Abstract:Aluminum hydroxide plays a substantial
role in regulating the environmental
fate and transport of arsenate and phosphate. These minerals display
multiple types of surface reactive sites with distinct adsorption
affinities. As arsenate and phosphate coexist in many natural systems,
a detailed understanding of their interactive adsorption behaviors
on aluminum hydroxides and the underlying binding mechanisms is thus
required to develop predictive models of their fate and mobility.
In this study, we explore how p… Show more
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