Thermal decomposition of mixed calcium oxalate hydrates - kinetic deconvolution of complex heterogeneous processes

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dc.contributor.author Svoboda, Roman cze
dc.contributor.author Olmrová Zmrhalová, Zuzana cze
dc.contributor.author Galusek, Dusan cze
dc.contributor.author Brandová, Daniela cze
dc.contributor.author Chovanec, Jozef cze
dc.date.accessioned 2021-05-15T18:21:07Z
dc.date.available 2021-05-15T18:21:07Z
dc.date.issued 2020 eng
dc.identifier.issn 1463-9076 eng
dc.identifier.uri https://hdl.handle.net/10195/77080
dc.description.abstract Differential scanning calorimetry (DSC), thermogravimetry (TG) and in situ XRD were used to study dehydration and consequent decomposition reactions of mixed calcium oxalate hydrates. As the complex dehydration kinetics exhibited certain trends with respect to the applied heating rate, the modified multivariate kinetic analysis approach (based on averaged curve-by-curve optimizations) was employed to obtain a full kinetic description of the data. The Sestak-Berggren equation was used to model the two consequent dehydration reactions. Good agreement was found between the kinetic parameters calculated from the DSC and TG data - approximate values of activation energies were 68 and 81 kJ mol(-1) for the trihydrate -> monohydrate and monohydrate -> anhydride transformations, respectively. A procedural methodology was developed to predict both dehydration kinetics and hydrate content ratios. For the calcium oxalate decomposition the TG technique provided very precise single-step prediction with an activation energy of 180 kJ mol(-1). DSC on the other hand provided complex information on joint decomposition and carbon monoxide oxidation reactions - the proposed reaction mechanism includes completion of two reaction paths composed of consequent chemical reactions. A mechanistic view of the complex reaction path is discussed in terms of the diffusion barrier limiting the oxidation step. eng
dc.format p. 8889-8901 eng
dc.language.iso eng eng
dc.publisher Royal Society of Chemistry eng
dc.relation.ispartof Physical Chemistry Chemical Physics, volume 22, issue: 16 eng
dc.rights bez omezení cze
dc.subject urinary calculi eng
dc.subject crystal-growth eng
dc.subject kidney-stones eng
dc.subject activation-energy eng
dc.subject phase-change eng
dc.subject dehydration eng
dc.subject whewellite eng
dc.subject crystallization eng
dc.subject raman eng
dc.subject precipitation eng
dc.subject štavelan vápenatý cze
dc.subject hydrát cze
dc.subject dehydratace cze
dc.subject rozklad cze
dc.subject DSC cze
dc.subject TG cze
dc.subject in situ XRD cze
dc.subject kinetika cze
dc.subject dekonvoluce cze
dc.title Thermal decomposition of mixed calcium oxalate hydrates - kinetic deconvolution of complex heterogeneous processes eng
dc.title.alternative Tepelný rozklad směsných hydrátů šťavelanu vápenatého - kinetická dekonvoluce heterogenních procesů cze
dc.type article eng
dc.description.abstract-translated Dehydratace a následný rozklad hydrátů šťavelanu vápenatého byly studovány pomocí DSC, TG a in situ XRD. Výsledky byly zpracovány za účelem dekonvoluce probíhajících procesů a stanovení kinetiky jednotlivých dějů. cze
dc.peerreviewed yes eng
dc.publicationstatus postprint eng
dc.identifier.doi 10.1039/c9cp06867h eng
dc.relation.publisherversion https://pubs.rsc.org/en/content/articlelanding/2020/CP/C9CP06867H#!divAbstract eng
dc.identifier.wos 000537175100062 eng
dc.identifier.scopus 2-s2.0-85084167373
dc.identifier.obd 39884916 eng


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