Adsorption and desorption characteristics of zinc on ash particles derived from oil palm waste
- 4 April 2002
- journal article
- research article
- Published by Wiley in Journal of Chemical Technology & Biotechnology
- Vol. 77 (6) , 685-693
- https://doi.org/10.1002/jctb.621
Abstract
Solid waste such as palm fibre and shell produced by the palm oil industry is used by palm oil mills as boiler fuel to produce steam for electricity generation. The ash produced after combustion creates a disposal problem for the palm oil industry. This study explored the potential of oil palm ash as an adsorbent material for removal and recovery of zinc ions from aqueous solutions. The equilibrium uptake of zinc was found to increase with solution pH in the range 3–6, yielding a maximum adsorption capacity of 0.163 mmol g−1 of ash at a pH of 6. The affinity constant of oil palm ash was found to greatly exceed that of a commercial ion exchange resin, suggesting that oil palm ash may find potential application in treating dilute zinc‐containing waste streams. Four isotherm models were used to fit the constant pH equilibrium isotherms obtained at four different pH values. The entire data set was successfully simulated using two of the isotherm models: a Langmuir model with pH‐dependent parameters and an extended Langmuir–Freundlich model with pH‐independent parameters. The rates of adsorption and desorption for zinc were measured using a stirred‐batch contactor. The contact time required to reach apparent adsorption equilibrium was found to decrease with increasing adsorbent dosage. Both the rate and the extent of zinc desorption were affected by the pH of the desorbing solution. The adsorption and desorption rates were consistent with simple first‐order rate models.© 2002 Society of Chemical IndustryKeywords
This publication has 26 references indexed in Scilit:
- Removal of Cu2+ and Zn2+ in aqueous solutions by sorption onto mixed fly ashFuel, 2001
- Sorption kinetics for the removal of copper and zinc from effluents using bone charSeparation and Purification Technology, 2000
- Influence of co-cations on biosorption of lead and zinc – a comparative evaluation in binary and multimetal systemsBioresource Technology, 1999
- A review of potentially low-cost sorbents for heavy metalsWater Research, 1999
- Biosorption of Lead, Cadmium, and Zinc by Citrobacter Strain MCM B-181: Characterization StudiesBiotechnology Progress, 1999
- RECYCLING METALS FOR THE ENVIRONMENTAnnual Review of Energy and the Environment, 1998
- Removal of Arsenic(V) from Aqueous Solution Using Industrial Solid Waste: Adsorption Rates and Equilibrium StudiesIndustrial & Engineering Chemistry Research, 1998
- Cation Exchange Properties of Hydrothermally Treated Coal Fly AshEnvironmental Science & Technology, 1995
- Biosorption of heavy metals (Cd, Cu, Ni, Pb, Zn) by chemically‐reinforced biomass of marine algaeJournal of Chemical Technology & Biotechnology, 1995
- Isotherm analyses for single component and multi‐component metal sorption onto ligniteJournal of Chemical Technology & Biotechnology, 1995