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Production of bioadsorbent from phosphoric acid pretreated palm kernel shell and coconut shell by two-stage continuous physical activation via N(2) and air

In the present study, agricultural biomass—palm kernel shell (PKS) and coconut shell (CS)—was used to produce high porosity bioadsorbent using two-stage continuous physical activation method with different gas carrier (air and N(2)) in each stage. The activation temperature was set constant at 600,...

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Autores principales: Lee, Chuan Li, H'ng, Paik San, Paridah, Md Tahir, Chin, Kit Ling, Rashid, Umer, Maminski, Mariusz, Go, Wen Ze, Nazrin, Raja Ahamd Raja, Rosli, Siti Nurul Asyikin, Khoo, Pui San
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6304154/
https://www.ncbi.nlm.nih.gov/pubmed/30662718
http://dx.doi.org/10.1098/rsos.180775
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author Lee, Chuan Li
H'ng, Paik San
Paridah, Md Tahir
Chin, Kit Ling
Rashid, Umer
Maminski, Mariusz
Go, Wen Ze
Nazrin, Raja Ahamd Raja
Rosli, Siti Nurul Asyikin
Khoo, Pui San
author_facet Lee, Chuan Li
H'ng, Paik San
Paridah, Md Tahir
Chin, Kit Ling
Rashid, Umer
Maminski, Mariusz
Go, Wen Ze
Nazrin, Raja Ahamd Raja
Rosli, Siti Nurul Asyikin
Khoo, Pui San
author_sort Lee, Chuan Li
collection PubMed
description In the present study, agricultural biomass—palm kernel shell (PKS) and coconut shell (CS)—was used to produce high porosity bioadsorbent using two-stage continuous physical activation method with different gas carrier (air and N(2)) in each stage. The activation temperature was set constant at 600, 700, 800 or 900°C for both activation stages with the heating rate of 3°C min(−1). Two parameters, the gas carrier and activation temperature, were determined as the significant factors on the adsorption properties of bioadsorbent. BET, SEM, FTIR, TGA, CHNS/O and ash content were used to elucidate the developed bioadsorbent prepared from PKS and CS and its capacity towards the adsorption of methylene blue and iodine. The novel process of two-stage continuous physical activation method was able to expose mesopores and micropores that were previously covered/clogged in nature, and simultaneously create new pores. The synthesized bioadsorbents showed that the surface area (PKS: 456.47 m(2) g(−1), CS: 479.17 m(2) g(−1)), pore size (PKS: 0.63 nm, CS: 0.62 nm) and pore volume (PKS: 0.13 cm(3) g(−1), CS: 0.15 cm(3) g(−1)) were significantly higher than that of non-treated bioadsorbent. The surface morphology of the raw materials and synthesized bioadsorbent were accessed by SEM. Furthermore, the novel process meets the recent industrial adsorbent requirements such as low activation temperature, high fixed carbon content, high yield, high adsorption properties and high surface area, which are the key factors for large-scale production of bioadsorbent and its usage.
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spelling pubmed-63041542019-01-18 Production of bioadsorbent from phosphoric acid pretreated palm kernel shell and coconut shell by two-stage continuous physical activation via N(2) and air Lee, Chuan Li H'ng, Paik San Paridah, Md Tahir Chin, Kit Ling Rashid, Umer Maminski, Mariusz Go, Wen Ze Nazrin, Raja Ahamd Raja Rosli, Siti Nurul Asyikin Khoo, Pui San R Soc Open Sci Chemistry In the present study, agricultural biomass—palm kernel shell (PKS) and coconut shell (CS)—was used to produce high porosity bioadsorbent using two-stage continuous physical activation method with different gas carrier (air and N(2)) in each stage. The activation temperature was set constant at 600, 700, 800 or 900°C for both activation stages with the heating rate of 3°C min(−1). Two parameters, the gas carrier and activation temperature, were determined as the significant factors on the adsorption properties of bioadsorbent. BET, SEM, FTIR, TGA, CHNS/O and ash content were used to elucidate the developed bioadsorbent prepared from PKS and CS and its capacity towards the adsorption of methylene blue and iodine. The novel process of two-stage continuous physical activation method was able to expose mesopores and micropores that were previously covered/clogged in nature, and simultaneously create new pores. The synthesized bioadsorbents showed that the surface area (PKS: 456.47 m(2) g(−1), CS: 479.17 m(2) g(−1)), pore size (PKS: 0.63 nm, CS: 0.62 nm) and pore volume (PKS: 0.13 cm(3) g(−1), CS: 0.15 cm(3) g(−1)) were significantly higher than that of non-treated bioadsorbent. The surface morphology of the raw materials and synthesized bioadsorbent were accessed by SEM. Furthermore, the novel process meets the recent industrial adsorbent requirements such as low activation temperature, high fixed carbon content, high yield, high adsorption properties and high surface area, which are the key factors for large-scale production of bioadsorbent and its usage. The Royal Society 2018-12-19 /pmc/articles/PMC6304154/ /pubmed/30662718 http://dx.doi.org/10.1098/rsos.180775 Text en © 2018 The Authors. http://creativecommons.org/licenses/by/4.0/ Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Chemistry
Lee, Chuan Li
H'ng, Paik San
Paridah, Md Tahir
Chin, Kit Ling
Rashid, Umer
Maminski, Mariusz
Go, Wen Ze
Nazrin, Raja Ahamd Raja
Rosli, Siti Nurul Asyikin
Khoo, Pui San
Production of bioadsorbent from phosphoric acid pretreated palm kernel shell and coconut shell by two-stage continuous physical activation via N(2) and air
title Production of bioadsorbent from phosphoric acid pretreated palm kernel shell and coconut shell by two-stage continuous physical activation via N(2) and air
title_full Production of bioadsorbent from phosphoric acid pretreated palm kernel shell and coconut shell by two-stage continuous physical activation via N(2) and air
title_fullStr Production of bioadsorbent from phosphoric acid pretreated palm kernel shell and coconut shell by two-stage continuous physical activation via N(2) and air
title_full_unstemmed Production of bioadsorbent from phosphoric acid pretreated palm kernel shell and coconut shell by two-stage continuous physical activation via N(2) and air
title_short Production of bioadsorbent from phosphoric acid pretreated palm kernel shell and coconut shell by two-stage continuous physical activation via N(2) and air
title_sort production of bioadsorbent from phosphoric acid pretreated palm kernel shell and coconut shell by two-stage continuous physical activation via n(2) and air
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6304154/
https://www.ncbi.nlm.nih.gov/pubmed/30662718
http://dx.doi.org/10.1098/rsos.180775
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