Literature DB >> 21246259

Simultaneous leaching and carbon sequestration in constrained aqueous solutions.

Ji-Won Moon1, Kyu-Seong Cho, James G Moberly, Yul Roh, Tommy J Phelps.   

Abstract

The behavior of metal ions' leaching and precipitated mineral phases of metal-rich fly ash (FA) was examined in order to evaluate microbial impacts on carbon sequestration and metal immobilization. The leaching solutions consisted of aerobic deionized water (DW) and artificial eutrophic water (AEW) that was anaerobic, organic- and mineral-rich, and higher salinity as is typical of bottom water in eutrophic algae ponds. The Fe- and Ca-rich FAs were predominantly composed of quartz, mullite, portlandite, calcite, hannebachite, maghemite, and hematite. After 86 days, only Fe and Ca contents exhibited a decrease in leaching solutions while other major and trace elements showed increasing or steady trends in preference to the type of FA and leaching solution. Ca-rich FA showed strong carbon sequestration efficiency ranging up to 32.3 g CO(2)/kg FA after 86 days, corresponding to almost 65% of biotic carbon sequestration potential under some conditions. Variations in the properties of FAs such as chemical compositions, mineral constituents as well as the type of leaching solution impacted CO(2) capture. Even though the relative amount of calcite increased sixfold in the AEW and the relative amount of mineral phase reached 37.3 wt% using Ca-rich FA for 86 days, chemical sequestration did not accomplish simultaneous precipitation and sequestration of several heavy metals.

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Year:  2011        PMID: 21246259     DOI: 10.1007/s10653-010-9370-2

Source DB:  PubMed          Journal:  Environ Geochem Health        ISSN: 0269-4042            Impact factor:   4.609


  12 in total

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5.  Relative solubility of cations in Class F fly ash.

Authors:  Ann G Kim; George Kazonich; Michael Dahlberg
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Authors:  Ji-Won Moon; Yul Roh; Lucas W Yeary; Robert J Lauf; Claudia J Rawn; Lonnie J Love; Tommy J Phelps
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8.  Corrections: mineralogy and surface properties of municipal solid waste ash.

Authors:  C S Kirby; J D Rimstidt
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9.  Removal of B, Cr, Mo, and Se from wastewater by incorporation into hydrocalumite and ettringite.

Authors:  Min Zhang; Eric J Reardon
Journal:  Environ Sci Technol       Date:  2003-07-01       Impact factor: 9.028

10.  Research for deployment: incorporating risk, regulation, and liability for carbon capture and sequestration.

Authors:  Elizabeth J Wilson; S Julio Friedmann; Melisa F Pollak
Journal:  Environ Sci Technol       Date:  2007-09-01       Impact factor: 9.028

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