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  • 3,5-Dichlorocatechol  (1)
  • Flow instabilities  (1)
  • Springer  (2)
  • American Physical Society (APS)
  • 1
    ISSN: 1432-072X
    Schlagwort(e): 3,5-Dichlorocatechol ; 2,4-Dichloromuconate ; Dichloromuconate cycloisomerase ; 2-Chloro-4-carboxymethylenebut-2-en-4-olide ; Alcaligenes eutrophus JMP 134 ; Pseudomonas sp. B 13
    Quelle: Springer Online Journal Archives 1860-2000
    Thema: Biologie
    Notizen: Abstract 2,4-Dichloro-cis,cis-muconate is established as ringcleavage product in the degradation of 3,5-dichlorocatechol by Alcaligenes eutrophus JMP 134. The formerly described isomerization of 2-chloro-trans- to 2-chlorocis-4-carboxymethylenebut-2-en-4-olide as an essential catabolic step could not be certified.
    Materialart: Digitale Medien
    Standort Signatur Erwartet Verfügbarkeit
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  • 2
    ISSN: 1435-1528
    Schlagwort(e): Key words Viscoelastic surfactant solution ; Shear induced structure ; Flow instabilities ; First normal stress difference
    Quelle: Springer Online Journal Archives 1860-2000
    Thema: Chemie und Pharmazie , Physik
    Notizen: Abstract Recently we studied time dependent structural changes that are coupled with flow instabilities (Fischer 1998; Wheeler 1998; Fischer 2000). Within a stability analysis, a classification scheme for the feedback circuit of coupled shear-induced structure and flow instabilities was derived by Schmitt et al. (1995) and applied to our samples. Here, inhomogeneous flow layers of different concentration and viscosity are generated by shear-induced diffusion (spinodal demixing) and, as consequence, one no longer observes a homogeneous solution but a type of shear banding that is seen here for the first time. In this paper we present the behaviour of the first normal stress difference observed in the critical shear-rate regime where transient shear-induced structure is coupled with flow instability. Similar to the oscillations of the shear stresses (strain-controlled rheometer) one observes oscillations in the first normal stress difference. This behaviour indicates that elastic structures are built up and destroyed while the shear-induced structures occur and that the induced phase is more elastic than the initial one. Oscillations of shear stress and first normal stress difference are in phase and indicate that both phenomena are caused by the same mechanism.
    Materialart: Digitale Medien
    Standort Signatur Erwartet Verfügbarkeit
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