HIGH CELL DENSITY SUBMERGED MEMBRANE PHOTO-BIOREACTOR FOR MICROALGAE CULTIVATION

A new and effective concept for producing high cell density microalgae and enhance the CO2 removal efficiency using batch mode of submerged membrane photo-bioreactor (SMPBR) was explored. In this study, the SMPBR was inoculated with Chaetoceros calcitrans and operated in ambient condition for 7 da...

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Main Author: Steven, Soen
Format: Theses
Language:Indonesia
Subjects:
Online Access:https://digilib.itb.ac.id/gdl/view/32979
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:32979
spelling id-itb.:329792019-01-09T10:15:00ZHIGH CELL DENSITY SUBMERGED MEMBRANE PHOTO-BIOREACTOR FOR MICROALGAE CULTIVATION Steven, Soen Teknik kimia Indonesia Theses High Cell Density, SMPBR, Microalgae, Cultivation, CO2 Removal Efficiency INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/32979 A new and effective concept for producing high cell density microalgae and enhance the CO2 removal efficiency using batch mode of submerged membrane photo-bioreactor (SMPBR) was explored. In this study, the SMPBR was inoculated with Chaetoceros calcitrans and operated in ambient condition for 7 days. The SMPBR demonstrated their superiority by increasing the microalgae concentration from initially 106 cells/ml up to a final of 109 cells/ml and able to utilize up to 60% of the CO2. The results conclude that SMPBR is an appropriate technology for producing high cell density microalgae and thus increasing the CO2 removal efficiency. However, the future studies will still need to develop this concept to a large-scale and continuous mode. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
topic Teknik kimia
spellingShingle Teknik kimia
Steven, Soen
HIGH CELL DENSITY SUBMERGED MEMBRANE PHOTO-BIOREACTOR FOR MICROALGAE CULTIVATION
description A new and effective concept for producing high cell density microalgae and enhance the CO2 removal efficiency using batch mode of submerged membrane photo-bioreactor (SMPBR) was explored. In this study, the SMPBR was inoculated with Chaetoceros calcitrans and operated in ambient condition for 7 days. The SMPBR demonstrated their superiority by increasing the microalgae concentration from initially 106 cells/ml up to a final of 109 cells/ml and able to utilize up to 60% of the CO2. The results conclude that SMPBR is an appropriate technology for producing high cell density microalgae and thus increasing the CO2 removal efficiency. However, the future studies will still need to develop this concept to a large-scale and continuous mode.
format Theses
author Steven, Soen
author_facet Steven, Soen
author_sort Steven, Soen
title HIGH CELL DENSITY SUBMERGED MEMBRANE PHOTO-BIOREACTOR FOR MICROALGAE CULTIVATION
title_short HIGH CELL DENSITY SUBMERGED MEMBRANE PHOTO-BIOREACTOR FOR MICROALGAE CULTIVATION
title_full HIGH CELL DENSITY SUBMERGED MEMBRANE PHOTO-BIOREACTOR FOR MICROALGAE CULTIVATION
title_fullStr HIGH CELL DENSITY SUBMERGED MEMBRANE PHOTO-BIOREACTOR FOR MICROALGAE CULTIVATION
title_full_unstemmed HIGH CELL DENSITY SUBMERGED MEMBRANE PHOTO-BIOREACTOR FOR MICROALGAE CULTIVATION
title_sort high cell density submerged membrane photo-bioreactor for microalgae cultivation
url https://digilib.itb.ac.id/gdl/view/32979
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