Biosorption of cu(ll) onto sulfuric acid treated spent grated coconut (cocos nucifera) in fixed-bed column / Nurul Sahida Mohd Shukri
Spent grated coconut treated with sulphuric acid had been evaluated as a potential low cost biosorbent. It had been used for the removal of copper(II) from the aqueous solution using fixed-bed column mode. The parameters were fixed for this study using; 50 mg/L influent concentration, 10 mL/min f...
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Faculty of Applied Sciences
2017
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Online Access: | http://ir.uitm.edu.my/id/eprint/24054/ http://ir.uitm.edu.my/id/eprint/24054/1/PPb_NURUL%20SAHIDA%20MOHD%20SHUKRI%20AS%20C%2017_5.PDF |
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uitm-240542019-05-08T06:27:06Z http://ir.uitm.edu.my/id/eprint/24054/ Biosorption of cu(ll) onto sulfuric acid treated spent grated coconut (cocos nucifera) in fixed-bed column / Nurul Sahida Mohd Shukri Mohd Shukri, Nurul Sahida Extraction (Chemistry) Spent grated coconut treated with sulphuric acid had been evaluated as a potential low cost biosorbent. It had been used for the removal of copper(II) from the aqueous solution using fixed-bed column mode. The parameters were fixed for this study using; 50 mg/L influent concentration, 10 mL/min flow rate, 1.5 cm bed-depth and pH 5. The adsorption capacity obtained from breakthrough curve was 35.785 mg/g. The breakthrough time, tb at 71.57 min, while t50% at 118.36 min and exhaustion time, texh at 211.23 min for 2050 mL. The R2 of Thomas model was 0.885 and qo was 66.50 mg/g while R2 of Yoon-Nelson model was 0.879 and qoYN was 66.75 mg/g. Faculty of Applied Sciences 2017 Student Project NonPeerReviewed text en http://ir.uitm.edu.my/id/eprint/24054/1/PPb_NURUL%20SAHIDA%20MOHD%20SHUKRI%20AS%20C%2017_5.PDF Mohd Shukri, Nurul Sahida (2017) Biosorption of cu(ll) onto sulfuric acid treated spent grated coconut (cocos nucifera) in fixed-bed column / Nurul Sahida Mohd Shukri. [Student Project] (Unpublished) |
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Extraction (Chemistry) Mohd Shukri, Nurul Sahida Biosorption of cu(ll) onto sulfuric acid treated spent grated coconut (cocos nucifera) in fixed-bed column / Nurul Sahida Mohd Shukri |
description |
Spent grated coconut treated with sulphuric acid had been evaluated as a potential
low cost biosorbent. It had been used for the removal of copper(II) from the
aqueous solution using fixed-bed column mode. The parameters were fixed for
this study using; 50 mg/L influent concentration, 10 mL/min flow rate, 1.5 cm
bed-depth and pH 5. The adsorption capacity obtained from breakthrough curve
was 35.785 mg/g. The breakthrough time, tb at 71.57 min, while t50% at 118.36
min and exhaustion time, texh at 211.23 min for 2050 mL. The R2 of Thomas
model was 0.885 and qo was 66.50 mg/g while R2 of Yoon-Nelson model was
0.879 and qoYN was 66.75 mg/g. |
format |
Student Project |
author |
Mohd Shukri, Nurul Sahida |
author_facet |
Mohd Shukri, Nurul Sahida |
author_sort |
Mohd Shukri, Nurul Sahida |
title |
Biosorption of cu(ll) onto sulfuric acid treated spent grated coconut (cocos nucifera) in fixed-bed
column / Nurul Sahida Mohd Shukri |
title_short |
Biosorption of cu(ll) onto sulfuric acid treated spent grated coconut (cocos nucifera) in fixed-bed
column / Nurul Sahida Mohd Shukri |
title_full |
Biosorption of cu(ll) onto sulfuric acid treated spent grated coconut (cocos nucifera) in fixed-bed
column / Nurul Sahida Mohd Shukri |
title_fullStr |
Biosorption of cu(ll) onto sulfuric acid treated spent grated coconut (cocos nucifera) in fixed-bed
column / Nurul Sahida Mohd Shukri |
title_full_unstemmed |
Biosorption of cu(ll) onto sulfuric acid treated spent grated coconut (cocos nucifera) in fixed-bed
column / Nurul Sahida Mohd Shukri |
title_sort |
biosorption of cu(ll) onto sulfuric acid treated spent grated coconut (cocos nucifera) in fixed-bed
column / nurul sahida mohd shukri |
publisher |
Faculty of Applied Sciences |
publishDate |
2017 |
url |
http://ir.uitm.edu.my/id/eprint/24054/ http://ir.uitm.edu.my/id/eprint/24054/1/PPb_NURUL%20SAHIDA%20MOHD%20SHUKRI%20AS%20C%2017_5.PDF |
first_indexed |
2023-09-18T23:11:48Z |
last_indexed |
2023-09-18T23:11:48Z |
_version_ |
1777418851692052480 |