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Adsorption Characteristics of Pb(II) and Cr(III) onto C‐4‐Methoxyphenylcalix[4]Resorcinarene in Batch and Fixed Bed Column Systems
Authors:Jumina  Ratnaningsih Eko Sarjono  Brajna Paramitha  Ika Hendaryani  Dwi Siswanta  Sri Juari Santosa  Chairil Anwar  Hardjono Sastrohamidjojo  Keisuke Ohto  Tatsuya Oshima
Affiliation:1. Department of Chemistry, Faculty of Mathematics and Natural Sciences, Gadjah Mada University, Sekip Utara, Yogyakarta 55281, Indonesia;2. Department of Chemistry, Faculty of Mathematics and Natural Sciences, Indonesia Educational University, Bandung, Indonesia;3. Department of Applied Chemistry, Faculty of Science and Engineering, Saga University, 1‐Honjo, Saga 840–8502, Japan;4. Department of Applied Chemistry, Faculty of Science and Engineering, Miyazaki University, 1–1 Gakuenkibanadai‐nishi, Miyazaki 889–2192, Japan
Abstract:A study on the adsorption characteristics of Pb(II) and Cr(III) cations onto C‐4‐methoxyphenylcalix‐[4]resorcinarene (CMPCR) in batch and fixed bed column systems has been conducted. CMPCR was produced by one step synthesis from resorcinol, 4‐methoxybenzaldehyde, and HCl. The synthesis was carried out at 78 °C for 24 hours and afforded the adsorbent in 85.7% as a 3:2 mixture of C:C isomer. Most parameters in batch and fixed bed column systems confirm that CMPCR is a good adsorbent for Pb(II) and Cr(III), though Pb(II) adsorption was more favorable than that of Cr(III). The adsorption kinetic of Pb(II) and Cr(III) adsorptions in batch and fixed bed column systems followed a pseudo 2n order kinetics model. The rate constant of Pb(II) was higher than that of Cr(III) in the batch system, but this result was contrary to the result obtained in a fixed bed column system. Desorption studies to recover the adsorbed Pb(II) and Cr(III) were performed sequentially with distilled water and HCl, and the results showed that the adsorption was dominated by chemisorption.
Keywords:Adsorption  Pb(II)  Cr(III)  C‐4‐Methoxyphenylcalix[4]resorcinarene  Batch system  Fixed bed column system
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