Investigation on producing silica from rice husk biomass
Intending to contribute with the valorization of rural squanders that present transfer issues and the utilization of sustainable power sources, was looked into the rice husk burning in climatic foaming fluidized bed reactor. The technique was to assess the air overabundance impact in the pipe gases...
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UM Power Energy Dedicated Advanced Centre (UMPEDAC)
2018
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iium-689062019-01-04T07:02:49Z http://irep.iium.edu.my/68906/ Investigation on producing silica from rice husk biomass Uddin, M.N. Rashid, Muhammad Mahbubur Taweekun, J. Techato, K. Roy, R. Rahman, M.A. TJ163.26 Energy conservation Intending to contribute with the valorization of rural squanders that present transfer issues and the utilization of sustainable power sources, was looked into the rice husk burning in climatic foaming fluidized bed reactor. The technique was to assess the air overabundance impact in the pipe gases and the powder attributes. It was resolved the gases organization (CO, CO2 and NOx) and portrayed theash produced (XRD, XRF). 40%excessair advances temperatures inside the reactor around 700°C with higher change efficienciesbut declining the nebulous silica capability of the fiery debris. Opposite conduct was confirm at 128% overabundance air. The pipe gases demonstrated relative inconstancy for each working condition. In the CO case, a normal grouping of 200 ppm was found (on a dry premise of 11% O2) for air overabundance somewhere in the range of 40.0% and 82.5%. UM Power Energy Dedicated Advanced Centre (UMPEDAC) 2018 Article PeerReviewed application/pdf en http://irep.iium.edu.my/68906/7/68906%20INVESTIGATION%20ON%20PRODUCING%20SILICA%20FROM%20RICE%20HUSK%20BIOMASS.pdf Uddin, M.N. and Rashid, Muhammad Mahbubur and Taweekun, J. and Techato, K. and Roy, R. and Rahman, M.A. (2018) Investigation on producing silica from rice husk biomass. International Journal of Renewable Energy Resources, 8 (1). pp. 12-23. ISSN 2289-1846 https://ejournal.um.edu.my/index.php/IJRER/article/view/14806/9270 |
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topic |
TJ163.26 Energy conservation |
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TJ163.26 Energy conservation Uddin, M.N. Rashid, Muhammad Mahbubur Taweekun, J. Techato, K. Roy, R. Rahman, M.A. Investigation on producing silica from rice husk biomass |
description |
Intending to contribute with the valorization of rural squanders that present transfer issues and the utilization of sustainable power sources, was looked into the rice husk burning in climatic foaming fluidized bed reactor. The technique was to assess the air overabundance impact in the pipe gases and the powder attributes. It was resolved the gases organization (CO, CO2 and NOx) and portrayed theash produced (XRD, XRF). 40%excessair advances temperatures inside the reactor around 700°C with higher change efficienciesbut declining the nebulous silica capability of the fiery debris. Opposite conduct was confirm at 128% overabundance air. The pipe gases demonstrated relative inconstancy for each working condition. In the CO case, a normal grouping of 200 ppm was found (on a dry premise of 11% O2) for air overabundance somewhere in the range of 40.0% and 82.5%. |
format |
Article |
author |
Uddin, M.N. Rashid, Muhammad Mahbubur Taweekun, J. Techato, K. Roy, R. Rahman, M.A. |
author_facet |
Uddin, M.N. Rashid, Muhammad Mahbubur Taweekun, J. Techato, K. Roy, R. Rahman, M.A. |
author_sort |
Uddin, M.N. |
title |
Investigation on producing silica from rice husk biomass |
title_short |
Investigation on producing silica from rice husk biomass |
title_full |
Investigation on producing silica from rice husk biomass |
title_fullStr |
Investigation on producing silica from rice husk biomass |
title_full_unstemmed |
Investigation on producing silica from rice husk biomass |
title_sort |
investigation on producing silica from rice husk biomass |
publisher |
UM Power Energy Dedicated Advanced Centre (UMPEDAC) |
publishDate |
2018 |
url |
http://irep.iium.edu.my/68906/ http://irep.iium.edu.my/68906/ http://irep.iium.edu.my/68906/7/68906%20INVESTIGATION%20ON%20PRODUCING%20SILICA%20FROM%20RICE%20HUSK%20BIOMASS.pdf |
first_indexed |
2023-09-18T21:37:47Z |
last_indexed |
2023-09-18T21:37:47Z |
_version_ |
1777412936704196608 |