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Mechanism and prevention of pollutants in energy utilization

Date:2018-08-28Source:

Main research content:

1、Formation mechanism and efficient removal of conventional pollutants (SO2, NOx, dust, etc.)

2、Formation and control of trace elements and respirable particulate matter during combustion and conversion

3、Greenhouse gas CO2 control

4、Formation and inhibition of organic pollutants in waste incineration

5、Real-time monitoring and optimization control of combustion pollutant emissions

6、Comprehensive prevention and control of pollutants in thermal energy conversion and utilization

This direction develops basic and technological development studies on the mechanism and prevention of pollutant generation in energy use. In the field of flue gas desulfurization, the research focuses on low-temperature flue gas desulfurization technology, supported metal oxide flue gas desulfurization and denitrification and regeneration technology, and continues to study advanced in-furnace desulfurization technology; In the field of low NOx combustion technology, the research and application of advanced air grading and fuel grade denitrification technology are emphasized. To carry out basic research on the generation, nucleation and growth mechanism and control of inhalable particulate matter during combustion and transformation, and to develop and popularize the technology of suppression and removal of fine particulate matter after combustion and combustion; In-depth study of the reaction mechanism and enrichment rules of typical trace elements in the combustion process, explore its control methods; study the formation mechanism and control strategy of organic pollutants such as PAH, soot and dioxins in the combustion process of fuel and waste; Real-time monitoring and optimization control methods for combustion pollutant emissions and comprehensive prevention and control of flue gas desulfurization, denitrification and dust removal pollutants.

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