Limestone-zeolite biocomposite as potential low-cost adsorbent for landfill leachate remediation
A novel approach for the low-cost bioadsorbent for the removal of leachate pollutants is presented herein. In this study, limestone is combined with zeolite in order to fabricate biocomposite media with different ratios. Results revealed that limestone-zeolite biocomposite adsorbed ammoniacal nitrog...
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my.uthm.eprints.62172022-01-31T07:05:27Z http://eprints.uthm.edu.my/6217/ Limestone-zeolite biocomposite as potential low-cost adsorbent for landfill leachate remediation Rosli, Mohd Arif Daud, Zawawi Ridzuan, Mohd Baharudin Awang, Halizah TP248.13-248.65 Biotechnology A novel approach for the low-cost bioadsorbent for the removal of leachate pollutants is presented herein. In this study, limestone is combined with zeolite in order to fabricate biocomposite media with different ratios. Results revealed that limestone-zeolite biocomposite adsorbed ammoniacal nitrogen (NH3-N) and COD, which could possibly be used for the adsorption of NH3-N and COD efficiently from leachate. The optimum mixing ratio by means was carried out using series of batch experiments for limestone and zeolite to measure the remediation of NH3-N and COD in a stabilized leached. The optimum ratio for limestone and zeolite in the remediation of NH3-N and COD obtained were at 25:15 (82%) and 30:10 (75%), respectively. Indeed, the prepared limestone-zeolite biocomposite is a low-cost and effective adsorbent was potential used to derive the NH3-N and COD for a promising adsorption efficiency from stabilized landfill leachate. 2020 Conference or Workshop Item PeerReviewed text en http://eprints.uthm.edu.my/6217/1/P12452_116188a318926e89662cf4dc0aed49f9.pdf Rosli, Mohd Arif and Daud, Zawawi and Ridzuan, Mohd Baharudin and Awang, Halizah (2020) Limestone-zeolite biocomposite as potential low-cost adsorbent for landfill leachate remediation. In: 2nd International Conference on Green Environmental Engineering and Technology, 23th – 24th July 2020, WEBINAR. https://doi.org/10.1088/1755-1315/616/1/012078 |
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TP248.13-248.65 Biotechnology Rosli, Mohd Arif Daud, Zawawi Ridzuan, Mohd Baharudin Awang, Halizah Limestone-zeolite biocomposite as potential low-cost adsorbent for landfill leachate remediation |
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A novel approach for the low-cost bioadsorbent for the removal of leachate pollutants is presented herein. In this study, limestone is combined with zeolite in order to fabricate biocomposite media with different ratios. Results revealed that limestone-zeolite biocomposite adsorbed ammoniacal nitrogen (NH3-N) and COD, which could possibly be used for the adsorption of NH3-N and COD efficiently from leachate. The optimum mixing ratio by means was carried out using series of batch experiments for limestone and zeolite to measure the remediation of NH3-N and COD in a stabilized leached. The optimum ratio for limestone and zeolite in the remediation of NH3-N and COD obtained were at 25:15 (82%) and 30:10 (75%), respectively. Indeed, the prepared limestone-zeolite biocomposite is a low-cost and effective adsorbent was potential used to derive the NH3-N and COD for a promising adsorption efficiency from stabilized landfill leachate. |
format |
Conference or Workshop Item |
author |
Rosli, Mohd Arif Daud, Zawawi Ridzuan, Mohd Baharudin Awang, Halizah |
author_facet |
Rosli, Mohd Arif Daud, Zawawi Ridzuan, Mohd Baharudin Awang, Halizah |
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Rosli, Mohd Arif |
title |
Limestone-zeolite biocomposite as potential low-cost adsorbent for landfill leachate remediation |
title_short |
Limestone-zeolite biocomposite as potential low-cost adsorbent for landfill leachate remediation |
title_full |
Limestone-zeolite biocomposite as potential low-cost adsorbent for landfill leachate remediation |
title_fullStr |
Limestone-zeolite biocomposite as potential low-cost adsorbent for landfill leachate remediation |
title_full_unstemmed |
Limestone-zeolite biocomposite as potential low-cost adsorbent for landfill leachate remediation |
title_sort |
limestone-zeolite biocomposite as potential low-cost adsorbent for landfill leachate remediation |
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2020 |
url |
http://eprints.uthm.edu.my/6217/1/P12452_116188a318926e89662cf4dc0aed49f9.pdf http://eprints.uthm.edu.my/6217/ https://doi.org/10.1088/1755-1315/616/1/012078 |
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