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Activated carbons derived from oil palm empty-fruit bunches: Application to environmental problems
作者姓名:Md. Zahangir ALAM  Suleyman A. MUYIBI  Mariatul F. MANSOR  Radziah WAHID
作者单位:Bioenvironmental Engineering Research Unit, Department of Biotechnology Engineering, Faculty of Engineering, International Islamic University Malaysia, Jalan Gombak, 53100 Kuala Lumpur, Malaysia
基金项目:Acknowledgements: The authors are grateful to the Research Center (RC), International Islamic University Malaysia (IIUM) for their support by approving a research grant (BERU Project).
摘    要:Activated carbons derived from oil palm empty fruit bunches (EFB) were investigated to find the suitability of its application for removal of phenol in aqueous solution through adsorption process, Two types of activation namely; thermal activation at 300, 500 and 800℃and physical activation at 150℃ (boiling treatment) were used for the production of the activated carbons. A control (untreated EFB) was used to compare the adsorption capacity of the activated carbons produced from these processes. The results indicated that the activated carbon derived at the temperature of 800℃ showed maximum absorption capacity in the aqueous solution of phenol. Batch adsorption studies showed an equilibrium time of 6 h for the activated carbon at 800℃. It was observed that the adsorption capacity was higher at lower values of pH (2-3) and higher value of initial concentration of phenol (200-300 mg/L). The equilibrium data fitted better with the Freundlich adsorption isotherm compared to the Langmuir. Kinetic studies of phenol adsorption onto activated carbons were also studied to evaluate the adsorption rate. The estimated cost for production of activated carbon from EFB was shown in lower price (USD 0.50/kg of activated carbon) compared the activated carbon from other sources and processes.

关 键 词:活性碳  环境问题  吸附作用  垃圾处理
收稿时间:2005-12-14
修稿时间:2006-03-18

Activated carbons derived from oil palm empty-fruit bunches: Application to environmental problems
Md. Zahangir ALAM,Suleyman A. MUYIBI,Mariatul F. MANSOR,Radziah WAHID.Activated carbons derived from oil palm empty-fruit bunches: Application to environmental problems[J].Journal of Environmental Sciences,2007,19(1):103-108.
Authors:Md Zahangir ALAM  Suleyman A MUYIBI  Mariatul F MANSOR and Radziah WAHID
Institution:Bioenvironmental Engineering Research Unit,Department of Biotechnology Engineering,Faculty of Engineering,International Islamic University Malaysia,Jalan Gombak,53100 Kuala Lumpur,Malaysia
Abstract:Activated carbons derived from oil palm empty fruit bunches (EFB) were investigated to find the suitability of its application for removal of phenol in aqueous solution through adsorption process. Two types of activation namely; thermal activation at 300, 500 and 800℃ and physical activation at 150℃ (boiling treatment) were used for the production of the activated carbons. A control (untreated EFB) was used to compare the adsorption capacity of the activated carbons produced from these processes. The results indicated that the activated carbon derived at the temperature of 800℃ showed maximum absorption capacity in the aqueous solution of phenol. Batch adsorption studies showed an equilibrium time of 6 h for the activated carbon at 800℃. It was observed that the adsorption capacity was higher at lower values of pH (2-3) and higher value of initial concentration of phenol (200-300 mg/L). The equilibrium data fitted better with the Freundlich adsorption isotherm compared to the Langmuir. Kinetic studies of phenol adsorption onto activated carbons were also studied to evaluate the adsorption rate. The estimated cost for production of activated carbon from EFB was shown in lower price (USD 0.50/kg of AC) compared the activated carbon from other sources and processes.
Keywords:activated carbon  adsorption  lignocellulosic empty fruit bunches  phenolic compound  solid waste management  oil palm  derived  environmental problems  sources  cost  price  Kinetic  evaluate  adsorption rate  data  better  Freundlich adsorption isotherm  Langmuir  values  initial  concentration  lower  Batch  studies  equilibrium
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