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Dive into the research topics where Arne Henning Kull is active.

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Featured researches published by Arne Henning Kull.


Polymer | 1996

Characterization of aqueous car☐ymethylcellulose solutions in terms of their molecular structure and its influence on rheological behaviour

Werner-Michael Kulicke; Arne Henning Kull; Wiebke Kull; Heiko Thielking; Jürgen Engelhardt; Jörn-Bernd Pannek

A set of car☐ymethylcellulose (CMC) samples was varied in degree of substitution (DS) from 0.71 to 2.95, with the partial degree of substitution being raised uniformly at positions C2, C3 and C6, so that a homologous series of CMC was made available. A further set of samples varied in molar mass from 200 000 to 2 000 000 g mol−1 at a constant DS of ∼ 1. The chemical structural parameters were determined by n.m.r. spectroscopy, showing that quantification of the degree of substitution at position C6 may be distorted by impurities of glycolic acid. The mean molar masses, for establishing the [η]-M relationship, were determined by multiangle laser light scattering preceded by size exclusion chromatography. The influence of concentration on zero-shear viscosity was given by η0 ∝ c4.3, whereas the influence of the molar mass was determined by η0 ∝ M3.9. An increasing DS within a homologous series influences the viscosity in different solvents (H2O 0.01 M NaCl, 0.1 M NaCl) at low polyelectrolytic concentrations. Surprisingly, the viscosity for all the CMC samples can be predicted by the single equation: η0[Pas]=8.91×10−4+1.30×10−5cMW0.9+5.33×10−8c2MW1.8+4.60×10−15c4.34MW3.91 at T = 298 K in 0.01 M NaCl. Increasing the DS up to a value of ∼ 1 improves the solubility characteristics (increases the viscosity), whereas above DS ≈ 1 this effect is overlapped by degradation of the molar mass. It was also possible to quantitatively determine the viscoelasticity as a function of frequency and molecular parameters.


Starch-starke | 1996

Hydrocolloids and Rheology: Regulation of Visco-elastic Characteristics of Waxy Rice Starch in Mixtures with Galactomannans†

Werner-Michael Kulicke; Dirk Eidam; Franziskus Kath; Martin Kix; Arne Henning Kull


Archive | 2004

Storage-stable particle composition of polysaccharides and/or polysaccharide derivatives and at least one synthetic polymer, a process for production thereof and use thereof in construction material mixtures

Gunter Weber; Meinolf Brackhagen; Hartwig Schlesiger; Grit Siegmund; Arne Henning Kull; Hans-Juergen Juhl; Roland Bayer; Erik-Andreas Klohr


Archive | 2004

Use of irreverrsibly crosslinked cellulose derivatives in building materials and a process for the extrusion of cement using these additives

Hartwig Schlesiger; Roland Bayer; Frank Höhl; Arne Henning Kull; Jürgen Engelhardt; Burkhard Kressdorf; Jörn Dr. Pannek


Archive | 2006

Preparation of cellulose ether products of increased viscosity and fineness

Hartwig Schlesiger; Roland Bayer; Daniel Auriel; Jürgen Engelhardt; Frank Höhl; Erik-Andreas Klohr; Arne Henning Kull; Jörn-Bernd Pannek; Marc Oliver Schmidt


Archive | 2004

Process for cement extrusion that makes use of crosslinked cellulose additives

Hartwig Schlesiger; Roland Bayer; Frank Höhl; Arne Henning Kull; Jürgen Engelhardt; Burkhard Kressdorf; Jörn-Bernd Pannek


Archive | 2008

TERNARY MIXED ETHERS

Hartwig Schlesiger; Arne Henning Kull; Meinolf Brackhagen; Wolfgang Dannhorn; Dan Mania


Archive | 2006

Method for producing cellulose ether products with increased viscosity and fineness

Hartwig Schlesiger; Roland Bayer; Daniel Auriel; Jürgen Engelhardt; Frank Höhl; Eric-Andreas Klohr; Arne Henning Kull; Jörn-Bernd Pannek; Marc Oliver Schmidt


Archive | 2008

Cellulose ethers having little swelling and process for their production

Rene Kiesewetter; Meinolf Brackhagen; Carsten Grote; Arne Henning Kull; Maarten Schroen


Archive | 2006

Procede de fabrication de produits d'ether de cellulose presentant une viscosite et une finesse ameliorees

Hartwig Schlesiger; Roland Bayer; Daniel Auriel; Jürgen Engelhardt; Frank Höhl; Eric-Andreas Klohr; Arne Henning Kull; Jörn-Bernd Pannek; Marc Oliver Schmidt

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