A Study of State Parameters for Road Construction of MSWI Bottom Ash

Author:

Nguyen T. K. V.,Doan T. T. H.,Cao T. H.,Pham H. S.

Abstract

The current work tries to valorize the bottom ash from Municipal Solid Waste Incineration (MSWI). The bottom ash from waste incineration consists of atypical granular materials. They are industrial by-products resulting from the incineration of domestic waste and the way of the considered valorization is road gravel. In this paper, we present the state parameters of bottom ash taken from a recycling company in the North of France. These features can help us evaluate our bottom ash according to the technical guide of realization of embankments and subgrades.

Publisher

Engineering, Technology & Applied Science Research

Reference19 articles.

1. C.-L. Lin, M.-C. Weng, and C.-H. Chang, "Effect of incinerator bottom-ash composition on the mechanical behavior of backfill material," Journal of Environmental Management, vol. 113, pp. 377–382, Dec. 2012.

2. F. Becquart, "Comportement mécanique au triaxial d’un mâchefer d’incinération d’ordures ménagères," European Journal of Environmental and Civil Engineering, vol. 12, no. 6, pp. 673–686, Jun. 2008.

3. N. H. Le, N. E. Abriak, C. Binetruy, M. Benzerzour, and S. Chaki, "The study of behavior of bottom ash under homogeneous stresses. Determination of parameters for Nova behavior models," in Euromediterranean Symposium on Advances in Geomaterials and Structures, Djerba, Tunisia, 2010, pp. 653–660.

4. L. Ngoc, N.-E. Abriak, C. Binetruy, M. Benzerzour, I. Shahrour, and I. Shahrour, "Finite element modeling of the mechanical behavior of municipal solid waste incineration bottom ash with the Mohr-Coulomb model," International Journal of Environmental, Chemical, Ecological, Geological and Geophysical Engineering, vol. 9, no. 12, pp. 1315–1321, Dec. 2015.

5. V. T. Phan and T. T. H. Nguyen, "Elastic and Deformation Characteristics of MSWI Bottom Ash for Road Construction," Engineering, Technology & Applied Science Research, vol. 10, no. 6, pp. 6389–6392, Dec. 2020.

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