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  2. The Carbon Footprint and Non-Renewable Energy Demand of Algae-Derived …

    https://como.ceb.cam.ac.uk/media/preprints/c4e-Preprint-128.pdf
    1 May 2019: e-CO2/MJb and 1.81 MJ f /MJb to87 g e-CO2/MJb and 1.24 MJ f /MJb, respectively. ... In the case of solar-assisted drying processes, the EBR values were calculatedat 0.76 and 1.24 MJ f /MJb for gasification-CHP and gasification-FT processes, respec-tively.
  3. Lifting a buried object: reverse hopper theory

    https://como.ceb.cam.ac.uk/media/preprints/c4e-Preprint-129.pdf
    1 May 2019: A similartheory was given by Nguyen et al. [24], Savage and Sayed [27] and Brennen and Pearce[7]. ... Cam-bridge University Press, 1992. [24] T. V. Nguyen, C. Brennen, and R.
  4. Cambridge Centre forComputational Chemical Engineering University of…

    https://como.ceb.cam.ac.uk/media/preprints/c4e-Preprint-13.pdf
    1 May 2019: Table 1: Considered reaction mechanisms. Name Species Reactions Reference Website. hydrogen 10 27 [24] www-cms.llnl.gov/combustion/combustion2.html. ... 0. 0.04. 0.08. 0.12. 0.16. 0.2. 0.24. 0 0.2 0.4 0.6 0.8 1.
  5. Size-dependent melting of polycyclic aromatic hydrocarbon (PAH)…

    https://como.ceb.cam.ac.uk/media/preprints/c4e-Preprint-130.pdf
    1 May 2019: However, intramolecular interactions have been accounted for by using thearomatic parameters from the OPLS-AA force field [22, 24] for bonds, angles, dihedralsand improper dihedrals. ... Journal of Chemical & Engineering Data, 32(1):60–62, 1987.
  6. A c4e preprint for Chemical Engineering Science

    https://como.ceb.cam.ac.uk/media/preprints/c4e-Preprint-132.pdf
    1 May 2019: 20. 4.2.4 Single granule compression strength. 23. 5 Conclusion 24. 6 Acknowledgements 26. ... 24. 0.0. 0.5. 1.0. 1.5. Particle size [µm]. Com. pres. sion.
  7. Bayesian Error Propagation for a Kinetic Model of n-Propylbenzene…

    https://como.ceb.cam.ac.uk/media/preprints/c4e-Preprint-133.pdf
    1 May 2019: The complete data set is available online as supplementary material to aprevious publication [24]. ... As chemical kinetic model, a mechanism developed previously [24], extending earlierwork [11, 32], was used.
  8. Modelling Soot Formation: Model of Particle Formation

    https://como.ceb.cam.ac.uk/media/preprints/c4e-Preprint-134.pdf
    1 May 2019: 2All material has been drawn from Totton et al. [24] unless otherwise indicated. ... TheJournal of Chemical Physics, 80:3726, 1984. doi:10.1063/1.447150. [24] T. S. Totton, D.
  9. Impact of powder dispersion on a wet-granulation system

    https://como.ceb.cam.ac.uk/media/preprints/c4e-Preprint-135.pdf
    1 May 2019: Mean speed is119.52 rpm with a variance of 24.10 rpm2. 12. ... 24. Table 4: Single value empirically computed characterisations of the end-product distri-butions.
  10. Numerical simulation of the evolution of nascent soot particles in a…

    https://como.ceb.cam.ac.uk/media/preprints/c4e-Preprint-136.pdf
    1 May 2019: Soot particles are represented as aggregates composed of primary particles, where eachprimary is composed of a number of PAHs [24]. ... Aerosol Science and Technology, 43:978–989, 2009. doi:10.1080/02786820903092416. [24] M. Sander, R.
  11. A detailed kinetic study of the thermal decomposition of ...

    https://como.ceb.cam.ac.uk/media/preprints/c4e-Preprint-137.pdf
    1 May 2019: 6. The rates of the most important barrier-less reactions were estimated via RRKM (Rice-Ramsperger-Kassel-Markus) [14, 18, 24] theory implemented in the Unimol [10] codeusing a simple Gorin ... Journal of Physical Chemistry, 115:1602–1608,2011.

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