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Title: | Shrinkage character in the process of semi-coke formation |
Authors: | Guojie Zhang" Aiting Su Yongfa Zhang Peng Wang |
Authors: | Guojie Zhang" Aiting Su Yongfa Zhang Peng Wang |
Keywords: | shrinkage character;semi-coke;fissure |
Issue Date: | 2015 |
Publisher: | Science Faculty of Chiang Mai University |
Citation: | Chiang Mai Journal of Science 42, 2 (April 2015), 401 - 406 |
Abstract: | A mini coke oven has been used to study the shrinkage crack character in the process of semi-coke formation. The results show that the section of coke cake has been clearly layered, from the inner to outward, divided into loose honeycomb semi-coke layer, small honeycomb semi-coke layer, compact semi-coke layer, cracks layer. The colour of loose honeycomb semi-coke layer and small honeycomb semi-coke layer is dark black, and its porosity about 44.8%. The colour of the compact semi-coke layer is bright black, and its porosity about 34.0%. The colour of cracks layer is silver gray, and its porosity about 46.0%. The pyrolytic plastic layer area of static and dynamics state difference, the static state pyrolytic plastic layer area is an obturation flat elliptic area, wrapped in the middle of semi-coke; the dynamic state pyrolytic plastic layer area is a placket oblate gasbag, wrapped by semi-coke from the outside. The shrinkage rate of semi-coke increases with temperature increase, the relationship between shrinkage and temperature can be described as Y=-7 X2×10-5+0.14X-56.26 (600℃-850℃). The thickness of semi-coke decreases, with increasing temperature, crack increases and clump decreases. Add proper humidity to coal, the crack of semi-coke decreases and the clump increases. |
URI: | http://it.science.cmu.ac.th/ejournal/dl.php?journal_id=5761 http://cmuir.cmu.ac.th/jspui/handle/6653943832/66803 |
ISSN: | 0125-2526 |
Appears in Collections: | CMUL: Journal Articles |
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