Integral quality indicators of waste concrete for reuse

Introduction. Waste concrete is one of the main heavy construction waste having good recycling prospects with regard to rational nature management related to reducing the consumption of natural resources. However, the widespread introduction of waste concrete is hindered on the one hand by the var...

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Main Author: Arkady M. Ayzenshtadt
Format: Article
Language:English
Published: OOO "CNT «NanoStroitelstvo» 2021-10-01
Series:Нанотехнологии в строительстве
Subjects:
Online Access:http://nanobuild.ru/en_EN/journal/Nanobuild-5-2021/276-281.pdf
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author Arkady M. Ayzenshtadt
author_facet Arkady M. Ayzenshtadt
author_sort Arkady M. Ayzenshtadt
collection DOAJ
description Introduction. Waste concrete is one of the main heavy construction waste having good recycling prospects with regard to rational nature management related to reducing the consumption of natural resources. However, the widespread introduction of waste concrete is hindered on the one hand by the variety of compositions and structures of recycled scrap, and on the other hand by the lack of quantitative criteria to choose the most rational area of its use (a binder component, coarse and fine aggregate, finely dispersed filler, etc.). Materials and methods. Case studies of experimental powders obtained by mechanical grinding from the concrete scrap of internal wall panels and floor slabs (heavy concrete) and external wall panels (light concrete) of a five-storey residential panel house built in 1979 in the Obozersky village, Arkhangelsk region, demonstrated the possibility of choosing the optimal secondary use of waste concrete fractions featuring residual compressive strength. The indicators of residual strength, grindability and contraction of mineral powders were used as optimization criteria. Results and discussions. The applicability of the mathematical model for calculating the raw material grindability index is shown. A criterion for grinding equipment selection is proposed to obtain powders with an extended active surface. Conclusions. Powders obtained from the fraction of waste light concrete featuring low strength properties and grindability by mechanical grinding to a specific surface area comparable to that of Portland cement used and having a higher value of contraction can be rationally used as a composite binder component. Concrete scrap fractions featuring by higher grindability and strength properties are optimally suited for crushed aggregate preparation in the concrete composite production process.
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spelling doaj.art-66dbb258705a4532a78452d6c74ae0242022-12-21T19:59:57ZengOOO "CNT «NanoStroitelstvo»Нанотехнологии в строительстве2075-85452021-10-0113527628110.15828/2075-8545-2021-13-5-276-281Integral quality indicators of waste concrete for reuseArkady M. Ayzenshtadt0https://orcid.org/0000-0003-2904-2549Northern (Arctic) federal university named after M.V. Lomonosov, Arkhangelsk, RussiaIntroduction. Waste concrete is one of the main heavy construction waste having good recycling prospects with regard to rational nature management related to reducing the consumption of natural resources. However, the widespread introduction of waste concrete is hindered on the one hand by the variety of compositions and structures of recycled scrap, and on the other hand by the lack of quantitative criteria to choose the most rational area of its use (a binder component, coarse and fine aggregate, finely dispersed filler, etc.). Materials and methods. Case studies of experimental powders obtained by mechanical grinding from the concrete scrap of internal wall panels and floor slabs (heavy concrete) and external wall panels (light concrete) of a five-storey residential panel house built in 1979 in the Obozersky village, Arkhangelsk region, demonstrated the possibility of choosing the optimal secondary use of waste concrete fractions featuring residual compressive strength. The indicators of residual strength, grindability and contraction of mineral powders were used as optimization criteria. Results and discussions. The applicability of the mathematical model for calculating the raw material grindability index is shown. A criterion for grinding equipment selection is proposed to obtain powders with an extended active surface. Conclusions. Powders obtained from the fraction of waste light concrete featuring low strength properties and grindability by mechanical grinding to a specific surface area comparable to that of Portland cement used and having a higher value of contraction can be rationally used as a composite binder component. Concrete scrap fractions featuring by higher grindability and strength properties are optimally suited for crushed aggregate preparation in the concrete composite production process.http://nanobuild.ru/en_EN/journal/Nanobuild-5-2021/276-281.pdfconcrete scraprecycled concretegrindability criterioncomposite bindermineral powder contraction
spellingShingle Arkady M. Ayzenshtadt
Integral quality indicators of waste concrete for reuse
Нанотехнологии в строительстве
concrete scrap
recycled concrete
grindability criterion
composite binder
mineral powder contraction
title Integral quality indicators of waste concrete for reuse
title_full Integral quality indicators of waste concrete for reuse
title_fullStr Integral quality indicators of waste concrete for reuse
title_full_unstemmed Integral quality indicators of waste concrete for reuse
title_short Integral quality indicators of waste concrete for reuse
title_sort integral quality indicators of waste concrete for reuse
topic concrete scrap
recycled concrete
grindability criterion
composite binder
mineral powder contraction
url http://nanobuild.ru/en_EN/journal/Nanobuild-5-2021/276-281.pdf
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