Effects of Biomass Feedstocks and Gasification Conditions on the Physiochemical Properties of Char

Влияние видов биомассы и условий газификации на физико-химические свойства угля
Kezhen Qian, Ajay Kumar, Krushna N. Patil, Danielle Bellmer, Donghai Wang, Wenqiao Yuan, Raymond L. Huhnke
2013-08-06

BET surface areaBiomass gasificationChar physicochemical propertiesEquivalence ratioFourier-transform infrared spectroscopy
Char is a low-value byproduct of biomass gasification and pyrolysis with many potential applications, such as soil amendment and the synthesis of activated carbon and carbon-based catalysts. Considering these high-value applications, char could provide economic benefits to a biorefinery utilizing gasification or pyrolysis technologies. However, the properties of char depend heavily on biomass feedstock, gasifier design and operating conditions. This paper reports the effects of biomass type (switchgrass, sorghum straw and red cedar) and equivalence ratio (0.20, 0.25 and 0.28), i.e., the ratio of air supply relative to the air that is required for stoichiometric combustion of biomass, on the physiochemical properties of char derived from gasification. Results show that the Brunauer-Emmett-Teller (BET) surface areas of most of the char were 1–10 m2/g and increased as the equivalence ratio increased. Char moisture and fixed carbon contents decreased while ash content increased as equivalence ratio increased. The corresponding Fourier Transform Infrared spectra showed that the surface functional groups of char differed between biomass types but remained similar with change in equivalence ratio.
1
Char physicochemical properties are strongly influenced by both biomass feedstock type and gasification equivalence ratio.
2
Fourier-transform infrared spectra showed that char surface functional groups differed among biomass types but remained largely unchanged across equivalence ratios.
3
Increasing equivalence ratio decreased char moisture and fixed-carbon contents while increasing ash content.
4
Most chars exhibited low Brunauer–Emmett–Teller surface areas of 1–10 m²/g, which increased as equivalence ratio increased.
5
The findings support tailoring gasification feedstocks and operating conditions to produce char for higher-value applications such as soil amendment and activated-carbon synthesis.

Char derived from gasification of switchgrass, sorghum straw, and red cedar

The effects of biomass feedstock type and gasification equivalence ratio on char physicochemical properties, including BET surface area, moisture, fixed carbon, ash content, and surface functional groups

Publication Details
Publication Date
2013-08-06
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Kezhen Qian
Ajay Kumar
Krushna N. Patil
Danielle Bellmer
Donghai Wang
Wenqiao Yuan
Raymond L. Huhnke
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%