Industrial waste in concrete mixtures for construction of underground structures and minerals extraction

Author:

Kongar-Syuryun Cheynesh,Tyulyaeva Yulia,Khairutdinov Albert M,Kowalik Tomasz

Abstract

Abstract An increase in population leads to an increase in the density of inhabitants in megacities and leads to an increase in consumed raw materials. The paper presents the description of the problems that arise for builders when building density increases and for producers of raw materials that arise when raw material is intensified. The analysis of the impact of construction and mining waste on the environment was carried out. Compositions of concrete mixes and methods of their preparation are offered to improve the quality and safety of life in megacities, as well as the safety of mining operations along with reducing the human impact on the ecosystem. Aspects of preparation of concrete mixes and questions of improvement of its quality by activation of components are revealed. The possibility of activation of construction and mining waste used as an inert aggregate in considered. The possibility of realization of non-waste production is considered.

Publisher

IOP Publishing

Subject

General Medicine

Reference27 articles.

1. Vibration reduction techniques for Rapid Impulse Compaction (RIC);Dobrzycki;Journal of Physics: Conf. Series,2020

2. The surface wave attenuation as the effect of vibratory compaction of building embankments;Herbut;IOP Conf. Ser.: Earth Environ. Sci.,2019

3. The ways of improvement of development system with stowing the worked space;Khairutdinov;Gornyi Zhurnal,2007

4. A case study assessing thermal activity at a significant geotourism locality of Ema coal tailing dumps in the mining landscape of Ostrava, Czech Republic;Marschalko;Quarterly Journal of Engineering Geology and Hydrogeology,2017

5. Проблемы транспорта закладочной смеси к месту укладки;Khairutdinov;Социально-экономические и экологические проблемы горной промышленности, строительства и энергетики: 13-я Международная конференция по проблемам горной промышленности, строительства и энергетики. B 2 m. / T.1: материалы конференции. - Тула: Изд-во ТулГУ,2017

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