Titel:
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Characterization of the leaching behaviour of cement mortars to assess long term environmental behavour during their service life and their recycling stage
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Auteur(s):
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Gepubliceerd door:
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Publicatie datum:
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ECN
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1-7-1998
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ECN publicatienummer:
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Publicatie type:
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ECN-RX--98-026
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Artikel wetenschap tijdschrift
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Aantal pagina's:
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22
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Gepubliceerd in: Submitted to the Journal of Cement and Concrete Research (), , , Vol., p.-.
Samenvatting:
The environmental properties of the cement mortars m their service lifeas well as in the secondary life (construction debris) is raised as an issue
of concern in relation to die use of alternative fuels and raw materials m
the production of cement clinker. A comparison of the leaching behaviour of
cement mortars from natural materials and such special cements has shown that
the leachability of cement mortars from special cements does not exceed the
leachability from traditional cements. For crucial constituents, such as Cr,
even a lower leachability is observed in spite of a higher total composition.
This illustrates that an evaluation of cement mortars based on total
composition is not a valid means of judging environmental impact. The
emphasis in environmental evaluation has been on the service life of
cement-based products. This stage of life of a cement-product proves to be of
very limited concern. The emphasis should be focused m the 'second life' of
cement mortars. If construction debris is reused as aggregate m cement
mortar, again leachability is of limited concern as the chemical environment
dictated by the cement mortar ensures a low leachability. When construction
debris are reused as aggregate, e.g. in road stabilization, environmental
issues prove to be relevant as oxy-anionic species (e.g chromate, sulphate,
molybdate, vanadate) may exceed critical limits. With the possible exception
of Cd, metals such as Pb and Zn are unlikely to become critical
environmentally, even in the 'second life' of cement mortars. New
environmental criteria for cement products should be developed based on
leachability. 27 refs.
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