TY - JOUR
T1 - Kinetics investigation on the combustion of waste capsicum stalks in Western China using thermogravimetric analysis
AU - Wang, Xuebin
AU - Si, Jipeng
AU - Tan, Houzhang
AU - Niu, Yanqing
AU - Xu, Chao
AU - Xu, Tongmo
PY - 2012/7
Y1 - 2012/7
N2 - The combustion kinetics of waste capsicum stalk (WCS) in Western China is investigated through thermogravimetric analysis compared with sawdust and coal, and co-combustion of WCS with coal is also investigated. Results show that the ignition characteristics of WCS is better than that of sawdust and coal, and the activation energy E of WCS-volatile combustion and WCS-char combustion are 78.55 kJ mol -1 and 44.59 kJ mol -1. However, integrating the characteristics of ignition and burnout, the combustion characteristic factor (S N) of WCS is lower than that of sawdust. With the increasing in the heating rate, the ignition of WCS is delayed. Oxygen concentration CO 2 affects E and k 0 of volatile combustion largely under rich-oxygen condition, when CO 2 increases from 0.2 to 0.8, E has increased threefold and k 0 also intensively increases from 10 6 to 10 13-10 22. Oppositely, effect of CO 2 on the E and k 0 of char combustion is little, and there is an exponential relationship S N = 7. 1 2 8 × 10 -9× exp (CO 2/0. 3 6 8) - 6. 1 2 6 × 0 -9 between S N and CO 2 . For the tests of co-combustion, all the experimental and weighted-average curves coincide well, and there is no remarkable synergistic effect. With the increase of mixing ratio that WCS added, E and k 0 of volatile combustion increase, but correspondingly E and k 0 of char combustion decrease.
AB - The combustion kinetics of waste capsicum stalk (WCS) in Western China is investigated through thermogravimetric analysis compared with sawdust and coal, and co-combustion of WCS with coal is also investigated. Results show that the ignition characteristics of WCS is better than that of sawdust and coal, and the activation energy E of WCS-volatile combustion and WCS-char combustion are 78.55 kJ mol -1 and 44.59 kJ mol -1. However, integrating the characteristics of ignition and burnout, the combustion characteristic factor (S N) of WCS is lower than that of sawdust. With the increasing in the heating rate, the ignition of WCS is delayed. Oxygen concentration CO 2 affects E and k 0 of volatile combustion largely under rich-oxygen condition, when CO 2 increases from 0.2 to 0.8, E has increased threefold and k 0 also intensively increases from 10 6 to 10 13-10 22. Oppositely, effect of CO 2 on the E and k 0 of char combustion is little, and there is an exponential relationship S N = 7. 1 2 8 × 10 -9× exp (CO 2/0. 3 6 8) - 6. 1 2 6 × 0 -9 between S N and CO 2 . For the tests of co-combustion, all the experimental and weighted-average curves coincide well, and there is no remarkable synergistic effect. With the increase of mixing ratio that WCS added, E and k 0 of volatile combustion increase, but correspondingly E and k 0 of char combustion decrease.
KW - Biomass
KW - Capsicum stalk
KW - Co-combustion
KW - Thermogravimetric
UR - https://www.scopus.com/pages/publications/84862153355
U2 - 10.1007/s10973-011-1556-z
DO - 10.1007/s10973-011-1556-z
M3 - 文章
AN - SCOPUS:84862153355
SN - 1388-6150
VL - 109
SP - 403
EP - 412
JO - Journal of Thermal Analysis and Calorimetry
JF - Journal of Thermal Analysis and Calorimetry
IS - 1
ER -