Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Hanno Geissler"'
Publikováno v:
Food Control. 47:615-622
The present work describes a novel multiple sensor-type system for the real-time analysis of aseptic sterilisation processes employing gaseous hydrogen peroxide (H2O2) as a sterilant. The inactivation kinetics of Bacillus atrophaeus by gaseous H2O2 h
Publikováno v:
Biosensors and Bioelectronics. 140:111272
Monitoring of food quality, in particular, milk quality, is critical in order to maintain food safety and human health. To guarantee quality and safety of milk products and at the same time deliver those as soon as possible, rapid analysis methods as
Autor:
Michael J. Schöning, Benno Schneider, Patrick Wagner, Matthias van Gompel, Hanno Geissler, Steffen Reisert
Publikováno v:
physica status solidi (a). 210:898-904
In this work, a multi-sensor chip for the investigation of the sensing properties of different types of metal oxides towards hydrogen peroxide in the ppm range is presented. The fabrication process and physical characterization of the multi-sensor ch
Autor:
Patrick Wagner, Rudolf Flörke, Steffen Reisert, Hanno Geissler, Niko Näther, Michael J. Schöning
Publikováno v:
physica status solidi (a). 208:1351-1356
The presented work focuses on the development of a multi-sensor system for the evaluation of aseptic processes employing hydrogen peroxide vapour. In a first step, selected commercially available gas sensors have been investigated on cross-sensitivit
Autor:
Michael J. Schöning, Patrick Wagner, Rudolf Flörke, Hanno Geissler, Torsten Wagner, Steffen Reisert
Publikováno v:
CompSens
In this work, a metal-oxide-semiconductor gas sensor has been investigated on sensitivity towards hydrogen peroxide and other influencing factors of the aseptic sterilization process employing hydrogen peroxide vapor. Microbiological reduction tests
Autor:
Steffen Reisert, Rudolf Flörke, Patrick Wagner, Michael J. Schöning, Christian Weiler, Hanno Geissler
Publikováno v:
International Journal of Nanotechnology. 10:470
The present work describes the development of a multi–sensor system for the evaluation of aseptic sterilisation processes employing hydrogen peroxide vapour by means of an electronic nose. Microbiological count reduction tests with Bacillus atropha