Adsorption From Aqueous Solutions

Adsorption From Aqueous Solutions
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The maximum adsorption capacity of APK was resulted as The value of separation factor R L from Langmuir equation and Freundlich constant n indicated on favorability of adsorption. Kinetics result revealed that adsorption of MV is of pseudo second-order ascertaining the chemisorptions type. The pH of the solution affects the surface charge of the adsorbent and the degree of ionization of adsorbate and adsorption was efficient at merely neutral pH range pH Experimental equilibrium data showed best fit with Freundlich isotherm and Thermodynamic data showed the relevance on favoring the adsorption process.

Behera, S. Das, B. Murmu, R. Mohapatra, T. Sahoo and P. Abstract: Background: At present scenario, there is the global issue due to the environment pollution caused by waste effluent bearing organic dyes such as Methyl Violet MV while getting mixed into the surface water. Journal Name: Current Environmental Engineering. Volume 3 , Issue 3 , Journal Home.

Asian Journal of Green Chemistry

Graphical Abstract: Abstract: Background: At present scenario, there is the global issue due to the environment pollution caused by waste effluent bearing organic dyes such as Methyl Violet MV while getting mixed into the surface water. Close Print this page. Wang Z.

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Gou J. Highly efficient adsorption and removal of Chrysoidine Y from aqueous solution by magnetic graphene oxide nanocomposite. Arabian J. Huang F. Chen G. Magnetic removal of dyes from aqueous solution using multi-walled carbon nanotubes filled with Fe 2 O 3 particles. Zhu J. Guo H.

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Adsorption from aqueous solutions is important in many tech nological areas, like water purification, mineral beneficiation, soil conservation, detergency, and. The study on the adsorption mechanism indicates that the adsorbent performed in aqueous solutions as an ionic exchanger whose end group was sodium ion.

Chen M. Wei H. Luo Z. Colorado H. Yerra N.


Ding D. Haldolaarachchige N. Hopper J. Young D. Guo Z. Mesoporous magnetic carbon nanocomposite fabrics for highly efficient Cr VI removal. A 2 — Preparation of carbon nanotubes using CVD method. Turek M.

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Horvat M. Determination of nickel in tea by using dimethylglyoxime method. Scientific Bulletin of the Technical University of Lodz. Food Chemistry and Biotechnology 74 5— Zhao N. Shi C. Alloys Comp. Canete-Rosales P. Ortega V. Bollo S. Influence of size and oxidative treatments of multi-walled carbon nanotubes on their electrocatalytic properties. Acta 62 — Kolacyak D. Ihde J. Merten C. Hartwig A. Fast functionalization of multi-walled carbon nanotubes by an atmospheric pressure plasma jet.

Velasco-Santos C.

Adsorption of naphthalene onto sonicated talc from aqueous solutions. - Abstract - Europe PMC

Delgado G. Duron-Torres S. J Nanomat. Coates J.

Bibliographic Information

The results of the abovementioned analyses showed that the adsorption kinetic process fit well with the second-order equation. Adsorption A. It is vital to understand the adsorption mechanisms and identify the adsorption kinetics when applying an adsorbent to remove heavy metals from aqueous solution. J Appl Phys. Improving the capability of UiO for Cr VI adsorption from aqueous solutions by introducing isonicotinate N -oxide as the functional group N. The experimental factors that may affect the adsorption efficiency were investigated, including the initial pH of the mixed solution 3. Poll Res.

Encyclopedia of Analytical Chemistry. Chen J. Chen Q. A: Chem. Helminiak A. Mijowska E. Characterization of carbon deposit with controlled carburization degree. Chairat M. Rattanaphani S. Bremner J.

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Adsorption kinetic study of lac dyeing on cotton. Dyes Pigm. Kumar P. Equilibrium and kinetic study of adsorption of nickel from aqueous solution onto bael tree leaf powder. Zhou Y. Desalination 72— Kapoor A. Heavy metal biosorption sites in Aspergillus Niger. Suemitsu R. Uenishi R. Akashi I. The use of dyestuff-treated rice hulls for removal of heavy metals from wastewater.

Al-Rub F. Nickel removal from aqueous solution by using sheep Manure Waste. Life Sci. Padmavathy V. Jhonwase D. Batch nickel removal from aqueous solution by Sphagnum moss peat. Water Res. Ewecharoen A. Thiravetyan P.

Supplementary files

Comparison of nickel adsorption form electroplating rinse water by coir pith and modified coir pith. Huang C.

Ying-Chien C. Sharma Y. Separation of Ni II ions from aqueous solutions by magnetic nanoparticles. Data 55 — Meena A. Mishra G. Rai P. Rajgopal C. Removal of heavy metal ions from aqueous solution using carbon aerogel as an adsorbent.