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Coal combustion ash was utilized as pozzolanic mineral additive.
The thermal power plant waste material, 'bottom ash' was utilized as a potential adsorbent for the toxic textile dye 'malachite green'.
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Rice husk ash (RHA) was utilized as support to synthesize MnOx/RHA catalyst by incipient wetness impregnation.
Palm oil fuel ash (POFA) was utilized as a pozzolanic material in varied quantities to produce high-strength concretes (HSCx) of above 90 MPa, with significant improvement in its engineering and fluid transport properties.
However, some metals (especially aluminum) in bottom ash can react with water and generate gas that could cause expansion and failure of products containing the ash; these metals must be removed before the ash is utilized.
Gladstone flyash was utilized as the binder whilst the alkaline solution/fly-ash ratio and sodium silicate to sodium hydroxide (Na2SiO3/NaOH) ratio was 0.4 and 2.5 respectively.
Hprt1 was utilized as internal control.
The results show that both metakaolin and volcanic ash can be utilized as source materials for the production of geopolymers.
Siliceous material such as oil palm ash (OPA) can be utilized as an active adsorbent for flue gas desulfurization using hydration process.
Cemented coal gangue-fly ash backfill (CGFB) mixtures are utilized as the filling materials for backfilling the underground openings in coal mines, and the freshly prepared CGFB slurries are commonly transported into the gobs through a pipeline.
Some petroleum ash contains appreciable amounts of vanadium, however, and has been utilized as a source of this element.
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