A DETAILED INVESTIGATION ON ENGINEERING PARAMETERS FOR Cd(II) REMOVAL BY RIPPED CITRUS PARADISI PULP WASTE
The contemporary investigation presents a fundamental study on the removal of Cd(II) by ripped Citrus Paradisi pulp waste (RCPW). The effects of various engineering parameters such as initial solution pH, biosorbent dose, agitation, contact time, initial concentration, temperature and different elue...
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Sociedad Chilena de Química
2013
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Acceso en línea: | http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0717-97072013000400058 |
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oai:scielo:S0717-970720130004000582014-09-02A DETAILED INVESTIGATION ON ENGINEERING PARAMETERS FOR Cd(II) REMOVAL BY RIPPED CITRUS PARADISI PULP WASTEISHFAQ,TAHIRNAVEED,SAJIDAKAZMI,MOHSINBHATTI,HAQ NAWAZFEROZE,NADEEM Batch study Biosorption Desorbent Engineering parameters Kinetic & Equilibrium models The contemporary investigation presents a fundamental study on the removal of Cd(II) by ripped Citrus Paradisi pulp waste (RCPW). The effects of various engineering parameters such as initial solution pH, biosorbent dose, agitation, contact time, initial concentration, temperature and different eluents were evaluated on the uptake of Cd(II) by RCPW. Optimum uptake of Cd(II) onto RCPW was observed at 6.5 pH, 0.05 g of biosorbent and 100 rpm. Pseudo second order kinetic model best described the process of Cd(II) uptake by RCPW. Results showed that the sequestration of cadmium on RCPW was in monolayer as described by Langmuir's Model. Increase in temperature negatively affected the biosorption capacity of Cd(II) on RCPW indicating exothermic nature of the phenomenon. 0.1N NaOH was found to be the best desorbent among HNO3, H2SO4, HCl and EDTA.info:eu-repo/semantics/openAccessSociedad Chilena de QuímicaJournal of the Chilean Chemical Society v.58 n.4 20132013-12-01text/htmlhttp://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0717-97072013000400058en10.4067/S0717-97072013000400058 |
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Scielo Chile |
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Scielo Chile |
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English |
topic |
Batch study Biosorption Desorbent Engineering parameters Kinetic & Equilibrium models |
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Batch study Biosorption Desorbent Engineering parameters Kinetic & Equilibrium models ISHFAQ,TAHIR NAVEED,SAJIDA KAZMI,MOHSIN BHATTI,HAQ NAWAZ FEROZE,NADEEM A DETAILED INVESTIGATION ON ENGINEERING PARAMETERS FOR Cd(II) REMOVAL BY RIPPED CITRUS PARADISI PULP WASTE |
description |
The contemporary investigation presents a fundamental study on the removal of Cd(II) by ripped Citrus Paradisi pulp waste (RCPW). The effects of various engineering parameters such as initial solution pH, biosorbent dose, agitation, contact time, initial concentration, temperature and different eluents were evaluated on the uptake of Cd(II) by RCPW. Optimum uptake of Cd(II) onto RCPW was observed at 6.5 pH, 0.05 g of biosorbent and 100 rpm. Pseudo second order kinetic model best described the process of Cd(II) uptake by RCPW. Results showed that the sequestration of cadmium on RCPW was in monolayer as described by Langmuir's Model. Increase in temperature negatively affected the biosorption capacity of Cd(II) on RCPW indicating exothermic nature of the phenomenon. 0.1N NaOH was found to be the best desorbent among HNO3, H2SO4, HCl and EDTA. |
author |
ISHFAQ,TAHIR NAVEED,SAJIDA KAZMI,MOHSIN BHATTI,HAQ NAWAZ FEROZE,NADEEM |
author_facet |
ISHFAQ,TAHIR NAVEED,SAJIDA KAZMI,MOHSIN BHATTI,HAQ NAWAZ FEROZE,NADEEM |
author_sort |
ISHFAQ,TAHIR |
title |
A DETAILED INVESTIGATION ON ENGINEERING PARAMETERS FOR Cd(II) REMOVAL BY RIPPED CITRUS PARADISI PULP WASTE |
title_short |
A DETAILED INVESTIGATION ON ENGINEERING PARAMETERS FOR Cd(II) REMOVAL BY RIPPED CITRUS PARADISI PULP WASTE |
title_full |
A DETAILED INVESTIGATION ON ENGINEERING PARAMETERS FOR Cd(II) REMOVAL BY RIPPED CITRUS PARADISI PULP WASTE |
title_fullStr |
A DETAILED INVESTIGATION ON ENGINEERING PARAMETERS FOR Cd(II) REMOVAL BY RIPPED CITRUS PARADISI PULP WASTE |
title_full_unstemmed |
A DETAILED INVESTIGATION ON ENGINEERING PARAMETERS FOR Cd(II) REMOVAL BY RIPPED CITRUS PARADISI PULP WASTE |
title_sort |
detailed investigation on engineering parameters for cd(ii) removal by ripped citrus paradisi pulp waste |
publisher |
Sociedad Chilena de Química |
publishDate |
2013 |
url |
http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0717-97072013000400058 |
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