Calcium Oxide Decomposed From Chicken’s and Goat’s Bones as Catalyst For Converting Discarded Cooking Oil to be Biodiesel

Thermal decomposition of calcium oxide from chicken’s (Gallus gallus domesticus) and goat’s (Capra Hircus Aegragus) bones was prepared at temperature variations of 400, 500, 800, 900, 1000, and 1100 oC respectively. X-ray diffractometer (XRD), FT-IR and SEM were used for calcium oxide characterizati...

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Main Authors: Aldes Lesbani, Yosine Susi, Marieska Verawaty, Risfidian Mohadi
Format: Article
Language:English
Published: Syiah Kuala University 2015-01-01
Series:Aceh International Journal of Science and Technology
Subjects:
Online Access:http://jurnal.unsyiah.ac.id/AIJST/article/view/2124
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spelling doaj-cc685b5f067c450bb09d7846472271ba2020-11-24T21:13:46ZengSyiah Kuala UniversityAceh International Journal of Science and Technology2088-98602015-01-014110.13170/aijst.4.1.21242031Calcium Oxide Decomposed From Chicken’s and Goat’s Bones as Catalyst For Converting Discarded Cooking Oil to be BiodieselAldes Lesbani0Yosine SusiMarieska VerawatyRisfidian MohadiDepartment of Chemistry, Faculty of Mathematic Natural Sciences, Sriwijaya UniversityThermal decomposition of calcium oxide from chicken’s (Gallus gallus domesticus) and goat’s (Capra Hircus Aegragus) bones was prepared at temperature variations of 400, 500, 800, 900, 1000, and 1100 oC respectively. X-ray diffractometer (XRD), FT-IR and SEM were used for calcium oxide characterization. XRD diffraction pattern of the bone’s after thermal decomposition at 1100oC has similarity to the XRD standard diffraction pattern from Joint Committee on Powder Diffraction Standard (JCPDS). Diffractions of 2q values being used are 34.2o, 37.3o, 58.3o, 64.1o, and 67.3 o.  Ca-O presence in the samples was detected by FT-IR characterization at wavenumber of 354,90 cm-1. SEM profile show reducing size of bones after decomposition in both chicken’s and goat’s bones. Furthermore, the prepared calcium oxide was applied for biodiesel synthesis from discarded cooking oil through transesterification reaction. By applying the catalysts decomposed from chicken’s and goat’s bones, the biodiesel product showed characteristics as follows: biodiesel applied the chicken’s bone catalyst has fatty acid number of 0.56 mg/KOH, iod number of 22.41 g I2/100 g KOH, density of 0.88 g/cm3 and viscosity of 5.91 mm2/s, while biodiesel applied the goat’s bone catalyst has 0.56 mg/KOH, iod number of 21.57 g I2/100 g KOH, density of 0.88 g/cm3 and viscosity of 6.34 mm2/s. Those biodiesel’s characteristic values meet the National Standard of Indonesia (SNI) for biodiesel.http://jurnal.unsyiah.ac.id/AIJST/article/view/2124BiodieselDiscarded cooking oilCalcium oxideChicken’s boneGoat’s bone
collection DOAJ
language English
format Article
sources DOAJ
author Aldes Lesbani
Yosine Susi
Marieska Verawaty
Risfidian Mohadi
spellingShingle Aldes Lesbani
Yosine Susi
Marieska Verawaty
Risfidian Mohadi
Calcium Oxide Decomposed From Chicken’s and Goat’s Bones as Catalyst For Converting Discarded Cooking Oil to be Biodiesel
Aceh International Journal of Science and Technology
Biodiesel
Discarded cooking oil
Calcium oxide
Chicken’s bone
Goat’s bone
author_facet Aldes Lesbani
Yosine Susi
Marieska Verawaty
Risfidian Mohadi
author_sort Aldes Lesbani
title Calcium Oxide Decomposed From Chicken’s and Goat’s Bones as Catalyst For Converting Discarded Cooking Oil to be Biodiesel
title_short Calcium Oxide Decomposed From Chicken’s and Goat’s Bones as Catalyst For Converting Discarded Cooking Oil to be Biodiesel
title_full Calcium Oxide Decomposed From Chicken’s and Goat’s Bones as Catalyst For Converting Discarded Cooking Oil to be Biodiesel
title_fullStr Calcium Oxide Decomposed From Chicken’s and Goat’s Bones as Catalyst For Converting Discarded Cooking Oil to be Biodiesel
title_full_unstemmed Calcium Oxide Decomposed From Chicken’s and Goat’s Bones as Catalyst For Converting Discarded Cooking Oil to be Biodiesel
title_sort calcium oxide decomposed from chicken’s and goat’s bones as catalyst for converting discarded cooking oil to be biodiesel
publisher Syiah Kuala University
series Aceh International Journal of Science and Technology
issn 2088-9860
publishDate 2015-01-01
description Thermal decomposition of calcium oxide from chicken’s (Gallus gallus domesticus) and goat’s (Capra Hircus Aegragus) bones was prepared at temperature variations of 400, 500, 800, 900, 1000, and 1100 oC respectively. X-ray diffractometer (XRD), FT-IR and SEM were used for calcium oxide characterization. XRD diffraction pattern of the bone’s after thermal decomposition at 1100oC has similarity to the XRD standard diffraction pattern from Joint Committee on Powder Diffraction Standard (JCPDS). Diffractions of 2q values being used are 34.2o, 37.3o, 58.3o, 64.1o, and 67.3 o.  Ca-O presence in the samples was detected by FT-IR characterization at wavenumber of 354,90 cm-1. SEM profile show reducing size of bones after decomposition in both chicken’s and goat’s bones. Furthermore, the prepared calcium oxide was applied for biodiesel synthesis from discarded cooking oil through transesterification reaction. By applying the catalysts decomposed from chicken’s and goat’s bones, the biodiesel product showed characteristics as follows: biodiesel applied the chicken’s bone catalyst has fatty acid number of 0.56 mg/KOH, iod number of 22.41 g I2/100 g KOH, density of 0.88 g/cm3 and viscosity of 5.91 mm2/s, while biodiesel applied the goat’s bone catalyst has 0.56 mg/KOH, iod number of 21.57 g I2/100 g KOH, density of 0.88 g/cm3 and viscosity of 6.34 mm2/s. Those biodiesel’s characteristic values meet the National Standard of Indonesia (SNI) for biodiesel.
topic Biodiesel
Discarded cooking oil
Calcium oxide
Chicken’s bone
Goat’s bone
url http://jurnal.unsyiah.ac.id/AIJST/article/view/2124
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