Cod removal by rice husk activated carbon

Wastewater from industrial, agricultural, and urban activities is channeled directly into the streams. High Chemical Oxygen Demand (COD) level in water indicated a vast amount oxidizable matter that consume a lot of dissolved oxygen in water. This results in adverse impacts on both aquatic ecosystem...

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Main Author: Lim Ke Vin
Format: Undergraduate Final Project Report
Language:English
Published: 2019
Online Access:http://discol.umk.edu.my/id/eprint/4541/1/Lim%20Ke%20Vin.pdf
http://discol.umk.edu.my/id/eprint/4541/
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spelling my.umk.eprints.45412022-05-23T21:45:04Z http://discol.umk.edu.my/id/eprint/4541/ Cod removal by rice husk activated carbon Lim Ke Vin Wastewater from industrial, agricultural, and urban activities is channeled directly into the streams. High Chemical Oxygen Demand (COD) level in water indicated a vast amount oxidizable matter that consume a lot of dissolved oxygen in water. This results in adverse impacts on both aquatic ecosystems and human health. Wastewater from the fish cracker industry typically has high organic content and high COD value. In this study, rice husk was chose as adsorbent for it is abundance and economical. This study emphasized on the optimum adsorption parameters such as flow rate, time and initial COD concentration that affecting adsorption by rice husk activated carbon. Response Surface Methodology was used to optimize the variables affecting COD removal percentage. Activation of rice husk by phosphoric acid was done after it was carbonized at 450 °C for 2 h. The treatment was done in a continuous fixed bed column. The wastewater’s WQI value was calculated to be 11.82 and thus considered as polluted. From the Box-Behnken design, it was determined that a high 68.09 % removal percentage resulted from a best combination of 4.5 hours’ time, 1 ml/min of flowrate, and 5 % initial COD concentration. SEM micrograph shows the adsorbent consists of large amounts of pores. Based on the study, rice husk activated carbon is proved to be a good COD absorbent. 2019 Undergraduate Final Project Report NonPeerReviewed text en http://discol.umk.edu.my/id/eprint/4541/1/Lim%20Ke%20Vin.pdf Lim Ke Vin (2019) Cod removal by rice husk activated carbon. Final Year Project thesis, Universiti Malaysia Kelantan. (Submitted)
institution Universiti Malaysia Kelantan
building Perpustakaan Universiti Malaysia Kelantan
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Kelantan
content_source UMK Institutional Repository
url_provider http://umkeprints.umk.edu.my/
language English
description Wastewater from industrial, agricultural, and urban activities is channeled directly into the streams. High Chemical Oxygen Demand (COD) level in water indicated a vast amount oxidizable matter that consume a lot of dissolved oxygen in water. This results in adverse impacts on both aquatic ecosystems and human health. Wastewater from the fish cracker industry typically has high organic content and high COD value. In this study, rice husk was chose as adsorbent for it is abundance and economical. This study emphasized on the optimum adsorption parameters such as flow rate, time and initial COD concentration that affecting adsorption by rice husk activated carbon. Response Surface Methodology was used to optimize the variables affecting COD removal percentage. Activation of rice husk by phosphoric acid was done after it was carbonized at 450 °C for 2 h. The treatment was done in a continuous fixed bed column. The wastewater’s WQI value was calculated to be 11.82 and thus considered as polluted. From the Box-Behnken design, it was determined that a high 68.09 % removal percentage resulted from a best combination of 4.5 hours’ time, 1 ml/min of flowrate, and 5 % initial COD concentration. SEM micrograph shows the adsorbent consists of large amounts of pores. Based on the study, rice husk activated carbon is proved to be a good COD absorbent.
format Undergraduate Final Project Report
author Lim Ke Vin
spellingShingle Lim Ke Vin
Cod removal by rice husk activated carbon
author_facet Lim Ke Vin
author_sort Lim Ke Vin
title Cod removal by rice husk activated carbon
title_short Cod removal by rice husk activated carbon
title_full Cod removal by rice husk activated carbon
title_fullStr Cod removal by rice husk activated carbon
title_full_unstemmed Cod removal by rice husk activated carbon
title_sort cod removal by rice husk activated carbon
publishDate 2019
url http://discol.umk.edu.my/id/eprint/4541/1/Lim%20Ke%20Vin.pdf
http://discol.umk.edu.my/id/eprint/4541/
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score 13.160551