Complete Parametric Study of Bagasse Pellets During High-Temperature Steam Gasification

Author:

Nguyen Hong Nam1,Tsubota Toshiki2

Affiliation:

1. Department of Energy, University of Science and Technology of Hanoi, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet, Cau Giay, Hanoi 100000, Vietnam

2. Department of Applied Chemistry, Kyushu Institute of Technology, 1-1 Sensuicho, Tobata Ward, Kitakyushu, 804-8550 Fukuoka, Japan

Abstract

Abstract A complete parametric study of bagasse pellets under high-temperature steam gasification in relevant industrial operating conditions was investigated. Regarding thermal behaviors, the maximum rate of weight loss (Rmax = 0.55%/°C) occurred at the temperature Tmax = 305 °C. The final pyrolysis temperature and heating rate were proportional to the mechanical strength, the bulk density, as well as the char yield and energy yield. However, the changes were not significant after 600 °C. Regarding steam gasification kinetics, an increase from 850 to 1000 °C and from 0.1 to 0.4 atm accelerated 10 times and two times the conversion rate of bagasse pellet char, respectively. Gasification kinetics of a pellet char produced at 2000 °Cmin−1 was 1.4 higher compared with a pellet char produced at 5 °C min−1. An empirical model that takes into account all the changes in the reactive surface could successfully predict the conversion of the bagasse pellet char during high-temperature steam gasification. Experimental results and the kinetic model proposed could be useful for the calculation of industrial or academic codes, necessary for the conception of new efficient gasifiers.

Funder

University of Science and Technology of Hanoi

Publisher

ASME International

Subject

Fluid Flow and Transfer Processes,General Engineering,Condensed Matter Physics,General Materials Science

Reference43 articles.

1. Global Sugar Cane Production 2016-2027 | Statista;Shahbandeh,2018

2. Multidisciplinary Approaches to Handling Wastes in Sugar Industries;Bhatnagar;Water. Air. Soil. Pollut.,2015

3. Rice Husk Gasification: From Industry to Laboratory;Nguyen;IOP Conf. Ser. Earth Environ. Sci.,2018

4. Gasification of Woodchip Particles: Experimental and Numerical Study of Char–H2O, Char–CO2, and Char–O2 Reactions;Van de steene;Chem. Eng. Sci.,2011

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