Literature DB >> 11077164

Short-term natural weathering of MSWI bottom ash.

J M Chimenos1, A I Fernández, R Nadal, F Espiell.   

Abstract

The release of heavy metals from MSWI bottom ash has been the key concern in the management of this material. The leaching distribution values obtained from 100 freshly quenched bottom ash samples, according to the German DIN 38414-S4 procedure test, showed the release of lead, zinc and copper to be the main hazards associated with bottom ash utilisation as a secondary building material. Currently, natural weathering of MSWI bottom ash, for an estimated period of 1-3 months, is the most economic treatment available to ensure the eventual utilisation of this material. The leaching of natural weathered bottom ash in the short-term (up to 9 months) was studied. The most significant changes in the bottom ash were found to occur in the first 90 days. At pH values greater than 12, lead, zinc and copper were the main heavy metals to be released from the MSWI freshly quenched bottom ash samples studied. Natural weathering for a period of about 90 days reduced the leaching of heavy metals, stabilising the bottom ash pH to minimise the solubility of metal hydroxides, and enabled the residue to be used as secondary building material. The profile of the pH neutralisation curve is similar to that described by carbonates, which would suggest that the reaction is controlled by CO(2). The formation of insoluble oxides as well as carbonates control the immobilisation of certain heavy metals, e.g. lead and zinc. The leaching of aluminium increases during this short natural weathering stage due to elemental metal oxidation. Aluminium solubility is controlled by the precipitation of gibbsite or other aluminium-sulphate neoformations. The latter may contribute to the immobilisation of heavy metals.

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Year:  2000        PMID: 11077164     DOI: 10.1016/s0304-3894(00)00270-3

Source DB:  PubMed          Journal:  J Hazard Mater        ISSN: 0304-3894            Impact factor:   10.588


  1 in total

1.  Aging of solidified/stabilized electrolytic manganese solid waste with accelerated carbonation and aging inhibition.

Authors:  Bing Du; Changbo Zhou; Zhigang Dan; Zhiyuan Zhao; Xianjia Peng; Jianguo Liu; Ning Duan
Journal:  Environ Sci Pollut Res Int       Date:  2016-09-19       Impact factor: 4.223

  1 in total

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