftiana Rusli Hayaati
author_facet Rika Endara Safitri
Ria Sheftiana Rusli Hayaati
author_sort Rika Endara Safitri
title Pengolahan Minyak Jelantah Menggunakan Membran Poliamida/Titanium Dioksida/Arang Aktif Kulit Durian
title_short Pengolahan Minyak Jelantah Menggunakan Membran Poliamida/Titanium Dioksida/Arang Aktif Kulit Durian
title_full Pengolahan Minyak Jelantah Menggunakan Membran Poliamida/Titanium Dioksida/Arang Aktif Kulit Durian
title_fullStr Pengolahan Minyak Jelantah Menggunakan Membran Poliamida/Titanium Dioksida/Arang Aktif Kulit Durian
title_full_unstemmed Pengolahan Minyak Jelantah Menggunakan Membran Poliamida/Titanium Dioksida/Arang Aktif Kulit Durian
title_sort pengolahan minyak jelantah menggunakan membran poliamida/titanium dioksida/arang aktif kulit durian
publisher Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Andalas
publishDate 2021
url https://doaj.org/article/6996773d81d04052bfead3ece6ad2e1c
work_keys_str_mv AT rikaendarasafitri pengolahanminyakjelantahmenggunakanmembranpoliamidatitaniumdioksidaarangaktifkulitdurian
AT riasheftianaruslihayaati pengolahanminyakjelantahmenggunakanmembranpoliamidatitaniumdioksidaarangaktifkulitdurian
_version_ 1718377628255125504