WASET
	@article{(Open Science Index):https://publications.waset.org/pdf/3913,
	  title     = {The Removal of Cu (II) Ions from Aqueous Solutions on Synthetic Zeolite NaA},
	  author    = {Dimitar Georgiev and  Bogdan Bogdanov and  Yancho Hristov and  Irena Markovska},
	  country	= {},
	  institution	= {},
	  abstract     = {In this study the adsorption of Cu (II) ions from aqueous solutions on synthetic zeolite NaA was evaluated. The effect of solution temperature and the determination of the kinetic parameters of adsorption of Cu(II) from aqueous solution on zeolite NaA is important in understanding the adsorption mechanism. Variables of the system include adsorption time, temperature (293- 328K), initial solution concentration and pH for the system. The sorption kinetics of the copper ions were found to be strongly dependent on pH (the optimum pH 3-5), solute ion concentration and temperature (293 – 328 K). It was found, the pseudo-second-order model was the best choice among all the kinetic models to describe the adsorption behavior of Cu(II) onto ziolite NaA, suggesting that the adsorption mechanism might be a chemisorptions process The activation energy of adsorption (Ea) was determined as Cu(II) 13.5 kJ mol-1. The low value of Ea shows that Cu(II) adsorption process by zeolite NaA may be an activated chemical adsorption. The thermodynamic parameters (ΔG0, ΔH0, and ΔS0) were also determined from the temperature dependence. The results show that the process of adsorption Cu(II) is spontaneous and endothermic process and rise in temperature favors the adsorption.
},
	    journal   = {International Journal of Environmental and Ecological Engineering},
	  volume    = {6},
	  number    = {4},
	  year      = {2012},
	  pages     = {214 - 218},
	  ee        = {https://publications.waset.org/pdf/3913},
	  url   	= {https://publications.waset.org/vol/64},
	  bibsource = {https://publications.waset.org/},
	  issn  	= {eISSN: 1307-6892},
	  publisher = {World Academy of Science, Engineering and Technology},
	  index 	= {Open Science Index 64, 2012},
	}