Effects of Hydrothermal Modification on Sulfur Release of Low-Quality Coals During Thermal Transformation ProcessSource: Journal of Energy Resources Technology:;2018:;volume 140:;issue 007::page 72201DOI: 10.1115/1.4039268Publisher: The American Society of Mechanical Engineers (ASME)
Abstract: In this paper, the effects of hydrothermal modification on sulfur-containing pollutants, such as sulfur dioxide (SO2) and carbonyl sulfide (COS), during coal pyrolysis and combustion, have been investigated. Three typical Chinese low-quality coals, Zhundong, Yimin, and Zhaotong coal (ZT), have been treated by hydrothermal modification at final modification temperatures of 200 °C, 250 °C, and 300 °C. Coal pyrolysis and combustion experiments using raw coal and modified coals were performed using a tube furnace. Results showed that SO2 and COS emission were suppressed after hydrothermal modification in the pyrolysis process. Lower emission of both SO2 and COS were also achieved when final hydrothermal modification was increased, this was attributed to the loss of aliphatic sulfur, e.g., sulfoxide, sulfone, and thiother, during the modification process. For ZT, hydrothermal modification also caused a delay in the release of sulfur-containing gases. In combustion experiments, hydrothermal modification reduced the SO2 emission for Yimin coal, but for ZT, the SO2 release amount almost doubled, and for Zhundong coal (ZD), it also increased, after hydrothermal modification. Hydrothermal modification also caused a delay in peak SO2 emission during the combustion of ZT; this is attributed to conversion of sulfur containing structures to stable aromatic compounds through hydrothermal modification.
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contributor author | Li, Qian | |
contributor author | Wang, Zhihua | |
contributor author | Lin, Zhenmin | |
contributor author | He, Yong | |
contributor author | Zhang, Kang | |
contributor author | Kumar, Sunel | |
contributor author | Cen, Kefa | |
date accessioned | 2019-02-28T10:55:47Z | |
date available | 2019-02-28T10:55:47Z | |
date copyright | 2/27/2018 12:00:00 AM | |
date issued | 2018 | |
identifier issn | 0195-0738 | |
identifier other | jert_140_07_072201.pdf | |
identifier uri | http://yetl.yabesh.ir/yetl1/handle/yetl/4250895 | |
description abstract | In this paper, the effects of hydrothermal modification on sulfur-containing pollutants, such as sulfur dioxide (SO2) and carbonyl sulfide (COS), during coal pyrolysis and combustion, have been investigated. Three typical Chinese low-quality coals, Zhundong, Yimin, and Zhaotong coal (ZT), have been treated by hydrothermal modification at final modification temperatures of 200 °C, 250 °C, and 300 °C. Coal pyrolysis and combustion experiments using raw coal and modified coals were performed using a tube furnace. Results showed that SO2 and COS emission were suppressed after hydrothermal modification in the pyrolysis process. Lower emission of both SO2 and COS were also achieved when final hydrothermal modification was increased, this was attributed to the loss of aliphatic sulfur, e.g., sulfoxide, sulfone, and thiother, during the modification process. For ZT, hydrothermal modification also caused a delay in the release of sulfur-containing gases. In combustion experiments, hydrothermal modification reduced the SO2 emission for Yimin coal, but for ZT, the SO2 release amount almost doubled, and for Zhundong coal (ZD), it also increased, after hydrothermal modification. Hydrothermal modification also caused a delay in peak SO2 emission during the combustion of ZT; this is attributed to conversion of sulfur containing structures to stable aromatic compounds through hydrothermal modification. | |
publisher | The American Society of Mechanical Engineers (ASME) | |
title | Effects of Hydrothermal Modification on Sulfur Release of Low-Quality Coals During Thermal Transformation Process | |
type | Journal Paper | |
journal volume | 140 | |
journal issue | 7 | |
journal title | Journal of Energy Resources Technology | |
identifier doi | 10.1115/1.4039268 | |
journal fristpage | 72201 | |
journal lastpage | 072201-7 | |
tree | Journal of Energy Resources Technology:;2018:;volume 140:;issue 007 | |
contenttype | Fulltext |