Separation of xylose from glucose-xylose solution using ion exchange resins
In this present study 5 different types of ion-exchange resins were used to separate xylose from glucose-xylose mixture. The resins were strong base cation (SBC), strong acid cation (SAC) and weak acidic cation (WAC) with same ion forms of H+. Glucose and xylose were measured using single-component...
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ump-88252015-10-27T02:50:59Z http://umpir.ump.edu.my/id/eprint/8825/ Separation of xylose from glucose-xylose solution using ion exchange resins Mohammad Aizzat, Nawi TP Chemical technology In this present study 5 different types of ion-exchange resins were used to separate xylose from glucose-xylose mixture. The resins were strong base cation (SBC), strong acid cation (SAC) and weak acidic cation (WAC) with same ion forms of H+. Glucose and xylose were measured using single-component isotherms and being measured at 20oC, 30oC and 40oC. The concentration of the glucose-xylose mixtures are 0.5g/L, 1.0g/L and 1.5g/L. The composition of mixture of glucose-xylose also being varies 1:1, 1:9 and 9:1. The entire sample is being tested at different rotation speeds which are 110rpm, 160rpm and 210rpm. The wavelength is set at 620nm for this experiment. All the data obtained from 5 different resins were described in linear isotherms. The result of each resins were compared based on their adsorption capabilities towards those sugar. From the result gathered, Dowex M-31 shows highest separation of glucose from the glucose-xylose mixture. The optimum temperature and rotation is 30oC and 160rpm respectively. 2013-06 Undergraduates Project Papers NonPeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/8825/1/CD%208342.pdf Mohammad Aizzat, Nawi (2013) Separation of xylose from glucose-xylose solution using ion exchange resins. Faculty of Chemical & Natural Resources Engineering, Universiti Malaysia Pahang. http://iportal.ump.edu.my/lib/item?id=chamo:83336&theme=UMP2 |
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TP Chemical technology Mohammad Aizzat, Nawi Separation of xylose from glucose-xylose solution using ion exchange resins |
description |
In this present study 5 different types of ion-exchange resins were used to separate xylose from glucose-xylose mixture. The resins were strong base cation (SBC), strong acid cation (SAC) and weak acidic cation (WAC) with same ion forms of H+. Glucose and xylose were measured using single-component isotherms and being measured at 20oC, 30oC and 40oC. The concentration of the glucose-xylose mixtures are 0.5g/L, 1.0g/L and 1.5g/L. The composition of mixture of glucose-xylose also being varies 1:1, 1:9 and 9:1. The entire sample is being tested at different rotation speeds which are 110rpm, 160rpm and 210rpm. The wavelength is set at 620nm for this experiment. All the data obtained from 5 different resins were described in linear isotherms. The result of each resins were compared based on their adsorption capabilities towards those sugar. From the result gathered, Dowex M-31 shows highest separation of glucose from the glucose-xylose mixture. The optimum temperature and rotation is 30oC and 160rpm respectively. |
format |
Undergraduates Project Papers |
author |
Mohammad Aizzat, Nawi |
author_facet |
Mohammad Aizzat, Nawi |
author_sort |
Mohammad Aizzat, Nawi |
title |
Separation of xylose from glucose-xylose solution using ion exchange resins |
title_short |
Separation of xylose from glucose-xylose solution using ion exchange resins |
title_full |
Separation of xylose from glucose-xylose solution using ion exchange resins |
title_fullStr |
Separation of xylose from glucose-xylose solution using ion exchange resins |
title_full_unstemmed |
Separation of xylose from glucose-xylose solution using ion exchange resins |
title_sort |
separation of xylose from glucose-xylose solution using ion exchange resins |
publishDate |
2013 |
url |
http://umpir.ump.edu.my/id/eprint/8825/ http://umpir.ump.edu.my/id/eprint/8825/ http://umpir.ump.edu.my/id/eprint/8825/1/CD%208342.pdf |
first_indexed |
2023-09-18T22:06:49Z |
last_indexed |
2023-09-18T22:06:49Z |
_version_ |
1777414763313102848 |