Title of article
Modeling the degradation of Portland cement pastes by biogenic organic acids
Author/Authors
Laurent De Windt، نويسنده , , Philippe Devillers، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
10
From page
1165
To page
1174
Abstract
Reactive transport models can be used to assess the long-term performance of cement-based materials subjected to biodegradation. A bioleaching test (with Aspergillus niger fungi) applied to ordinary Portland cement pastes during 15 months is modeled with HYTEC. Modeling indicates that the biogenic organic acids (acetic, butyric, lactic and oxalic) strongly accelerate hydrate dissolution by acidic hydrolysis whilst their complexation of aluminum has an effect on the secondary gel stability only. The deepest degradation front corresponds to portlandite dissolution and decalcification of calcium silicate hydrates. A complex pattern of sulfate phases dissolution and precipitation takes place in an intermediate zone. The outermost degraded zone consists of alumina and silica gels. The modeling accurateness of calcium leaching, pH evolution and degradation thickness is consistently enhanced whilst considering increase of diffusivity in the degraded zones. Precipitation of calcium oxalate is predicted by modeling but was hindered in the bioleaching reactor.
Keywords
Biodegradation , Cement paste (D) , Durability (C) , Modeling (E) , Organic acids (D)
Journal title
CEMENT AND CONCRETE RESEARCH
Serial Year
2010
Journal title
CEMENT AND CONCRETE RESEARCH
Record number
1216825
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