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halseyanalysis

Halsey Isotherm Analysis Non-Linear Form


Description

used to evaluate multilayer adsorption at a relatively large distance from the surface

Usage

halseyanalysis(Ce, Qe)

Arguments

Ce

the numerical value for the equilibrium capacity

Qe

the numerical value for the adsorbed capacity

Value

the nonlinear regression and the parameters for the Halsey isotherm analysis

Author(s)

Aries N. Bunag

C.C. Deocaris

References

Sousa Neto, V.O., Oliveira, A. G., Teixeira, R.N.P., Silva, M.A.A.,Freire, P.T.C., Keukeleire, D.D., & Nascimento, R.S.(2011). USE OF COCONUT BAGASSE AS ALTERNATIVE ADSORBENT FOR SEPARATION OF COPPER(III) IONS FROM AQUEOUS SOLUTIONS: ISOTHERMS, KINETIC AND THERMODYNAMIC STUDIES. Retrived February 17, 2020, from https://bioresources.cnr.ncsu.edu/BioRes_06/BioRes_06_3_3376_Neto_OTSFKN_Coconut_Bagasse_Ads_Cu2_Water_Kinet_Thermo_1822.pdf

Imran, M., Naseem, Khalida, Mirza, Latif, M., & Madeeha. (2018, December 1). Evaluation of Saccharum bengalense as a Non-Conventional Biomaterial for Biosorption of Mn(II) Ions from Aqueous Solutions. Retrieved February 17.2020, from http://www.ijcce.ac.ir/article_29361.html

Examples

Ce <- c(0.01353, 0.04648, 0.13239, 0.27714, 0.41600, 0.63607, 0.80435, 1.10327, 1.58223)
Qe <- c(0.03409, 0.06025, 0.10622, 0.12842, 0.15299, 0.15379, 0.15735, 0.15735, 0.16607)
halseyanalysis(Ce, Qe)

PUPAIM

A Collection of Physical and Chemical Adsorption Isotherm Models

v0.2.0
GPL-2
Authors
John Ray V. Saroyda, Ranya Yyan S. Cruz, Roel Joseph C. Antonio, Carl Luis P. Flestado, Jeff Ryan S. Magalong, Kim Zyrell P. Zagala, Carmela L. Barbacena, Jeann M. Bumatay, Leslie F. Bautista, Chester C. Deocaris
Initial release

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