2020
DOI: 10.1088/1742-6596/1683/5/052012
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Physical properties of ceramic material obtained using the carbon residue of municipal solid waste pyrolysis

Abstract: The main tendency to solve the problem of municipal solid waste in the Russian Federation is the transition from landfill to industrial processing. A promising option is the pyrolysis of solid carbon-containing waste, which allows not only to significantly reduce the amount of waste, but also to obtain alternative types of energy. The use of products of the pyrolysis processing of municipal solid waste in the technology for the production of ceramic materials is proposed. A new ce… Show more

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“…Resources Application cement municipal solid waste incineration fly ash [8] produce eco-friendly supplementary cementitious materials in the manufacture of eco-cements textile waste [9] produce lightweight concrete partition seashell waste [10] use seashell waste as fine aggregate or cement substitute clay brick waste [11] replace cement with brick waste powder to produce sustainable construction materials glass waste [12] replace cement with ground glass waste eggshell ash and strap plastic waste [13] replace cement with eggshell ash and reinforced with waste plastic fiber asphalt fish scale powder [14] use fish scale powder to improve asphalt performance waste wood [15] use bio-oil extracted from waste wood to rejuvenate asphalt binder waste steel shavings and waste ferrites [16] use waste steel shavings and ferrites to heal pavement crack by induction heating plastic waste [17] improve rutting and fatigue performance asphalt dry battery waste powder [18] improve high-temperature characteristics of asphalt swine manure [19] ameliorate low-temperature characteristics of asphalt others electronic wastes (polyethylene) [20] produce a construction part with electromagneticinterference-shielding characteristics city sewage sludge [21] produce clay bricks inexpensively residue of municipal solid waste pyrolysis [22] manufacture ceramic material It is well known that asphalt materials are widely used in road engineering construction because of their various advantages. Asphalt is extracted from crude oil, which is a non-renewable resource.…”
Section: Methodsmentioning
confidence: 99%
“…Resources Application cement municipal solid waste incineration fly ash [8] produce eco-friendly supplementary cementitious materials in the manufacture of eco-cements textile waste [9] produce lightweight concrete partition seashell waste [10] use seashell waste as fine aggregate or cement substitute clay brick waste [11] replace cement with brick waste powder to produce sustainable construction materials glass waste [12] replace cement with ground glass waste eggshell ash and strap plastic waste [13] replace cement with eggshell ash and reinforced with waste plastic fiber asphalt fish scale powder [14] use fish scale powder to improve asphalt performance waste wood [15] use bio-oil extracted from waste wood to rejuvenate asphalt binder waste steel shavings and waste ferrites [16] use waste steel shavings and ferrites to heal pavement crack by induction heating plastic waste [17] improve rutting and fatigue performance asphalt dry battery waste powder [18] improve high-temperature characteristics of asphalt swine manure [19] ameliorate low-temperature characteristics of asphalt others electronic wastes (polyethylene) [20] produce a construction part with electromagneticinterference-shielding characteristics city sewage sludge [21] produce clay bricks inexpensively residue of municipal solid waste pyrolysis [22] manufacture ceramic material It is well known that asphalt materials are widely used in road engineering construction because of their various advantages. Asphalt is extracted from crude oil, which is a non-renewable resource.…”
Section: Methodsmentioning
confidence: 99%