ctrlnum 1982
fullrecord <?xml version="1.0"?> <dc schemaLocation="http://www.openarchives.org/OAI/2.0/oai_dc/ http://www.openarchives.org/OAI/2.0/oai_dc.xsd"><relation>http://eprints.polsri.ac.id/1982/</relation><title>RANCANG BANGUN ALAT PEMBUATAN BIODIESEL BERBAHAN BAKU MINYAK JELANTAH (DITINJAU DARI TEMPERATUR &#xD; PEMANASAN TERHADAP VOLUME BIODIESEL)&#xD; </title><creator>Dimyati, Moch Fariz </creator><subject>TP Chemical technology</subject><description>Our Energy consumption is still focused on oil and gas energy. One attempt to do is by providing a source of alternative energy as a diesel fuel that is now being developed is biodiesel. Biodiesel can be made by raw materials of cooking palm oil which is one of the raw material that have a chance of making biodiesel, because these oils still contain triglycerides, in addition to free fatty acids. Biodiesel production process is done by going through the phases of oil filtration, oil transesterification into biodiesel, and biodiesel washing. The product of methyl ester is affected by the feed ratio of waste cooking oil and methanol also the operating conditions during the process. Biodiesel production from waste cooking oil by using transesterification process be held in 60 minutes that use feed ratio of 1:4 and use 1% of NaOH catalyst. The heating temperature variations are used at 35 oC, 40 oC, 45 oC, 50 oC and 55 oC. The result showed that the highest volume of biodiesel products are 418.0204 ml for variations in heating temperature 45 oC with energy consumption of 729.000 joules.&#xD; &#xD; Keywords : Biodiesel, Energy Consumption, Waste Cooking Oil, Transesterification &#xD; &#xD; </description><date>2015-10</date><type>Thesis:Thesis</type><type>PeerReview:NonPeerReviewed</type><type>Book:Book</type><language>eng</language><identifier>http://eprints.polsri.ac.id/1982/1/TUGAS%2BAKHIR%2BMOCH%2BFARIZ%2BDIMYATI.pdf</identifier><type>Book:Book</type><language>eng</language><identifier>http://eprints.polsri.ac.id/1982/2/BAB%2BI.pdf</identifier><type>Book:Book</type><language>eng</language><identifier>http://eprints.polsri.ac.id/1982/3/BAB%2BII.pdf</identifier><type>Book:Book</type><language>eng</language><identifier>http://eprints.polsri.ac.id/1982/4/BAB%2BIII.pdf</identifier><type>Book:Book</type><language>eng</language><identifier>http://eprints.polsri.ac.id/1982/5/BAB%2BIV.pdf</identifier><type>Book:Book</type><language>eng</language><identifier>http://eprints.polsri.ac.id/1982/6/BAB%2BV.pdf</identifier><type>Book:Book</type><language>eng</language><identifier>http://eprints.polsri.ac.id/1982/7/DAFTAR%2BPUSTAKA.pdf</identifier><identifier> Dimyati, Moch Fariz (2015) RANCANG BANGUN ALAT PEMBUATAN BIODIESEL BERBAHAN BAKU MINYAK JELANTAH (DITINJAU DARI TEMPERATUR PEMANASAN TERHADAP VOLUME BIODIESEL). Other thesis, Politeknik Negeri Sriwijaya. </identifier><recordID>1982</recordID></dc>
language eng
format Thesis:Thesis
Thesis
PeerReview:NonPeerReviewed
PeerReview
Book:Book
Book
author Dimyati, Moch Fariz
title RANCANG BANGUN ALAT PEMBUATAN BIODIESEL BERBAHAN BAKU MINYAK JELANTAH (DITINJAU DARI TEMPERATUR PEMANASAN TERHADAP VOLUME BIODIESEL)
publishDate 2015
topic TP Chemical technology
url http://eprints.polsri.ac.id/1982/1/TUGAS%2BAKHIR%2BMOCH%2BFARIZ%2BDIMYATI.pdf
http://eprints.polsri.ac.id/1982/2/BAB%2BI.pdf
http://eprints.polsri.ac.id/1982/3/BAB%2BII.pdf
http://eprints.polsri.ac.id/1982/4/BAB%2BIII.pdf
http://eprints.polsri.ac.id/1982/5/BAB%2BIV.pdf
http://eprints.polsri.ac.id/1982/6/BAB%2BV.pdf
http://eprints.polsri.ac.id/1982/7/DAFTAR%2BPUSTAKA.pdf
http://eprints.polsri.ac.id/1982/
contents Our Energy consumption is still focused on oil and gas energy. One attempt to do is by providing a source of alternative energy as a diesel fuel that is now being developed is biodiesel. Biodiesel can be made by raw materials of cooking palm oil which is one of the raw material that have a chance of making biodiesel, because these oils still contain triglycerides, in addition to free fatty acids. Biodiesel production process is done by going through the phases of oil filtration, oil transesterification into biodiesel, and biodiesel washing. The product of methyl ester is affected by the feed ratio of waste cooking oil and methanol also the operating conditions during the process. Biodiesel production from waste cooking oil by using transesterification process be held in 60 minutes that use feed ratio of 1:4 and use 1% of NaOH catalyst. The heating temperature variations are used at 35 oC, 40 oC, 45 oC, 50 oC and 55 oC. The result showed that the highest volume of biodiesel products are 418.0204 ml for variations in heating temperature 45 oC with energy consumption of 729.000 joules. Keywords : Biodiesel, Energy Consumption, Waste Cooking Oil, Transesterification
id IOS15200.1982
institution Politeknik Negeri Sriwijaya
institution_id 186
institution_type library:university
library
library Perpustakaan Politeknik Negeri Sriwijaya
library_id 333
collection Perpustakaan Politeknik Negeri Sriwijaya
repository_id 15200
city KOTA PALEMBANG
province SUMATERA SELATAN
repoId IOS15200
first_indexed 2021-08-25T09:29:25Z
last_indexed 2021-08-25T09:29:25Z
recordtype dc
_version_ 1709058391166418944
score 17.538404