Searcharxiv⌕ Search

arXiv subjects

Olivier Durif

Publications and source records attributed to Olivier Durif.

3 recordsLinked to original sources

Simplifying Gas-Phase Kinetics with a Dual-Arm Flow Tube Reactor

We present a flow tube reactor design for gas-phase kinetics studies near ambient temperature and pressure. Built entirely from standard tubing, the setup simplifies conventional flow tube configurations based on injector translation while allowing tighter adjustment of reaction time. The reactor spans residence times from sub-second to several minutes through two operating modes: (i) a variable-length mode, in which reaction time is controlled by the tube length, and (ii) a variable-flow mode, in which the second arm acts as an exhaust branch that decouples reactor pressure from inlet flows while allowing the reactor flow rate to be adjusted over a setup-dependent range. Key advantages include a narrow and well-characterized residence time distribution, rapid radial mixing in millimeter-scale tubing, low wall reactivity through the use of perfluoroalkoxy alkane (PFA), and operation of the reaction section at nearly uniform pressure independently of detector constraints. We characterize the residence time distribution and demonstrate reactor performance with the ozonolysis of 2,3-dimethyl-2-butene. Overall, the method provides a compact, low-cost, and versatile alternative to conventional movable-injector flow tubes, with potential applications in atmospheric chemistry, fundamental kinetics, and gas--liquid or gas--solid uptake studies.

eess.SY↗

Commentary Regarding the CRESU-SIS Experiment: Concerns About the Uniform Supersonic Flow Reactor

This commentary addresses the anomalies in the results reported from the CRESU-SIS experiment at the Institute of Physics of Rennes, France. This experimental setup is dedicated to studying ion-molecule kinetic in the gas phase at very low temperatures using a uniform supersonic flow reactor. A reinterpretation of the latest study performed with this instrument highly suggests a dramatic decrease in flow density upon the injection of neutral reactants. In particular, these concerns can be related to the diffusion effects prevalent in the reported results on the vast majority of the kinetics experiments conducted with a uniform supersonic flow reactor. The scientific community in the field of low-temperature chemical kinetics in uniform supersonic flow would greatly benefit from being aware of and comprehending these highlighted anomalies because the evidence in this commentary calls into question many of the results published to date.

astro-ph.IM↗

A new instrument for kinetics and branching ratio studies of gas phase collisional processes at very low temperatures

A new instrument dedicated to the kinetic study of low-temperature gas phase neutral-neutral reactions, including clustering processes, is presented. It combines a supersonic flow reactor with Vacuum Ultra-Violet (VUV) synchrotron photoionization time of flight mass spectrometry. A photoion-photoelectron coincidence detection scheme has been adopted to optimize the particle counting efficiency. The characteristics of the instrument are detailed along with its capabilities illustrated through a few results obtained at low temperatures (< 100 K) including a {photoionization spectrum} of n-butane, the detection of formic acid dimer formation as well as the observation of diacetylene molecules formed by the reaction between the C$_2$H radical and C$_2$H$_2$.

physics.chem-ph↗