Treatment of Coal Stockpile Wastewater by Electrocoagulation Using Aluminum Electrodes
Main Authors: | Rusdianasari, Rusdianasari, Bow, Yohandri, Taqwa, Ahmad |
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Format: | Article NonPeerReviewed Book |
Bahasa: | eng |
Terbitan: |
Trans Tech Publications, Switzerland
, 2014
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Subjects: | |
Online Access: |
http://eprints.polsri.ac.id/3114/1/7%20Treatment%20of%20Coal%20Stockpile%20Wastewater%20by%20Electrcocoagulation%20using%20Aluminum.pdf http://eprints.polsri.ac.id/3114/ http://www.scientific.net/AMR.896.145 |
ctrlnum |
3114 |
---|---|
fullrecord |
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<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/3114/</relation><title>Treatment of Coal Stockpile Wastewater by Electrocoagulation
Using Aluminum Electrodes</title><creator>Rusdianasari, Rusdianasari</creator><creator>Bow, Yohandri</creator><creator>Taqwa, Ahmad</creator><subject>QD Chemistry</subject><description>The performance of electrocoagulation using aluminum electrodes for the removal total
suspended solid and heavy metals from actual coal stockpile wastewater was studied. In a batch
electrochemical cell experimental setup, two monopolar aluminum (Al) plate were used as
electrodes (anode and cathode). The effects of relevant coal stockpile wastewater characteristics
such as pH and total suspended solid (TSS), and important process variables such as current density
and operating time on heavy metals removal efficiencies have been explored. Preliminary results
show that the electrocoagulation process is able to enhance the removal of total suspended solid and
heavy metal contents. The batch experiment results showed that the high heavy metals contained
coal stockpile wastewater can be effectively treated using electrocoagulation. The overall heavy
metals removal efficiencies have been obtained at 89.7% for ferrous and 94.6% for manganese,
respectively. The removal rates of those elements were increase with operating time. Therefore,
electrocoagulation technique to removal high content of heavy metal and TSS from coal stockpile
wastewater is found effective and environmental friendly</description><publisher>Trans Tech Publications, Switzerland</publisher><date>2014</date><type>Journal:Article</type><type>PeerReview:NonPeerReviewed</type><type>Book:Book</type><language>eng</language><identifier>http://eprints.polsri.ac.id/3114/1/7%20Treatment%20of%20Coal%20Stockpile%20Wastewater%20by%20Electrcocoagulation%20using%20Aluminum.pdf</identifier><identifier> Rusdianasari, Rusdianasari and Bow, Yohandri and Taqwa, Ahmad (2014) Treatment of Coal Stockpile Wastewater by Electrocoagulation Using Aluminum Electrodes. Advanced Materials Science And Tehnology ICAMST 2013, 896. pp. 145-148. ISSN 1022-6680, 1662-8985 </identifier><relation>http://www.scientific.net/AMR.896.145</relation><recordID>3114</recordID></dc>
|
language |
eng |
format |
Journal:Article Journal PeerReview:NonPeerReviewed PeerReview Book:Book Book |
author |
Rusdianasari, Rusdianasari Bow, Yohandri Taqwa, Ahmad |
title |
Treatment of Coal Stockpile Wastewater by Electrocoagulation
Using Aluminum Electrodes |
publisher |
Trans Tech Publications, Switzerland |
publishDate |
2014 |
topic |
QD Chemistry |
url |
http://eprints.polsri.ac.id/3114/1/7%20Treatment%20of%20Coal%20Stockpile%20Wastewater%20by%20Electrcocoagulation%20using%20Aluminum.pdf http://eprints.polsri.ac.id/3114/ http://www.scientific.net/AMR.896.145 |
contents |
The performance of electrocoagulation using aluminum electrodes for the removal total
suspended solid and heavy metals from actual coal stockpile wastewater was studied. In a batch
electrochemical cell experimental setup, two monopolar aluminum (Al) plate were used as
electrodes (anode and cathode). The effects of relevant coal stockpile wastewater characteristics
such as pH and total suspended solid (TSS), and important process variables such as current density
and operating time on heavy metals removal efficiencies have been explored. Preliminary results
show that the electrocoagulation process is able to enhance the removal of total suspended solid and
heavy metal contents. The batch experiment results showed that the high heavy metals contained
coal stockpile wastewater can be effectively treated using electrocoagulation. The overall heavy
metals removal efficiencies have been obtained at 89.7% for ferrous and 94.6% for manganese,
respectively. The removal rates of those elements were increase with operating time. Therefore,
electrocoagulation technique to removal high content of heavy metal and TSS from coal stockpile
wastewater is found effective and environmental friendly |
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Politeknik Negeri Sriwijaya |
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Perpustakaan Politeknik Negeri Sriwijaya |
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Perpustakaan Politeknik Negeri Sriwijaya |
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KOTA PALEMBANG |
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SUMATERA SELATAN |
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IOS15200 |
first_indexed |
2021-08-25T09:30:32Z |
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2021-08-25T09:30:32Z |
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