Showing 2,361 - 2,380 results of 34,010 for search '"Adsorption"', query time: 0.19s Refine Results
  1. 2361

    The Effect of Humic Acid and Silicic Acid on P Adsorption by Amorphous Minerals by , Eko Hanudin

    Published 2014
    “…<p>Andisol is a soil with high P adsorption, this is due to high content in reactive amorphous materials. …”
    Thesis
  2. 2362
  3. 2363

    The Effect of Humic Acid and Silicic Acid on P Adsorption by Amorphous Minerals by Hanudin, Eko

    Published 2014
    “…<p>Andisol is a soil with high P adsorption, this is due to high content in reactive amorphous materials. …”
    Article
  4. 2364
  5. 2365
  6. 2366

    Adsorption of mixed cationic-non-ionic surfactants at the air/water interface by Penfold, J, Staples, E, Cummins, P, Tucker, I, Thompson, L, Thomas, R, Simister, E, Lu, JR

    Published 1996
    “…The effects of temperature on the adsorption of the C16TAB-C12E6 mixture at the air/water interface are described. …”
    Journal article
  7. 2367

    Sulphur adsorption and effects of sulphur poisoning on RhCu bimetallic surfaces by Foord, J, Reynolds, A

    Published 1985
    “…Sulphur adsorption on Cu covered Rh(111) surfaces, prepared as models of "bimetallic cluster" catalysts, was studied and the effects of preadsorbed sulphur on the chemisorption of CO and C2H2 on Rh(111)-Cu surfaces examined. …”
    Journal article
  8. 2368

    The adsorption of lysozyme at the silica-water interface: A neutron reflection study by Su, T, Lu, JR, Thomas, R, Cui, Z, Penfold, J

    Published 1998
    “…The adsorption of lysozyme (chicken egg white) from aqueous solution on to the hydrophilic silica surface and the variation of interfacial structure with solution conditions have been studied by neutron reflection. …”
    Journal article
  9. 2369

    Adsorption of nonionic mixtures at the air-water interface: effects of temperature and electrolyte. by Penfold, J, Staples, E, Tucker, I, Thompson, L, Thomas, R

    Published 2002
    “…Specular neutron reflection has been used to investigate the effects of temperature and added electrolyte on the adsorption of nonionic surfactants and nonionic surfactant mixtures at the air-water interface. …”
    Journal article
  10. 2370

    Kinetics of porphyrin adsorption and DNA-assisted desorption at the silica-water interface. by Zhang, M, Powell, H, Mackenzie, S, Unwin, P

    Published 2010
    “…TMPyP was delivered to the silica surface using an impinging jet technique to allow relatively fast surface kinetics to be accessed. Adsorption was first-order in TMPyP, and the initial adsorption rate constant at the bare surface was found to be k = (4.1 +/- 0.6) x 10(-2) cm s(-1). …”
    Journal article
  11. 2371

    Adsorption behavior of hydrophobin and hydrophobin/surfactant mixtures at the solid-solution interface. by Zhang, X, Penfold, J, Thomas, R, Tucker, I, Petkov, J, Bent, J, Cox, A

    Published 2011
    “…The adsorption of surface-active protein hydrophobin, HFBII, and HFBII/surfactant mixtures at the solid-solution interface has been studied by neutron reflectivity, NR. …”
    Journal article
  12. 2372
  13. 2373

    Adsorption Behavior of Hydrophobin and Hydrophobin/Surfactant Mixtures at the Air-Water Interface by Zhang, X, Penfold, J, Thomas, R, Tucker, I, Petkov, J, Bent, J, Cox, A, Campbell, R

    Published 2011
    “…The adsorption of the surface-active protein hydrophobin, HFBII, and the competitive adsorption of HFBII with the cationic, anionic, and nonionic surfactants hexadecyltrimethylammonium bromide, CTAB, sodium dodecyl sulfate, SDS, and hexaethylene monododecyl ether, C 12E 6, has been studied using neutron reflectivity, NR. …”
    Journal article
  14. 2374
  15. 2375
  16. 2376

    The effect of shear on the adsorption of non-ionic surfactants at the liquid-solid interface by Penfold, J, Staples, E, Tucker, I, Fragnetto, G

    Published 1996
    “…The construction of a shear cell for neutron reflectivity measurements is described, and some recent preliminary results on the effect of shear on the adsorption of the non-ionic surfactant, hexaethylene glycol monohexadecyl ether (C16E6), at the planar silicon/solution interface are discussed. …”
    Conference item
  17. 2377
  18. 2378

    THE EFFECT OF ATTRACTIVE MONOMER MONOMER INTERACTIONS ON THE ADSORPTION OF A POLYMER-CHAIN by Veal, A, Yeomans, J, Jug, G

    Published 1991
    “…The numerical results are consistent with the existence of a multicritical point where the adsorption and collapse transitions coincide and suggest that the adsorption transition of a collapsed polymer chain in first order. …”
    Journal article
  19. 2379

    Adsorption and self-assembly properties of the plant based biosurfactant, Glycyrrhizic acid by Tucker, IM, Burley, A, Petkova, RE, Hosking, SL, Penfold, J, Thomas, RK, Li, PX, Webster, JRP, Welbourn, R, Doutch, J

    Published 2021
    “…&lt;h4&gt;Findings&lt;/h4&gt;The adsorption isotherm is determined in water and in the presence of gelling additives, and compared with the adsorption behaviour of other saponins. …”
    Journal article
  20. 2380

    THE ADSORPTION AND THERMAL-DECOMPOSITION OF PH3 AND NH3 ON GAAS(100) by Singh, N, Murrell, A, Harrison, D, Foord, J

    Published 1991
    “…The adsorption and thermal decomposition of PH3 and NH 3 on the Ga-rich GaAs(100)-(4*1) has been studied using temperature programmed desorption, isotope exchange reactions and high resolution electron energy loss spectroscopy (HREELS). …”
    Conference item