Title of article :
Electrostatic potential on anti-scalants modified CaCO3 (104) surface: A molecular simulation study Original Research Article
Author/Authors :
Pei-Qing Yuan، نويسنده , , Ning Kong، نويسنده , , Zhenmin Cheng، نويسنده , , Raphael Semiat، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
11
From page :
246
To page :
256
Abstract :
Molecular dynamics simulation and Density Functional Theory were used to investigate the adsorption of two kinds of anti-scalant, ethane diphosphonic acid (EDPA) and polyether polyamino methylene phosphonate (PAPEMP), on the calcite (104) surface in order to increase the level of understanding of the anti-scaling mechanism in membrane processes for water desalination. Calculation results show that the performance of an anti-scalant is mainly determined by the negative electrostatic potential presented on the anti-scalant modified scale surface. A negative electrostatic potential on the scale surface can prevent not only the agglomeration of scale nuclei in the concentrate but also the precipitation of scale nuclei on the membrane surface. Phosphonate groups in 1,1-EDPA are bifunctional since they simultaneously satisfy the requirements for the electrostatic potential distribution and for the adsorption stability on the scale surface. As concerns PAPEMP, the above requirements are fulfilled respectively by different functional groups, i.e. ether groups and phosphonate groups. To simplify the role of functional groups in the anti-scaling mechanism means that the performance of an anti-scalant can be optimized by the combination of specific functional groups; furthermore, these functional groups can also be adjusted with respect to different scale surfaces.
Keywords :
Calcite , Anti-scaling mechanism , Electrostatic potential , Molecular simulation
Journal title :
Desalination
Serial Year :
2009
Journal title :
Desalination
Record number :
1112056
Link To Document :
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