923 resultados para méthodologie gestion TI


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Notre article aborde la question du rationnement de l’offre d’eau potable dans la capitale jordanienne Amman. Il étudie la gestion publique-privée du rationnement, ainsi que ses impacts socio-économiques sur les usagers. Si 98 % de la population jordanienne jouit d’un raccordement au réseau d’eau potable, cet accès demeure assujetti à une intermittence en quantité et en qualité. Une situation expliquée par le discours gouvernemental, qui qualifie les villes du pays d’assoiffées, par la rareté hydrique et la croissance démographique. Or, l’étude du cas d’Amman, à travers la délégation, de 1999 à 2006, de la gestion du service au secteur privé, montre que le rationnement de l’offre incombe de façon importante à l’état technique du réseau défaillant, aggravé par les pratiques de connexions illégales et le gaspillage. Cet article met en outre l’accent sur les inégalités dans les usages de l’eau entre pauvres et riches, accrues par le rationnement inadapté aux caractéristiques socio-économiques des ménages. Ainsi, le coût des stratégies alternatives pour un accès adéquat à l’eau devient inabordable pour l’ensemble des familles, confrontées à une tarification progressive dont les effets sont pervers, et met en avant le rôle discriminatoire du revenu.

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Diffusion of Ti through the TiO2 (110) rutile surface plays a key role in the growth and reactivity of TiO2. To understand the fundamental aspects of this important process, we present an analysis of the diffusion of Ti adspecies at the stoichiometric TiO2(110) surface using complementary computational methodologies of density functional theory corrected for on-site Coulomb interactions (DFT+U) and a charge equilibration (QEq) atomistic potential to identify minimum energy pathways. We find that diffusion of Ti from the surface to subsurface (and vice versa) follows an intersticialcy exchange mechanism, involving exchange of surface Ti with the 6-fold coordinated Ti below the bridging oxygen rows. Diffusion in the subsurface between layers also follows an interstitialcy mechanism. The diffusion of Ti is discussed in light of continued attempts to understand the re-oxidation of non-stoichiometric TiO2(110) surfaces.

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The first 3-D open-framework TiGaPO complex, constructed from (TiO6)-O-III, (TiO6)-O-IV, GaO4, and PO4 polyhedra, contains pyridinium cations in a 1-D pore network and can be oxidized in air at 543 K with retention of the original framework structure.

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There has been limited development in catalyst carriers for magnetic separations where superparamagnetic nanoparticles of a high saturation magnetization with no coercivity are required to isolate expensive catalyst reagent that are subjected to repeated magnetic cycles. By using simple stepwise layer-by-layer nanochemistry techniques, we show that an fee FePt nanomagnet can be created inside each silica particle with tailored dimensions to great precision. Subsequent engineering of the external surface with Ti-O-Si species in an optimum structure to create a unique interface gives high activity and excellent selectivity of the composite material for the trans-stilbene oxidation to the corresponding epoxide in the presence of tert-butyl hydroperoxide. Thus, a new magnetic separable epoxidation catalyst is described. This work clearly demonstrates the significance of nanoengineering of a single catalyst particle by a bottom-up construction approach in modern catalyst design, which could lead to new catalytic. properties.

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Reaction of with one or two equivalents of LiPPh2 afforded the new phosphanidometal(III) complexes . Reaction of 2 with LiC≡CSiMe3 led to the diamagnetic zirconium(III) alkynyl derivative [{Zr(C5H5)(μ−C≡CSiMe3)}2(μ−η5−C5H4−η5−C5H4], 7. Alkylation of 6 with LiCH2CMe2Ph gave [{Zr(η5−C5H5)(CH2CMe2Ph)2}2{μ−(η5−C5H4)}], 8. A detailed NMR study of complexes 3 and 4 allowed the observation of the spectral behaviour of the eight different fulvalene protons through their coupling to the 31P nucleus. The fluxional behaviour of complex 7 was studied by dynamic DNMR, and kinetic parameters for the σ-π-conversion of the alkynyl ligand were determined. The molecular structures of complexes 3 and 7 were determined by X-ray diffraction methods.