PEMBUATAN ASAM OKSALAT DARI SEKAM PADI DENGAN HIDROLISIS BERKATALISATOR NaOH DAN Ca(OH)2
<p class="Els-Abstract-text">Rice husk is a major by-product of the rice milling industries. Rice husk is one of the most common lignocellulosic materials those can be converted to oxalic acid by alkaline hydrolysis. This research investigated the effect of the alkaline catalysts...
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Universitas Negeri Semarang
2014-03-01
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doaj-1e604c9ed5a64d7cad1f466e6f126f3c2020-11-24T22:02:27ZengUniversitas Negeri SemarangJurnal Bahan Alam Terbarukan2303-06232014-03-012210.15294/jbat.v2i2.27942571PEMBUATAN ASAM OKSALAT DARI SEKAM PADI DENGAN HIDROLISIS BERKATALISATOR NaOH DAN Ca(OH)2Primata Mardina0Norhayani -1Dessy Triutami2Program Studi Teknik Kimia, Fakultas Teknik, Universitas Lambung Mangkurat, Banjarbaru, IndonesiaProgram Studi Teknik Kimia, Fakultas Teknik, Universitas Lambung Mangkurat, Banjarbaru, IndonesiaProgram Studi Teknik Kimia, Fakultas Teknik, Universitas Lambung Mangkurat, Banjarbaru, Indonesia<p class="Els-Abstract-text">Rice husk is a major by-product of the rice milling industries. Rice husk is one of the most common lignocellulosic materials those can be converted to oxalic acid by alkaline hydrolysis. This research investigated the effect of the alkaline catalysts at specified temperature and reaction time on the efficiency of process and yield of oxalic acid. Oxalic acid was produced by four processes; alkaline hydrolysis, precipitation, acidification, and crystalization. Washed and dryed rice husk was crushed to obtain 0.25 mm diameterl particles. The main process was performed by dissolving and hydrolyzing 125 grams of rice husk in 500 mL of 3.5 N NaOH and Ca(OH)<sub>2</sub>. Rice husk, which hydrolyzed by NaOH, was precipated with CaCl<sub>2 </sub>before acidification, whereas rice husk, which hydrolyzed by Ca(OH)<sub>2</sub> directly acidified by sulphuric acid without precipitation process<span>. </span>Furthermore, water in acidified solution was evaporated to obtain crystal of oxalic acid. The result showed the alkaline catalyst Ca(OH)<sub>2</sub> was more eficient than NaOH for hydrolysis. It omitted precipitation process. The highest yield of oxalic acid which produced by Ca(OH)<sub>2</sub> catalyzed hydrolysis was 2.232% at 60<sup>o</sup>C for 60 minutes<span lang="IN">.</span></p>http://journal.unnes.ac.id/nju/index.php/jbat/article/view/2794oxalic acid, alkaline hydrolisis, rice husk |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Primata Mardina Norhayani - Dessy Triutami |
spellingShingle |
Primata Mardina Norhayani - Dessy Triutami PEMBUATAN ASAM OKSALAT DARI SEKAM PADI DENGAN HIDROLISIS BERKATALISATOR NaOH DAN Ca(OH)2 Jurnal Bahan Alam Terbarukan oxalic acid, alkaline hydrolisis, rice husk |
author_facet |
Primata Mardina Norhayani - Dessy Triutami |
author_sort |
Primata Mardina |
title |
PEMBUATAN ASAM OKSALAT DARI SEKAM PADI DENGAN HIDROLISIS BERKATALISATOR NaOH DAN Ca(OH)2 |
title_short |
PEMBUATAN ASAM OKSALAT DARI SEKAM PADI DENGAN HIDROLISIS BERKATALISATOR NaOH DAN Ca(OH)2 |
title_full |
PEMBUATAN ASAM OKSALAT DARI SEKAM PADI DENGAN HIDROLISIS BERKATALISATOR NaOH DAN Ca(OH)2 |
title_fullStr |
PEMBUATAN ASAM OKSALAT DARI SEKAM PADI DENGAN HIDROLISIS BERKATALISATOR NaOH DAN Ca(OH)2 |
title_full_unstemmed |
PEMBUATAN ASAM OKSALAT DARI SEKAM PADI DENGAN HIDROLISIS BERKATALISATOR NaOH DAN Ca(OH)2 |
title_sort |
pembuatan asam oksalat dari sekam padi dengan hidrolisis berkatalisator naoh dan ca(oh)2 |
publisher |
Universitas Negeri Semarang |
series |
Jurnal Bahan Alam Terbarukan |
issn |
2303-0623 |
publishDate |
2014-03-01 |
description |
<p class="Els-Abstract-text">Rice husk is a major by-product of the rice milling industries. Rice husk is one of the most common lignocellulosic materials those can be converted to oxalic acid by alkaline hydrolysis. This research investigated the effect of the alkaline catalysts at specified temperature and reaction time on the efficiency of process and yield of oxalic acid. Oxalic acid was produced by four processes; alkaline hydrolysis, precipitation, acidification, and crystalization. Washed and dryed rice husk was crushed to obtain 0.25 mm diameterl particles. The main process was performed by dissolving and hydrolyzing 125 grams of rice husk in 500 mL of 3.5 N NaOH and Ca(OH)<sub>2</sub>. Rice husk, which hydrolyzed by NaOH, was precipated with CaCl<sub>2 </sub>before acidification, whereas rice husk, which hydrolyzed by Ca(OH)<sub>2</sub> directly acidified by sulphuric acid without precipitation process<span>. </span>Furthermore, water in acidified solution was evaporated to obtain crystal of oxalic acid. The result showed the alkaline catalyst Ca(OH)<sub>2</sub> was more eficient than NaOH for hydrolysis. It omitted precipitation process. The highest yield of oxalic acid which produced by Ca(OH)<sub>2</sub> catalyzed hydrolysis was 2.232% at 60<sup>o</sup>C for 60 minutes<span lang="IN">.</span></p> |
topic |
oxalic acid, alkaline hydrolisis, rice husk |
url |
http://journal.unnes.ac.id/nju/index.php/jbat/article/view/2794 |
work_keys_str_mv |
AT primatamardina pembuatanasamoksalatdarisekampadidenganhidrolisisberkatalisatornaohdancaoh2 AT norhayani pembuatanasamoksalatdarisekampadidenganhidrolisisberkatalisatornaohdancaoh2 AT dessytriutami pembuatanasamoksalatdarisekampadidenganhidrolisisberkatalisatornaohdancaoh2 |
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1725835676510846976 |