Effect of speciation transformation on the coagulation behavior of Al13 and Al13 aggregates

Влияние превращения форм алюминия на коагуляционное поведение Al13 и агрегатов Al13
Dongsheng Wang, Hongxiao Tang, Changqing Ye, Xiaohong Wu, Xiaopeng Ge
2009-02-01

Al13Al13 aggregatesOH/Al ratio[Al(13)](n)aluminium fractal polycationsamorphous aluminium oxidesbridge-aggregationcharge-neutralizationcoagulation mechanismselectro-patch coagulationfloc size distributionflocculation kineticssurface adsorptionsurface precipitationsweep-flocculation
Flocculation of kaolin suspension with aluminium fractal polycations was investigated as a function of aluminium concentration and pH. Aluminium flocculants included Al(13) and Al(13) aggregates with OH/Al ratio of 2.6 and 2.8, respectively. The flocculation kinetics and floc size distribution were monitored by light scattering. The characterization of flocculants showed that the tridecatmer Al(13) and bridged [Al(13)](n) with out-sphere structure were the dominant species for all flocculants in a wide pH range. The coagulation results indicated that the pre and in situ-formed [Al(13)](n) play a key role in removing particles. With the increasing concentration of [Al(13)](n), coagulation mechanisms were transformed from charge-neutralization, electro-patch coagulation to bridge-aggregation. Moreover, sweep-flocculation was involved at higher dosage besides other three mechanisms when amorphous aluminium oxides formed. Hence, chemical interaction between particles and flocculants evolved from surface adsorption to surface precipitation for aluminium polycations by virtue of species transformation.
1
At higher dosages, sweep-flocculation occurs in addition to charge-neutralization, electro-patch, and bridge-aggregation when amorphous aluminium oxides form.
2
Increasing concentration of [Al13]n shifts coagulation mechanisms from charge-neutralization to electro-patch coagulation and then to bridge-aggregation.
3
Pre-formed and in situ-formed [Al13]n aggregates play a key role in removing kaolin particles during coagulation.
4
Species transformation of aluminium polycations changes chemical interactions with particles from surface adsorption to surface precipitation.
5
Tridecamer Al13 and bridged [Al13]n with outer-sphere structure are the dominant aluminium species across a wide pH range in the studied flocculants.

Aluminium fractal polycation flocculants (Al13 and Al13 aggregates) used to treat kaolin suspension

Effect of speciation transformation (formation and concentration of Al13 and [Al13]n aggregates and amorphous aluminium oxides) on coagulation/flocculation behavior and mechanisms (charge neutralization, electro-patch, bridge-aggregation, sweep-flocculation), kinetics, and floc size distribution

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2009-02-01
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Dongsheng Wang
Hongxiao Tang
Changqing Ye
Xiaohong Wu
Xiaopeng Ge
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