AI Article Synopsis

  • The research explores optimizing soybean biofuel blends for urban medium-duty commercial vehicles, focusing on production, economics, and engine performance.
  • An AI-driven analysis predicts combustion and emission characteristics, highlighting a decrease in brake thermal efficiency (BTE) and an increase in brake-specific fuel consumption (BSFC) when comparing diesel to biofuel blends.
  • The study finds that biofuel-diesel blends significantly reduce maximum cylinder pressure and emissions, improving engine performance and lowering exhaust pollutants.

Article Abstract

This article presents the outcomes of a research study focused on optimizing the performance of soybean biofuel blends derived from soybean seeds specifically for urban medium-duty commercial vehicles. The study took into consideration elements such as production capacity, economics and assumed engine characteristics. For the purpose of predicting performance, combustion and emission characteristics, an artificial intelligence approach that has been trained using experimental data is used. At full load, the brake thermal efficiency (BTE) dropped as engine speed increased for biofuel and diesel fuel mixes, but brake-specific fuel consumption (BSFC) increased. The BSFC increased by 11.9% when diesel compared to using biofuel with diesel blends. The mixes cut both maximum cylinder pressure and emissions. The biofuel-diesel fuel proved more successful, with maximum reduction of 9.8% and 22.2 at rpm, respectively. The biofuel and diesel blend significantly improved carbon dioxide ( ) and smoke emissions. The biofuel blends offer significant advantages by decreeing exhaust pollutants and enhancing engine performance.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11133166PMC
http://dx.doi.org/10.1007/s11356-024-33210-3DOI Listing

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