4.7 Article

Effect of torrefaction and ashless process on combustion and NOx emission behaviors of woody and herbaceous biomass

期刊

BIOMASS & BIOENERGY
卷 151, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.biombioe.2021.106133

关键词

Woody; Herbaceous; Torrefaction; Ashless process; Unburned carbon; NOx emission

资金

  1. Korea Institute of Energy Technol-ogy Evaluation and Planning (KETEP)
  2. Ministry of Trade, In-dustry & Energy (MOTIE) of the Republic of Korea [20173010092550]
  3. Korea Evaluation Institute of Industrial Technology (KEIT) [20173010092550] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

This study found that torrefaction treatment increases fuel ratio, while ashless treatment decreases the fuel ratio; torrefaction treatment increases the nitrogen content in the fuel, while ashless treatment reduces the nitrogen content; ashless treatment provides greater reactivity under fixed conditions.
Fuel pretreatment is a type of thermal treatment that enhances biomass properties. This study investigates the impact of different pretreatment methods (torrefaction and ashless processes) on combustion and emission characteristics for two biomass fuel types, i.e., woody (pitch pine sawdust (pine)) and herbaceous (Hibiscus cannabinus L. (kenaf)) biomasses. The fundamental properties and structural pore characteristics as well as unburned carbon (UBC) and NOx emissions following combustion tests, with both raw and pretreated biomasses, were investigated. The results show that torrefaction of both fuels improves the fuel ratio (FR), whereas the ashless process reduces the fuel ratio. For both fuels, torrefaction increased the fuel-N by approximately 30%- 50%, whereas the ashless process decreased fuel-N. In fixed conditions, the combustion index (S) indicates the ashless process provides greater reactivity for both fuels. Upon torrefaction, combustion index (S) is higher for the pine samples but lower for the kenaf samples. In entrained conditions, the unburned carbon for both samples decreased after the ashless process, but increased following torrefaction of kenaf, which corresponds to the fuel ratios. The ashless process resulted in lower NOx emissions, whereas torrefaction resulted in higher NOx emission tendency for kenaf. These results indicate that the ashless process is a preferable pretreatment method for reducing combustion and NOx emissions for woody and herbaceous biomasses.

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