Entrained-flow oxy-gasification of pulverized coal in CO2-H2O-O2 environment : научное издание

Описание

Тип публикации: статья из журнала

Год издания: 2023

Идентификатор DOI: 10.1007/s11356-023-30401-2

Ключевые слова: Oxy-fuel gasification, pulverized coal, syngas, Carbon capture storage, IGCC, cfd, environment, general, environmental chemistry, ecotoxicology, environmental health, Atmospheric Protection/Air Quality Control/Air Pollution, Waste Water Technology / Water Pollution Control / Water Management / Aquatic Pollution

Аннотация: Combustion or gasification of coal in nitrogen-free environment (CO2-H2O-O2) is a promising technology contributing to reduce the carbon footprint in the energy industry. Accordingly, this will make it quite easy to capture practically pure carbon dioxide for subsequent storage. The study presents numerical investigation of the entПоказать полностьюrained-flow oxy-gasification processes of pulverized coal in CO2-H2O-O2 environment. A numerical methodology for describing oxy-fuel gasification processes has been developed and tested. A study of the influence of the absorption of gas coefficient on the calculation results was carried out. Studies have been conducted on the effect of the excess oxygen ratio, the oxygen concentration in the blast, and the amount of moisture on the physicochemical processes and the composition of the syngas for the gasifier under consideration. It is shown that increasing the oxygen concentration in the blast allows stabilizing the ignition and combustion of pulverized coal at low excess oxygen ratio. The dependence of the chemical efficiency on the main regime parameters is determined. The results showed that a decrease in the excess oxygen ratio from 0.43 to 0.33 leads to an increase in combustible losses from 0.15 to 45% for this gasifier. In the mode with high fuel conversion in the gasifier, the produced syngas with a caloric value of 9.26 MJ/m3 comprised of CO, 40.3; H2, 32.4; and CO2, 25.5 (vol. % dry).

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Издание

Журнал: Environmental Science and Pollution Research

Выпуск журнала: Т.30, 55

Номера страниц: 117435-117447

ISSN журнала: 09441344

Издатель: Ecomed Verlagsgesellschaft mbH

Персоны

  • Kuznetsov Viktor Alexandrovich (Siberian Federal University)
  • Bozheeva Daria Mikhailovna (Siberian Federal University)
  • Minakov Andrey Viktorovich (Siberian Federal University)

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