2016
DOI: 10.1002/mas.21504
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Application of mass spectrometry in the characterization of chemicals in coal‐derived liquids

Abstract: Coal-derived liquids (CDLs) are primarily generated from pyrolysis, carbonization, gasification, direct liquefaction, low-temperature extraction, thermal dissolution, and mild oxidation. CDLs are important feedstocks for producing value-added chemicals and clean liquid fuels as well as high performance carbon materials. Accordingly, the compositional characterization of chemicals in CDLs at the molecular level with advanced analytical techniques is significant for the efficient utilization of CDLs. Although re… Show more

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Cited by 40 publications
(22 citation statements)
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“…There are several limitations in this study. First, we may not be able to efficiently detect less volatile and strongly polar compounds due to the limitations of GC-MS [ 63 ], thus resulting in biased metabolic profiles of endothelial cells. Moreover, although we have identified the differential metabolites and significant metabolic pathways in the current study, metabolic perturbations may not yet be accurately associated with each dysfunctional phenotype in endothelial cells.…”
Section: Discussionmentioning
confidence: 99%
“…There are several limitations in this study. First, we may not be able to efficiently detect less volatile and strongly polar compounds due to the limitations of GC-MS [ 63 ], thus resulting in biased metabolic profiles of endothelial cells. Moreover, although we have identified the differential metabolites and significant metabolic pathways in the current study, metabolic perturbations may not yet be accurately associated with each dysfunctional phenotype in endothelial cells.…”
Section: Discussionmentioning
confidence: 99%
“…A series of publications from Shi’s group presented a comprehensive characterization of tow-temperature coal tars which has been reviewed in a Chinese publication . Multi techniques have been used to characterize coals, while ESI FT-ICR MS was the important and irreplaceable technique for molecular characterization …”
Section: Characterization Of Alternative Fuelsmentioning
confidence: 99%
“…Therefore, in‐depth understanding of the collision‐induced dissociation (CID) fragmentation pathways of ionized coal molecules is necessary for acquiring the structural details of coal molecules . Coal‐related model compounds (CRMCs) can avoid co‐elution during analysis and play an important role as substitutes for coal to understand the reactivity of coal under various conditions . Elucidation of the ionization mechanisms of CRMCs in the ion source and the corresponding fragmentation pathways at the collision cell can be further applied for explaining the structural information for products of coal conversions.…”
Section: Introductionmentioning
confidence: 99%