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Category No.
Title of paper
  2017-07
Catalytic co-pyrolysis of torrefied yellow poplar and high-density polyethylene using microporous HZSM-5 and mesoporous Al-MCM-41 catalysts Y.-M. Kim et al., Energ. Convers. Manage. 149 (2017) 966–973
  2017-06
Rapid Quantification of N-Methyl-2-pyrrolidone in Polymer Matrices by Thermal Desorption-GC/MS
Y.-M. Kim et al., Anal. Sci. 33 (2017) 821-824
  2017-05
Effects of hard- and soft-segment composition on pyrolysis characteristics of MDI, BD, and PTMG-based polyurethane elastomers S. Kumagai et al., J. Anal. Appl. Pyrol. 126 (2017) 337–345
  2017-04
Pyrolysis kinetic analysis of poly(methyl methacrylate) using evolved gas analysis-mass spectrometry
Y.-M. Kim et al., Korean J. Chem. Eng. 34 (2017) 1214-1221
  2017-03
New approach for the kinetic analysis of cellulose using EGA-MS
Y.-M. Kim et al., Polym. Test. 60 (2017) 12-17
  2017-02
In-Situ Catalytic Pyrolysis of Dealkaline Lignin Over MZ-Hβ
Y.-M. Kim et al., J. Nanosci. Nanotechnol. 17 (2017) 2760-2763
  2017-01
Catalytic Pyrolysis of Waste Wood Plastic Composite Over H-V-MCM-41 Catalysts
H. W. Lee et al., Sci. Adv. Mater. 9 (2017) 934-937
  2016-09
Characterization of soil organic matter with different degrees of humification using evolved gas analysis-mass spectrometry N. Katsumi et al., Talanta 155 (2016) 28-37
  2016-08
Production of aromatic hydrocarbons via catalytic co-pyrolysis of torrefied cellulose and polypropylene
H. W. Lee et al., Energ. Convers. Manage. 129 (2016) 81-88
  2016-07
Catalytic pyrolysis of lignin using a two-stage fixed bed reactor comprised of in-situ natural zeolite and ex-situ HZSM-5 H. W. Lee et al., J. Anal. Appl. Pyrol. 122 (2016) 282-288
  2016-06
Catalytic copyrolysis of cellulose and thermoplastics over HZSM-5 and HY
B.-S. Kim et al., ACS Sustainable Chem. Eng. 4 (2016) 1354-1363
  2016-05
Development of a multi-sample micro UV irradiator for accelerated deterioration of polymers
K. Matsui et al., Polym. Test. 56 (2016) 54-57
  2016-04
Comparative study of TD and solvent extraction-GC/MS analysis for the quantification of phthalates in polymers
Y-M. Kim et al., J. Chromatogr. A 1451 (2016) 33-40
  2016-03
Ex-situ catalytic pyrolysis of citrus fruit peels over mesoporous MFI and Al-MCM-41
Y-M. Kim et al., Energ. Convers. Manage. 125 (2016) 277-289
  2016-01
Hydrogenation Reactions during Py-GC/MS Analysis of Polymer Samples Using Hydrogen Carrier Gas
A. Watanabe et al., Anal. Chem. 88 (2016) 5462-5468
  2015-08
Pyrolysis and catalytic upgrading of Citrus unshiu peel
B-S. Kim et al., Bioresource Technol. 194 (2015) 312-319
  2015-07
Analytical pyrolysis of waste paper laminated phenolic-printed circuit board (PLP-PCB)
Y-M. Kim et al., J. Anal. Appl. Pyrol. 115 (2015) 87-95
  2015-06
Quantitative Analysis of Stearic Acid in Vulcanized Styrene-butadiene Rubber by Thermally Assisted Hydrolysis and Methylation Using GC/MS A. Watanabe et al., NIPPON GOMU KYOKAISHI 88 (2015) 216-220
  2015-05
Analytical pyrolysis properties of waste medium-density fiberboard and particle board
T. U. Han et al., J. Ind. Eng. Chem. 32 (2015) 345-352
  2015-04
Material characterization using a Tandem micro-Reactor–GC–MS
R.R. Freeman et al., J. Anal. Appl. Pyrol. 111 (2015) 41-46
  2015-03
Polymer-coated sample cup for quantitative analysis of semi-volatile phthalates in polymeric materials by TD-GC/MS
A. Hosaka et al., J. Chromatogr. A 1391 (2015) 88-92
  2015-02
Thermoanalytical characterization of polymers: A comparative study between thermogravimetry and EGA using a temperature-programmable pyrolyzer A. Shiono et al., Polym. Test. 42 (2015) 54-61
  2015-01
Non-Isothermal Pyrolysis of Citrus Unshiu Peel
Y-M Kim et al., Bioenergy Res. 8 (2015) 431-439
  2014-04
A new technique for the rapid characterization of catalysts: Tandem micro-reactor-GC/MS
C. Watanabe et al., Environ. Prog. Sustain. Energy. 33 (2014) 688-692
  2014-03
Pyrolysis reaction characteristics of Korean pine (Pinus Koraiensis) nut shell
Y-M. Kim et al., J. Anal. Appl. Pyrol. 110 (2014) 435-441
  2014-02
Quantitative analysis of fatty acids in vulcanized styrene-butadiene rubber by TD and thermally assisted hydrolysis and methylation-GC/MS A. Watanabe et al., Rubber Chem. Technol. 87 (2014) 516-525
  2014-01
Development of a new micro reaction sampler for pyrolysis-GC/MS system facilitating on-line analytical chemolysis of intractable condensation polymers A. Hosaka et al., J. Anal. Appl. Pyrolysis 106 (2014) 160-163
  2013-03
Using Py-GC/MS to detect and measure silicone defoamers in pulp fibres and mill deposits
B. Sithole et al., J. Anal. Appl. Pyrolysis 103 (2013) 8-16
  2013-02
A study of polymerization of aspen (Populus) wood lipophilic extractives by SEC and Py-GC/MS
B. Sithole et al., Appita Journal: J. Tech. Assoc. Austr. and NZ. Pulp and Paper Industry 66 (2013) 59-65
  2013-01
Rapid evaluation of photo, thermal and oxidative degradation of high impact polystyrene by a xenon lamp-based online ultraviolet irradiation-pyrolysis-GC/MS system T. Yuzawa et al., Polym. Degrad. Stab. 98 (2013) 671-676
  2012-02
Using Py-GC/MS to fingerprint additives associated with paper mill effluent toxicity episodes
B. B. Sithole et al., J. Environ. Monit. 14 (2012) 2729-2738
  2011-06
Reactive pyrolysis-GC: A simple, one-step, quantitative method for the analysis of fatty acids in natural products
R. R. Freeman et al., Lipid Technology 23 (2011) 254-256
  2011-05
Development of a Simple Vent-free Interface for Capillary GC/MS
C. Watanabe et al., Anal. Sci. 27 (2011) 1087-1090
  2011-04
Solid-phase extraction element based on epoxy polymer monolith for determination of polar organic compounds in aqueous media T. Takahashi et al., J. Sep. Sci. 34 (2011) 2925-2932
  2011-01
Application of a Py-GC/MS system incorporating with micro-UV irradiation to rapid evaluation of the weatherability of acrylic coating paints for house exterior walls T. Yuzawa et al., Polym. Degrad. Stab. 96 (2011) 91-96
  2009-03
Rapid and Simple Determination of Phthalates in Plastic Toys by a TD-GC/MS Method
T. Yuzawa et al., Anal. Sci. 25 (2009) 1057-1058
  2009-02
Rapid estimation of trace organophosphonate used as a scale inhibitor in aqueous systems by reactive Py-GC/MS
T. Yuzawa et al., J. Chromatogr. A 1216 (2009) 5292-5295
  2009-01
Development of new Py–GC/MS system incorporated with on-line micro-UV irradiation for rapid evaluation of photo, thermal, and oxidative degradation of polymers C. Watanabe et al., Polym. Degrad. Stab. 94 (2009) 1467-1472
  2008-01
Evaluation of the TD–GC/MS method for the determination of DeBDE in order of a few hundred ppm contained in a certified standard PS sample T. Yuzawa et al., Anal. Sci. 24 (2008) 953-955
  2007-01
Development of a new "flow-through" sample cup to reduce undesirable secondary reactions and band broadening of resulting pyrolyzates A. Hosaka et al., J. Anal. Appl. Pyrolysis 78 (2007) 452-455
  2005-01
Rapid Determination of Decabromodiphenyl Ether in Polystyrene by TD-GC/MS
A. Hosaka et al., Anal. Sci. 21 (2005) 1145-1147
  2004-02
Applications of a Multifunctional Pyrolyzer for EGA and Py-GC of Various Synthetic and Natural Materials: Part 4
S. Tsuge et al., Am. Lab. February (2004) 22-26
  2004-01
Development of a novel solid-phase extraction element for TD-GC analysis
L. Wang et al., J. Chromatogr. 1035 (2004) 277-279
  2003-03
Applications of a multifunctional pyrolyzer for EGA and Py-GC of various synthetic and natural materials: Part 2
S. Tsuge et al., Am. Lab. March (2003) 48-52
  2003-02
Applications of a multifunctional pyrolyzer for EGA and Py-GC of various synthetic and natural materials
S. Tsuge et al., Am. Lab. January (2003) 32-37
  2003-01
Applications of a Multifunctional Pyrolyzer for EGA and Py-GC of Various Synthetic and Natural Materials: Part 3
S. Tsuge et al., Am. Lab. December (2003) 16-18
  2002-01
GC–MS Analysis of Heart-Cut Fractions During EGA of Polymeric Materials
C. Watanabe et al., LCGC North America 20 (2002) 374-378
  2001-01
Development of a multifunctional pyrolyzer for EGA, TD, and/or Py-GC of polymeric materials
C. Watanabe et al., Am. Lab. October (2001) 14-15
  1998-01
Development of Selective Sampler on EGA Using Furnace Type Pyrolyzer
A. Hosaka et al., J. Mass Spectrom. Soc. Jpn. 46 (1998) 332-335
  1991-01
Development of a new pyrolyzer for TD and/or Py-GC of polymeric materials
C. Watanabe et al., J. High Resolut. Chromatogr. 14 (1991) 269-272





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