Sulfur speciation in hard coal by means of a thermal decomposition method

被引:2
作者
Spiewok, W
Ciba, J
Trojanowska, J
机构
[1] Silesian Tech Univ, Dept Chem, Inst Inorgan Chem Technol & Electrochem, PL-44100 Gliwice, Poland
[2] Inst Ferrous Met, PL-44101 Gliwice, Poland
关键词
sulfur speciation; coal; thermal decomposition;
D O I
10.1007/s00216-001-1175-9
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
A new method for the determination of organic and pyritic sulfur in hard coal is presented. The method is based on controlled thermal decomposition of coal sample in oxygen-free and oxygen atmospheres. The results for sulfur liberated in an argon atmosphere at temperatures up to 773 K were close to organic sulfur contents (S-org), although owing to the definition of 'organic sulfur' the values were not directly comparable. S-org contents are calculated from the difference between total sulfur content in coal and contents of this element in the form of sulfides, sulfates and pyrites. Sulfur contents, found in the second stage of analysis, were close to pyritic sulfur contents. The difference between total sulfur content and the sum of sulfur values obtained in stages I and II corresponded to sulfur contents in those samples which were neither decomposed nor oxidized at temperatures up to 1173 K. Although not comparable with such conventional concepts for industrial purposes these data are attractive due to the ease and rapidity of the new method for the control of sulfur streams in industrial processes.
引用
收藏
页码:503 / 505
页数:3
相关论文
共 50 条
[31]   Determination of the Content of Sulfur of Coal by the Infrared Absorption Method with High Acccuracy [J].
Wang Hai-feng ;
Lu Hai ;
Li Jia ;
Sun Guo-hua ;
Wang Jun ;
Dai Xin-hua .
SPECTROSCOPY AND SPECTRAL ANALYSIS, 2014, 34 (02) :370-375
[32]   Thermal decomposition characteristics of mercury compounds in industrial sludge with high sulfur content [J].
Seung-Ki Back ;
Dhruba Bhatta ;
Seong-Heon Kim ;
Ha-Na Jang ;
Jeong-Hun Kim ;
Ki-Heon Kim ;
Young-Ran Kim ;
Yong-Chil Seo .
Journal of Material Cycles and Waste Management, 2018, 20 :622-631
[33]   Thermal decomposition characteristics of mercury compounds in industrial sludge with high sulfur content [J].
Back, Seung-Ki ;
Bhatta, Dhruba ;
Kim, Seong-Heon ;
Jang, Ha-Na ;
Kim, Jeong-Hun ;
Kim, Ki-Heon ;
Kim, Young-Ran ;
Seo, Yong-Chil .
JOURNAL OF MATERIAL CYCLES AND WASTE MANAGEMENT, 2018, 20 (01) :622-631
[34]   Predictive Modeling of Gas-Phase Ignition of Products of the Thermal Decomposition of Coal [J].
Yu.Vershinina K. ;
Glushkov D.O. ;
Strizhak P.A. .
Chemical and Petroleum Engineering, 2015, 51 (7-8) :559-564
[35]   Thermal decomposition of solid oxygenated complexes formed by coal oxidation at low temperatures [J].
Wang, HH ;
Dlugogorski, BZ ;
Kennedy, EM .
FUEL, 2002, 81 (15) :1913-1923
[36]   Method and means to estimate porosity distribution on the surface of polished section of coal [J].
A. S. Tanaino ;
B. B. Sivolap ;
E. A. Maksimovsky ;
O. A. Persidskaya .
Journal of Mining Science, 2016, 52 :1216-1223
[37]   Method and means to estimate porosity distribution on the surface of polished section of coal [J].
Tanaino, A. S. ;
Sivolap, B. B. ;
Maksimovsky, E. A. ;
Persidskaya, O. A. .
JOURNAL OF MINING SCIENCE, 2016, 52 (06) :1216-1223
[38]   Synthesis and Characterization of Chromium nanoparticles by thermal decomposition method [J].
Chaudhary, Jyoti ;
Tailor, Giriraj ;
Kumar, Deepak .
MATERIALS TODAY-PROCEEDINGS, 2020, 29 :321-326
[39]   Estimation of sulfur in coal samples by a rapid combustion-iodometric titration method [J].
Ashrit, Shrenivas S. ;
Chatti, Ravikrishna V. .
JOURNAL OF THE INDIAN CHEMICAL SOCIETY, 2013, 90 (11) :2071-2074
[40]   Simulation of hydrogen production from thermal decomposition of hydrogen sulfide in sulfur recovery units [J].
Adewale, Rasheed ;
Salem, Dalia J. ;
Berrouk, Abdallah S. ;
Dara, Satyadileep .
JOURNAL OF CLEANER PRODUCTION, 2016, 112 :4815-4825