RANCANG BANGUN IPAL (INSTALASI PENGOLAHAN AIR LIMBAH) PORTABLE UNTUK SKALA IKM DENGAN MENGGUNAKAN METODE TAGUCHI

Based on regulations Regional City of Pontianak No. 2 of 2013 it is stated that the Installation of Wastewater Treatment (IPAL) is included in the plan long-term Pontianak city layout. This indicates good industry large and small must have an IPAL that is in accordance with the quality standards t...

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Main Authors: Silvia Uslianti, Ivan Sujana, Ratih Rahmahwati, Tri Wahyudi, Riadi Budiman
Format: Article
Language:English
Published: Universitas Ahmad Dahlan 2019-04-01
Series:Spektrum Industri: Jurnal Ilmiah Pengetahuan dan Penerapan Teknik Industri
Subjects:
Online Access:http://journal.uad.ac.id/index.php/Spektrum/article/view/9673
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author Silvia Uslianti
Ivan Sujana
Ratih Rahmahwati
Tri Wahyudi
Riadi Budiman
author_facet Silvia Uslianti
Ivan Sujana
Ratih Rahmahwati
Tri Wahyudi
Riadi Budiman
author_sort Silvia Uslianti
collection DOAJ
description Based on regulations Regional City of Pontianak No. 2 of 2013 it is stated that the Installation of Wastewater Treatment (IPAL) is included in the plan long-term Pontianak city layout. This indicates good industry large and small must have an IPAL that is in accordance with the quality standards that have been set. However, based on data from the Environment Agency (BLH) 2017, the level management of IKM IPAL is still below 50% of the total existing IKM. This matter because of the cost of procuring a high WWTP. The aim of this study to design an IPAL that is portable and can be reached by small industry using the Taguchi experimental method. The steps of his research began with the design of the WWTP body, then the Taguchi experiment to determine the media filter (Zeolite: Active Charcoal), Dacron Thickness, palm fiber thickness and number of plates (Current strength of 10 A). Taguchi experiments are carried out using orthogonal array L9 (34). Based on the Taguchi experiment, the characteristics were carried out the intended quality is smaller the better the results of the combination of zeolite and activated charcoal are obtained as much as 70:30 with 4 plates. This proves that the combination optimal these factors can increase the optimization of the work of IPALP portable.
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spelling doaj.art-c1b370a1baae4383ace66712b02d74ae2022-12-22T02:13:19ZengUniversitas Ahmad DahlanSpektrum Industri: Jurnal Ilmiah Pengetahuan dan Penerapan Teknik Industri1693-65902442-26302019-04-011715160http://dx.doi.org/10.12928/si.v17i1.9673RANCANG BANGUN IPAL (INSTALASI PENGOLAHAN AIR LIMBAH) PORTABLE UNTUK SKALA IKM DENGAN MENGGUNAKAN METODE TAGUCHISilvia Uslianti0Ivan Sujana1Ratih Rahmahwati2Tri Wahyudi3Riadi Budiman4Program Studi Teknik Industri Fakultas Teknik Universitas TanjungpuraProgram Studi Teknik Industri Fakultas Teknik Universitas TanjungpuraProgram Studi Teknik Industri Fakultas Teknik Universitas TanjungpuraProgram Studi Teknik Industri Fakultas Teknik Universitas TanjungpuraProgram Studi Teknik Industri Fakultas Teknik Universitas TanjungpuraBased on regulations Regional City of Pontianak No. 2 of 2013 it is stated that the Installation of Wastewater Treatment (IPAL) is included in the plan long-term Pontianak city layout. This indicates good industry large and small must have an IPAL that is in accordance with the quality standards that have been set. However, based on data from the Environment Agency (BLH) 2017, the level management of IKM IPAL is still below 50% of the total existing IKM. This matter because of the cost of procuring a high WWTP. The aim of this study to design an IPAL that is portable and can be reached by small industry using the Taguchi experimental method. The steps of his research began with the design of the WWTP body, then the Taguchi experiment to determine the media filter (Zeolite: Active Charcoal), Dacron Thickness, palm fiber thickness and number of plates (Current strength of 10 A). Taguchi experiments are carried out using orthogonal array L9 (34). Based on the Taguchi experiment, the characteristics were carried out the intended quality is smaller the better the results of the combination of zeolite and activated charcoal are obtained as much as 70:30 with 4 plates. This proves that the combination optimal these factors can increase the optimization of the work of IPALP portable.http://journal.uad.ac.id/index.php/Spektrum/article/view/9673taguci experimentinstallation of wastewater treatment (ipal)wastewater treatmentbuilding design
spellingShingle Silvia Uslianti
Ivan Sujana
Ratih Rahmahwati
Tri Wahyudi
Riadi Budiman
RANCANG BANGUN IPAL (INSTALASI PENGOLAHAN AIR LIMBAH) PORTABLE UNTUK SKALA IKM DENGAN MENGGUNAKAN METODE TAGUCHI
Spektrum Industri: Jurnal Ilmiah Pengetahuan dan Penerapan Teknik Industri
taguci experiment
installation of wastewater treatment (ipal)
wastewater treatment
building design
title RANCANG BANGUN IPAL (INSTALASI PENGOLAHAN AIR LIMBAH) PORTABLE UNTUK SKALA IKM DENGAN MENGGUNAKAN METODE TAGUCHI
title_full RANCANG BANGUN IPAL (INSTALASI PENGOLAHAN AIR LIMBAH) PORTABLE UNTUK SKALA IKM DENGAN MENGGUNAKAN METODE TAGUCHI
title_fullStr RANCANG BANGUN IPAL (INSTALASI PENGOLAHAN AIR LIMBAH) PORTABLE UNTUK SKALA IKM DENGAN MENGGUNAKAN METODE TAGUCHI
title_full_unstemmed RANCANG BANGUN IPAL (INSTALASI PENGOLAHAN AIR LIMBAH) PORTABLE UNTUK SKALA IKM DENGAN MENGGUNAKAN METODE TAGUCHI
title_short RANCANG BANGUN IPAL (INSTALASI PENGOLAHAN AIR LIMBAH) PORTABLE UNTUK SKALA IKM DENGAN MENGGUNAKAN METODE TAGUCHI
title_sort rancang bangun ipal instalasi pengolahan air limbah portable untuk skala ikm dengan menggunakan metode taguchi
topic taguci experiment
installation of wastewater treatment (ipal)
wastewater treatment
building design
url http://journal.uad.ac.id/index.php/Spektrum/article/view/9673
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