Water-induced molecular changes of hard coals and lignites

被引:7
|
作者
Pytlak, Anna [1 ]
Sujak, Agnieszka [2 ]
Szafranek-Nakonieczna, Anna [3 ]
Grzadziel, Jaroslaw [4 ]
Banach, Artur [3 ]
Goraj, Weronika [3 ]
Galazka, Anna [4 ]
Gruszecki, Wieslaw, I [5 ]
Stepniewska, Zofia [6 ]
机构
[1] Polish Acad Sci, Inst Agrophys, Doswiadczalna 4, PL-20280 Lublin, Poland
[2] Univ Life Sci Lublin, Dept Biophys, Akad 13, PL-20033 Lublin, Poland
[3] John Paul II Catholic Univ Lublin, Inst Biol Sci, Konstantynow 1 1, PL-20708 Lublin, Poland
[4] State Res Inst IUNG PIB, Dept Agr Microbiol, Inst Soil Sci & Plant Cultivation, Czartoryskich 8, PL-24100 Pulawy, Poland
[5] Maria Curie Sk Odowska Univ, Fac Math Phys & Informat, Inst Phys, Dept Biophys, MC Sklodowska Sq 1, PL-20031 Lublin, Poland
[6] John Paul II Catholic Univ Lublin, Dept Biochem & Environm Chem, Konstantynow 1 1, PL-20708 Lublin, Poland
关键词
Coal; Lignite; Biotransformation; FT-IR; Greenhouse gases; Autochthonic microbiota; METHANE OXIDATION; METHANOTROPHIC BACTERIA; ADSORPTION; MOISTURE; BIOGEOCHEMISTRY; COMMUNITY; CARBON; POLAND; VAPOR; MINE;
D O I
10.1016/j.coal.2020.103481
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Coal deposits comprise a huge proportion of carbon sequestered within the Earths crust. Many deposits are anthropogenically altered by mining operations. The changes in local hydrogeology include, first - water removal from the seam to enable excavations, second - restoration of natural water condition by cessation of water pumping. In each of these cases, there is a substantial change in the living conditions of microorganisms and coal sorption capacity towards gases. In the presented study, an attempt was made to connect results depicting structural changes (FT-IR), microbial community composition (NGS) and activity (GC) of four materials representing various stages of coalification upon hydratation. The issue is important as coal transformation often leads to generation of gases with high global warming potentials (CO2 and CH4). In all samples, hydratation led to coal dearomatization, decarboxylation and decompaction. The main gaseous product upon hydratation was carbon dioxide which was linked with both changes in coal sorption capacity upon hydratation and activity of the autochthonic microbiota. CO2 release was higher in lignites than in the hard coals. Within the experimental timeframes of 450 days, methane production was rather marginal. Furthermore, microbial communities composition suggests intrinsic turnover of that gas by the methanotrophic bacteria.
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页数:10
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