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Electron. j. biotechnol ; 8(1): 43-53, Apr. 2005. ilus, graf, tab
Article in English | LILACS | ID: lil-448781

ABSTRACT

This research focuses on understanding biosorption process and developing a cost effective technology for treatment of heavy metals-contaminated industrial wastewater. A new composite biosorbent has been prepared by coating chitosan onto acid treated oil palm shell charcoal (AOPSC). Chitosan loading on the AOPSC support is about 21 percent by weight. The shape of the adsorbent is nearly spherical with particle diameter ranging 100~150 µm. The adsorption capacity of the composite biosorbent was evaluated by measuring the extent of adsorption of chromium metal ions from water under equilibrium conditions at 25ºC. Using Langmuir isotherm model, the equilibrium data yielded the following ultimate capacity values for the coated biosorbent on a per gram basis of chitosan: 154 mg Cr/g. Bioconversion of Cr (VI) to Cr (III) by chitosan was also observed and had been shown previously in other studies using plant tissues and mineral surfaces. After the biosorbent was saturated with the metal ions, the adsorbent was regenerated with 0.1 M sodium hydroxide. Maximum desorption of the metal takes place within 5 bed volumes while complete desorption occurs within 10 bed volumes. Details of preparation of the biosorbent, characterization, and adsorption studies are presented. Dominant sorption mechanisms are ionic interactions and complexation.


Subject(s)
Plant Oils/metabolism , Chitosan , Charcoal/metabolism , Chromium/metabolism , Adsorption , Plant Oils/chemistry , Biodegradation, Environmental , Charcoal/chemistry , Chromium/chemistry , Hydrogen-Ion Concentration , Industrial Waste , Metals, Heavy/metabolism , Temperature , Water Purification/methods
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