WASET
	@article{(Open Science Index):https://publications.waset.org/pdf/5509,
	  title     = {Physical-Chemical Surface Characterization of Lake Nasser Sediments},
	  author    = {Yousra M. Zakaria Helmy and  Edward H. Smith},
	  country	= {},
	  institution	= {},
	  abstract     = {Lake Nasser is one of the largest reservoirs in the
world. Over 120 million metric tons of sediments are deposited in its
dead storage zone every year. The main objective of the present work
was to determine the physical and chemical characteristics of Lake
Nasser sediments. The sample had a relatively low surface area of 2.9
m2/g which increased more than 3-fold upon chemical activation. The
main chemical elements of the raw sediments were C, O and Si with
some traces of Al, Fe and Ca. The organic functional groups for the
tested sample included O-H, C=C, C-H and C-O, with indications of
Si-O and other metal-C and/or metal-O bonds normally associated
with clayey materials. Potentiometric titration of the sample in
different ionic strength backgrounds revealed an alkaline material with
very strong positive surface charge at pH values just a little less than
the pH of zero charge which is ~9. Surface interactions of the
sediments with the background electrolyte were significant. An
advanced surface complexation model was able to capture these
effects, employing a single-site approach to represent protolysis
reactions in aqueous solution, and to determine the significant surface
species in the pH range of environmental interest.},
	    journal   = {International Journal of Geological and Environmental Engineering},
	  volume    = {4},
	  number    = {6},
	  year      = {2010},
	  pages     = {216 - 221},
	  ee        = {https://publications.waset.org/pdf/5509},
	  url   	= {https://publications.waset.org/vol/42},
	  bibsource = {https://publications.waset.org/},
	  issn  	= {eISSN: 1307-6892},
	  publisher = {World Academy of Science, Engineering and Technology},
	  index 	= {Open Science Index 42, 2010},
	}