77 research outputs found

    A Blueprint for the Charles City Public School’s “Community Den”

    Get PDF
    Charles City County Public Schools (CCPS) submitted a Request for Assistance to work with a capstone team that would conduct a thorough analysis of the Community Den program and offer a blueprint that would sustain the Den’s efforts well into the future. To address this request, a doctoral Capstone team primarily utilized qualitative methods of data collection in a 3-phrase approach, including, an extensive process of literature review, asset mapping, which is a strength-based approach of connecting communities with resources, document analysis, site visits, interviews, and focus groups. These approaches allowed the capstone team to gain a better understanding of the resources available to the Community Den, the needs of the students and community members it serves, and existing best practices in rural community resource and support initiatives. Findings indicated that improving access to resources, prioritizing community connection, increasing student engagement, and optimizing the physical space as critical elements for the Community Den successful operation. Recommendations focused on opportunities for student engagement, marketing outreach, community engagement, improvements for data management, and physical spacing were formatted as initial steps within the blueprint to improve the overall operations of the Community Den

    Strong metal-support interactions between palladium and iron oxide and their effect on CO oxidation

    No full text
    Pd/FeOx catalysts were prepared by co-precipitation and characterized before and after reduction using X-ray powder diffraction, thermal analysis, CO chemisorption, electron microscopy, and X-ray photoelectron spectroscopy. Results give evidence for the encapsulation of palladium particles by iron oxide after reduction at high temperatures (523 K). Oxidation of carbon monoxide was applied as test reaction to characterize catalyst samples in different states. Strong metal-–support interactions significantly enhance catalytic activity for oxidation of carbon monoxide. However, this state is not stable under the applied reaction conditions. Catalyst deactivation occurs in two ways: (1) via changes in the oxidation state of iron species and (2) due to sintering of palladium particle

    Insights into the ceria-catalyzed ketonization reaction for biofuels applications

    Get PDF
    The ketonization of small organic acids is a valuable reaction for biorenewable applications. Ceria has long been used as a catalyst for this reaction; however, under both liquid and vapor phase conditions, it was found that given the right temperature regime of about 150-300 °C, cerium oxide, which was previously believed to be a stable catalyst for ketonization, can undergo bulk transformations. This result, along with other literature reports, suggest that the long held belief of two separate reaction pathways for either bulk or surface ketonization reactions are not required to explain the interaction of cerium oxide with organic acids. X-ray photon spectroscopy, scanning electron microscopy, and temperature programmed decomposition results supported the formation of metal acetates and explained the occurrence of cerium reduction as well as the formation of cerium oxide/acetate whiskers. After thermogravimetry/mass spectrometry and FT-IR experiments, a single reaction sequence is proposed that can be applied to either surface or bulk reactions with ceria

    Density functional theory based screening of ternary alkali-transition metal borohydrides: A computational material design project

    Get PDF
    The dissociation of molecules, even the most simple hydrogen molecule, cannot be described accurately within density functional theory because none of the currently available functionals accounts for strong on-site correlation. This problem led to a discussion of properties that the local Kohn-Sham potential has to satisfy in order to correctly describe strongly correlated systems. We derive an analytic expression for the nontrivial form of the Kohn-Sham potential in between the two fragments for the dissociation of a single bond. We show that the numerical calculations for a one-dimensional two-electron model system indeed approach and reach this limit. It is shown that the functional form of the potential is universal, i.e., independent of the details of the two fragments.We acknowledge funding by the Spanish MEC (Grant No. FIS2007-65702-C02-01), “Grupos Consolidados UPV/EHU del Gobierno Vasco” (Grant No. IT-319-07), and the European Community through e-I3 ETSF project (Grant Agreement No. 211956).Peer reviewe

    Density functional theory based screening of ternary alkali-transition metal borohydrides: A computational material design project

    Get PDF
    • 

    corecore