SYNTHESIS OF ZSM-5 ZEOLITE WITH LOW TEMPERATURE FOR SEPARATING THE MIXTURES BETWEEN CU2+ AND PB2+ AS WELL AS THE MIXTURES BETWEEN CU2+ AND NI2+ CATION

Plumbum(II), copper(II) and nickel(II) is one of heavy metals group that very harmful, because of its toxicity and interfere a human nerves. Many separation research has allowed like solvent extraction, precipitation, solid phase extraction and ion-exchange. In this research, it has been done analys...

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Bibliographic Details
Main Author: REDYTE PRATAMA (NIM : 10508068); Pembimbing 1 : Dr. Suryo Gandasasmita; Pembimbing 2 : , IGNATIUS
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/15988
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Institution: Institut Teknologi Bandung
Language: Indonesia
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Summary:Plumbum(II), copper(II) and nickel(II) is one of heavy metals group that very harmful, because of its toxicity and interfere a human nerves. Many separation research has allowed like solvent extraction, precipitation, solid phase extraction and ion-exchange. In this research, it has been done analysis with column chromatograph with MFI zeolite as separator material for that would separate mixture of Cu2+ and Pb2+ then Cu2+ and Ni2+. The main principal of this separation is a various of pore size between metals pore and zeolite’s pore. MFI zeolite was synthesized at 90oC temperature with ratio /Al=100, H20/Si=11.69, NaOH/Si=0.14 dan Tpa-Br/Si=0.086. Time is adjusted between 2-4 days. The formed zeolite then characterized with XRD, SEM-EDX and N2 adsorption-desorption. Separation process of Cu2+ and Pb2+ then Cu2+ and Ni2+ is using column chromatograph with initial starting liquid at 10 ppm then eluted with obtained volume then eluate was patched at 1 mL micro tube. The results showed that AAS analysis is possibly that copper(II) trapped at zeolite material with separation efficiency about 30-40%, while lead(II) and nickel(II) is passed away from pores trapped. Other characterization such as SEM-EDS is to evaluate the possibly of lead(II), copper(II), and nickel(II) and XRD is to reveal the structureof synthesized material.