4.5 Article

Improving Combustion Technology for Cooking Activities for Pollutant Emission Reduction and Carbon Neutrality

Journal

ATMOSPHERE
Volume 13, Issue 4, Pages -

Publisher

MDPI
DOI: 10.3390/atmos13040561

Keywords

stove technology; CO2 emissions; biomass combustion

Funding

  1. National Natural Science Foundation of China [51974311]

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Inefficient residential solid fuel combustion has negative impacts on the environment and health. The advanced biomass gasifier cooking stove presented in this study has the potential to save energy and reduce emissions. It effectively reduces CO2 and PM2.5 emissions while increasing thermal efficiency.
Inefficient residential solid fuel combustion contributes significantly to ambient and indoor air pollutants. It consumes large quantities of fuel and produces harmful effects on health. Improvements in residential biomass cooking stoves have great potential for energy savings and emission reduction. This study presents an advanced biomass gasifier cooking stove to overcome the disadvantages of high-pollutant emissions from widely used stoves in China. The most innovative features of the stove are (1) negative pressure produced by a jet fan located at the junction of the chimney, and (2) combustion and carbonization processes taking place in the same chamber. Compared with a traditional chimney stove, the advanced biomass gasifier cooking stove presented higher TE (thermal efficiency) and comprehensively lower pollutant emissions when raw crop straws, crop straw briquettes, and pellets were burned in it. Approximately 40% CO2 and 90% of PM2.5 (the aerodynamic diameter was less than or equal to 2.5 mu m) EFs (emission factors) were eliminated, and TE drastically tripled. Furthermore, biomass briquette/pellet was identified as more suitable than raw biomass as a fuel to be burned in the new stove, especially because the raw biomass displayed an increase in the EFs of As, Se, and Pb when burned in the new stove. The advancement in biomass cooking stove technology is a practical approach to reducing the emissions of CO2, PM2.5, and other hazardous pollutants.

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