SLAG-LIME BINDER FOR RADIATION-PROTECTIVE STRUCTURAL MATERIALS

FIELD: chemistry.SUBSTANCE: invention relates to compositions of slag-lime binding materials and can be used to produce structural materials used in ionising radiation conditions. The slag-lime binder for radiation-protective structural materials contains the following, wt %: ferroboron slag with sp...

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Hauptverfasser: TARASOV ROMAN VIKTOROVICH, KOROLEV EVGENIJ VALER'EVICH, SOMKIN ANDREJ SERGEEVICH
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creator TARASOV ROMAN VIKTOROVICH
KOROLEV EVGENIJ VALER'EVICH
SOMKIN ANDREJ SERGEEVICH
description FIELD: chemistry.SUBSTANCE: invention relates to compositions of slag-lime binding materials and can be used to produce structural materials used in ionising radiation conditions. The slag-lime binder for radiation-protective structural materials contains the following, wt %: ferroboron slag with specific surface area of 300-400 m/kg 69.93-70.18, sodium hydroxide 1.75-2.10, 0.2% iron (III) hydroxide sol stabilised with gelatine in amount of 0.5% of its weight 27.97-28.07.EFFECT: high efficiency of protection.2 tbl Изобретение относится к составам шлакощелочных вяжущих и может быть использовано для изготовления строительных материалов, эксплуатирующихся в условиях воздействия ионизирующих излучений. Шлакощелочное вяжущее для радиационно-защитных строительных материалов содержит, мас.%: ферроборовый шлак с удельной поверхностью 300-400 м/кг 69,93-70,18, гидроксид натрия 1,75-2,10, 0,2%-ный золь гидроксида железа (III), стабилизированный желатином в количестве 0,5% от его массы, 27,97-28,07. Технический результат - повышение эффективности защиты. 2 табл.
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The slag-lime binder for radiation-protective structural materials contains the following, wt %: ferroboron slag with specific surface area of 300-400 m/kg 69.93-70.18, sodium hydroxide 1.75-2.10, 0.2% iron (III) hydroxide sol stabilised with gelatine in amount of 0.5% of its weight 27.97-28.07.EFFECT: high efficiency of protection.2 tbl Изобретение относится к составам шлакощелочных вяжущих и может быть использовано для изготовления строительных материалов, эксплуатирующихся в условиях воздействия ионизирующих излучений. Шлакощелочное вяжущее для радиационно-защитных строительных материалов содержит, мас.%: ферроборовый шлак с удельной поверхностью 300-400 м/кг 69,93-70,18, гидроксид натрия 1,75-2,10, 0,2%-ный золь гидроксида железа (III), стабилизированный желатином в количестве 0,5% от его массы, 27,97-28,07. 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The slag-lime binder for radiation-protective structural materials contains the following, wt %: ferroboron slag with specific surface area of 300-400 m/kg 69.93-70.18, sodium hydroxide 1.75-2.10, 0.2% iron (III) hydroxide sol stabilised with gelatine in amount of 0.5% of its weight 27.97-28.07.EFFECT: high efficiency of protection.2 tbl Изобретение относится к составам шлакощелочных вяжущих и может быть использовано для изготовления строительных материалов, эксплуатирующихся в условиях воздействия ионизирующих излучений. Шлакощелочное вяжущее для радиационно-защитных строительных материалов содержит, мас.%: ферроборовый шлак с удельной поверхностью 300-400 м/кг 69,93-70,18, гидроксид натрия 1,75-2,10, 0,2%-ный золь гидроксида железа (III), стабилизированный желатином в количестве 0,5% от его массы, 27,97-28,07. 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The slag-lime binder for radiation-protective structural materials contains the following, wt %: ferroboron slag with specific surface area of 300-400 m/kg 69.93-70.18, sodium hydroxide 1.75-2.10, 0.2% iron (III) hydroxide sol stabilised with gelatine in amount of 0.5% of its weight 27.97-28.07.EFFECT: high efficiency of protection.2 tbl Изобретение относится к составам шлакощелочных вяжущих и может быть использовано для изготовления строительных материалов, эксплуатирующихся в условиях воздействия ионизирующих излучений. Шлакощелочное вяжущее для радиационно-защитных строительных материалов содержит, мас.%: ферроборовый шлак с удельной поверхностью 300-400 м/кг 69,93-70,18, гидроксид натрия 1,75-2,10, 0,2%-ный золь гидроксида железа (III), стабилизированный желатином в количестве 0,5% от его массы, 27,97-28,07. Технический результат - повышение эффективности защиты. 2 табл.</abstract><oa>free_for_read</oa></addata></record>
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subjects ARTIFICIAL STONE
CEMENTS
CERAMICS
CHEMISTRY
CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION ORPROCESSING OF GOODS
COMPOSITIONS THEREOF, e.g. MORTARS, CONCRETE OR LIKE BUILDINGMATERIALS
CONCRETE
DECONTAMINATION ARRANGEMENTS THEREFOR
GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS
LIME, MAGNESIA
METALLURGY
NUCLEAR ENGINEERING
NUCLEAR PHYSICS
PHYSICS
PROTECTION AGAINST X-RADIATION, GAMMA RADIATION, CORPUSCULARRADIATION OR PARTICLE BOMBARDMENT
REFRACTORIES
SLAG
TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINSTCLIMATE CHANGE
TREATING RADIOACTIVELY CONTAMINATED MATERIAL
TREATMENT OF NATURAL STONE
title SLAG-LIME BINDER FOR RADIATION-PROTECTIVE STRUCTURAL MATERIALS
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