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Featured researches published by Nozomu Kanno.


Sensors | 2010

Diode Laser Detection of Greenhouse Gases in the Near-Infrared Region by Wavelength Modulation Spectroscopy: Pressure Dependence of the Detection Sensitivity

Takashi Asakawa; Nozomu Kanno; Kenichi Tonokura

We have investigated the pressure dependence of the detection sensitivity of CO2, N2O and CH4 using wavelength modulation spectroscopy (WMS) with distributed feed-back diode lasers in the near infrared region. The spectral line shapes and the background noise of the second harmonics (2f) detection of the WMS were analyzed theoretically. We determined the optimum pressure conditions in the detection of CO2, N2O and CH4, by taking into consideration the background noise in the WMS. At the optimum total pressure for the detection of CO2, N2O and CH4, the limits of detection in the present system were determined.


Journal of Physical Chemistry A | 2015

Computational Study of the Rate Coefficients for the Reactions of NO2 with CH3NHNH, CH3NNH2, and CH2NHNH2

Nozomu Kanno; Hiroumi Tani; Yu Daimon; Hiroshi Terashima; Norihiko Yoshikawa; Mitsuo Koshi

The reactions of NO2 with cis-/trans-CH3NHNH, CH3NNH2 and CH2NHNH2 have been studied theoretically by quantum chemical calculations and steady-state unimolecular master equation analysis based on RRKM theory. The barrier heights for the roaming transition states between nitro (RNO2) and nitrite (RONO) isomerization reactions and those for the concerted HONO and HNO2 elimination reactions from RNO2 and RONO, affect the pressure dependences of the product-specific rate coefficients. At ambient temperature and pressure, the dominant product of the reactions of NO2 with cis-/trans-CH3NHNH and CH2NHNH2 would be expected to be HONO with trans-CH3NNH and CH2NNH2, respectively, whereas it is CH3N(NH2)NO2 for CH3NNH2 + NO2. The product-specific rate coefficients for the titled and related reactions on the same potential energy surfaces were proposed for kinetics modeling.


Journal of Physical Chemistry A | 2005

Water dependence of the HO2 self reaction: kinetics of the HO2-H2O complex.

Nozomu Kanno; Kenichi Tonokura; Atsumu Tezaki; Mitsuo Koshi


Journal of Geophysical Research | 2006

Equilibrium constant of the HO2‐H2O complex formation and kinetics of HO2 + HO2‐H2O: Implications for tropospheric chemistry

Nozomu Kanno; Kenichi Tonokura; Mitsuo Koshi


Journal of Physical Chemistry A | 2007

Kinetics and Rate Constants of the Reaction CH2OH + O2 → CH2O + HO2 in the Temperature Range of 236−600 K†

Alexander Schocker; Masanori Uetake; Nozomu Kanno; Mitsuo Koshi; Kenichi Tonokura


Journal of Membrane Science | 2009

Stable high-purity hydrogen production by dehydrogenation of cyclohexane using a membrane reactor with neither carrier gas nor sweep gas

Kazuki Akamatsu; Yudai Ohta; Takashi Sugawara; Nozomu Kanno; Kenichi Tonokura; Tadashi Hattori; Shin-ichi Nakao


Industrial & Engineering Chemistry Research | 2001

Kinetics of Supercritical Water Oxidation of Methanol Studied in a CSTR by Means of Raman Spectroscopy

Seiichiro Koda; Nozomu Kanno; Hideo Fujiwara


Applied Spectroscopy | 2007

Vacuum Ultraviolet Photoionization Mass Spectra and Cross-Sections for Volatile Organic Compounds at 10.5 eV

Nozomu Kanno; Kenichi Tonokura


International Journal of Mass Spectrometry | 2010

Development of a compact laser-based single photon ionization time-of-flight mass spectrometer

Kenichi Tonokura; Nozomu Kanno; Yukio Yamamoto; Hiroyuki Yamada


Journal of Molecular Spectroscopy | 2005

Nitrogen- and water-broadening coefficient measurements in the A˜2A′←X˜2A″ 000–000 band of HO2 using high-resolution diode laser two-tone frequency modulation spectroscopy

Nozomu Kanno; Kenichi Tonokura; Atsumu Tezaki; Mitsuo Koshi

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Mitsuo Koshi

Yokohama National University

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Yu Daimon

Japan Aerospace Exploration Agency

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