A Flexible Three-Stage Thermochemical Conversion Process,
2015
Sea Marconi Technologies
A Flexible Three-Stage Thermochemical Conversion Process, Vander Tumiatti
Biorefinery I: Chemicals and Materials From Thermo-Chemical Biomass Conversion and Related Processes
No abstract provided.
Multiple-Choice Testing Using Immediate Feedback-Assessment Technique (If At®) Forms: Second-Chance Guessing Vs. Second-Chance Learning?,
2015
Southern Connecticut State University
Multiple-Choice Testing Using Immediate Feedback-Assessment Technique (If At®) Forms: Second-Chance Guessing Vs. Second-Chance Learning?, Jeremy D. Merrel, Pier F. Cirillo, Pauline M. Schwartz, Jeffrey Webb
Chemistry and Chemical Engineering Faculty Publications
Multiple choice testing is a common but often ineffective method for evaluating learning. A newer approach, however, using Immediate Feedback Assessment Technique (IF AT®, Epstein Educational Enterprise, Inc.) forms, offers several advantages. In particular, a student learns immediately if his or her answer is correct and, in the case of an incorrect answer, has an opportunity to provide a second response and receive partial credit for a correct second attempt. For a multiple choice question with five possible answers, the IF AT® form covers spaces labeled A through E with a thin opaque film; when the film is scratched away, …
Exploring The Use Of Faded Worked Examples As A Problem Solving Approach For Underprepared Students,
2015
University of New Haven
Exploring The Use Of Faded Worked Examples As A Problem Solving Approach For Underprepared Students, Tiffany Hesser, Jess L. Gregory
Chemistry and Chemical Engineering Faculty Publications
It is not uncommon for students to find themselves underprepared when entering a post secondary institution. In additional to lower levels of academic achievement, underprepared students may not be aware that they lack the skills needed to be successful and effectively acquire and process information. Because of this, students that enter post-secondary institutions underprepared often require more support in and out of the college classroom.
In computational based classes, such as math, engineering, chemistry or physics, this support often includes an introduction to effective problem solving strategies. This study introduced faded worked examples as a problem solving approach to students …
Characterization Of Dimethyl Sulfoxide-Treated
Wool And Enhancement Of Reactive Wool Dyeing
In Non-Aqueous Medium,
2015
Donghua University, China
Characterization Of Dimethyl Sulfoxide-Treated Wool And Enhancement Of Reactive Wool Dyeing In Non-Aqueous Medium, Luyi Chen, Bijia Wang, Jiangang Chen, Xinhui Ruan, Yiqi Yang
Department of Textiles, Merchandising and Fashion Design: Faculty Publications
Wool pretreated with dimethyl sulfoxide (DMSO) was characterized and its dyeing behavior in non-aqueous green solvents was investigated. Reactive dyeing of wool in deep shades is challenging because the mandatory alkaline aftertreatment to match the fastness of mordant dyes inevitably causes damage to wool keratin. The current study showed that the colorfastness-integrity dilemma could be solved by replacing water with organic solvents as the dyeing medium. Covalent fixation is predominantly favored in solvent dyeing so that excellent colorfastness is achievable at any given shade without alkali aftertreatment. Compared with aqueous dyeing, solvent dyeing was found to give 30% higher covalent …
Sustainability And Economic Analysis Of Propylene Carbonate And Polypropylene Carbonate Production Processes Using Co2 And Propylene Oxide,
2015
University of Nebraska-Lincoln
Sustainability And Economic Analysis Of Propylene Carbonate And Polypropylene Carbonate Production Processes Using Co2 And Propylene Oxide, Yaşar Demirel
Yaşar Demirel Publications
Currently, the industrially important polycarbonates are synthesized from bisphenol A and diphenyl carbonate, which are highly toxic and hence other feasible alternatives are preferable. Following the considerable advances on the catalyst for the synthesis of carbonates from CO2 and propylene oxide (PO), industrial scale processes for the productions of propylene carbonate (PC) and polypropylene carbonate (PPC) have been designed and simulated with sustainability and economic analyses. The CO2 is supplied by a nearby bioethanol plant, while the PO from a petrochemical process. The first part of the study is for the production of 200 million lb/year cyclic PC …
Propane Dehydrogenation On Single Site Gallium On Silica Catalyst,
2015
Purdue University
Propane Dehydrogenation On Single Site Gallium On Silica Catalyst, Shankali U. Pradhan
Open Access Theses
Light alkane dehydrogenation is gaining increasing importance due to the discovery of shale gas. Gallium based catalysts such as Ga/HZSM-3 and Ga2O3 have been used to dehydrogenate propane to propylene. However, the exact nature of the active site for propane dehydrogenation on Gallium based catalysts is still debated in literature. This work is aimed at understanding the nature of active site in Ga/SiO2 catalyst for propane dehydrogenation. The Ga/SiO2 catalyst is active and selective for propane dehydrogenation reaction. It is shown that Ga +3 site co-ordinated with four O atoms is the most active form …
Change In Chirality Of Semiconducting Single-Walled Carbon Nanotubes Can Overcome Anionic Surfactant Stabilisation: A Systematic Study Of Aggregation Kinetics,
2015
University of Rhode Island
Change In Chirality Of Semiconducting Single-Walled Carbon Nanotubes Can Overcome Anionic Surfactant Stabilisation: A Systematic Study Of Aggregation Kinetics, Iftheker A. Khan, Joseph R. V. Flora, A. R. M. Nabiul Afrooz, Nirupam Aich, P. Ariette Schierz, P. Lee Ferguson, Tara Sabo-Attwood, Navid B. Saleh
Chemical, Biomolecular, and Materials Engineering Faculty Publications
Single-walled carbon nanotubes’ (SWNT) effectiveness in applications is enhanced by debundling or stabilisation. Anionic surfactants are known to effectively stabilise SWNTs. However, the role of specific chirality on surfactant-stabilised SWNT aggregation has not been studied to date. The aggregation behaviour of chirally enriched (6,5) and (7,6) semiconducting SWNTs, functionalised with three anionic surfactants – sodium dodecyl sulfate, sodium dodecyl benzene sulfonate and sodium deoxycholate – was evaluated with time-resolved dynamic light scattering. A wide range of mono- (NaCl) and divalent (CaCl2) electrolytes as well as a 2.5 mg total organic carbon (TOC) L–1 Suwannee River humic acid …
Switchable Release Of Entrapped Nanoparticles From Alginate Hydrogels,
2015
University of Rhode Island
Switchable Release Of Entrapped Nanoparticles From Alginate Hydrogels, Cathal J. Kearney, Hadas Skaat, Stephen M. Kennedy, Jennifer Hu, Max Darnell, Theresa M. Raimondo, David J. Mooney
Chemical, Biomolecular, and Materials Engineering Faculty Publications
Natural biological processes are intricately controlled by the timing and spatial distribution of various cues. To mimic this precise level of control, the physical sizes of gold nanoparticles are utilized to sterically entrap them in hydrogel materials, where they are subsequently released only in response to ultrasound. These nanoparticles can transport bioactive factors to cells and direct cell behavior on‐demand.
Coalescence-Induced Jumping Of Droplet: Inertia And Viscosity Effects,
2015
CUNY City College
Coalescence-Induced Jumping Of Droplet: Inertia And Viscosity Effects, Samaneh Farokhirad, Jeffrey F. Morris, Taehun Lee
Publications and Research
The problem of coalescence-induced self-propelled jumping of droplet is studied using three-dimensional numerical simulation. The focus is on the effect of inertia and in particular the effect of air density on the behavior of the merged droplet during jumping. A lattice Boltzmann method is used for two identical, static micro-droplets coalescing on a homogeneous substrate with contact angle ranging from 0◦ to 180◦. The results reveal that the effect of air density is significant on detachment of the merged droplet from the substrate at the later stage of the jumping process; the larger the air density, the larger the jumping …
Surface Functionalized Magnetic Nanoparticles For Cancer Therapy Applications,
2015
University of Kentucky
Surface Functionalized Magnetic Nanoparticles For Cancer Therapy Applications, Robert J. Wydra
Theses and Dissertations--Chemical and Materials Engineering
Despite recent advances, cancer remains the second leading cause of deaths in the United States. Magnetic nanoparticles have found various applications in cancer research as drug delivery platforms, enhanced contrast agents for improved diagnostic imaging, and the delivery of thermal energy as standalone therapy. Iron oxide nanoparticles absorb the energy from an alternating magnetic field and convert it into heat through Brownian and Neel relaxations. To better utilize magnetic nanoparticles for cancer therapy, surface functionalization is essential for such factors as decreasing cytotoxicity of healthy tissue, extending circulation time, specific targeting of cancer cells, and manage the controlled delivery of …
Biomimetic Oral Mucin From Polymer Micelle Networks,
2015
University of Kentucky
Biomimetic Oral Mucin From Polymer Micelle Networks, Sundar Prasanth Authimoolam
Theses and Dissertations--Chemical and Materials Engineering
Mucin networks are formed by the complexation of bottlebrush-like mucin glycoprotein with other small molecule glycoproteins. These glycoproteins create nanoscale strands that then arrange into a nanoporous mesh. These networks play an important role in ensuring surface hydration, lubricity and barrier protection. In order to understand the functional behavior in mucin networks, it is important to decouple their chemical and physical effects responsible for generating the fundamental property-function relationship. To achieve this goal, we propose to develop a synthetic biomimetic mucin using a layer-by-layer (LBL) deposition approach. In this work, a hierarchical 3-dimensional structures resembling natural mucin networks was generated …
Alumina Supported Iron Catalyst For Hydrogen Production: Calcination Study,
2015
King Saud University
Alumina Supported Iron Catalyst For Hydrogen Production: Calcination Study, Anis H. Fakeeha, Wasim Ullah Khan, Ahmed A. Ibrahim, Raja L. Al-Otaibi, Ahmed S. Al-Fatesh, Moustafa A. Soliman, Ahmed E. Abasaeed
Chemical Engineering
Production of clean hydrogen from thermal decomposition of methane was studied over impregnated 30%Fe/Al2O3 catalysts in a micro-activity fixed-bed reactor. The reactant gases comprising CH4 and N2 in the ratio of 1.5 to 1 were passed through reactor at a flow rate of 25 mL/min. Moreover, effect of calcination was investigated as well. The catalytic activity results indicated that calcination temperature had a significant impact on the performance of 30%Fe/Al2O3 catalyst. The catalyst calcined at 450°C, having CH4 conversion as well as H2 yield over 70%, showed better activity as compared to all other calcination temperatures.
Modeling Of Pollutant Adsorption On Novel Modified Biomass As A Means Of Seawater Decontamination,
2015
University Piraeus
Modeling Of Pollutant Adsorption On Novel Modified Biomass As A Means Of Seawater Decontamination, Dimitrios K. Sidiras, Fragiskos K. Batzias, Ioanna G. Siontorou, Ilias G. Konstantinou, Ioanna Salapa, Stavroula P. Zervopoulou
Biorefinery I: Chemicals and Materials From Thermo-Chemical Biomass Conversion and Related Processes
No abstract provided.
Bio-Hydrocarbons Through Catalytic Pyrolysis Of Used Cooking Oils: Towards Sustainable Jet And Road Fuels,
2015
RE-CORD
Bio-Hydrocarbons Through Catalytic Pyrolysis Of Used Cooking Oils: Towards Sustainable Jet And Road Fuels, Marco Buffi, Andrea Maria Rizzo, David Chiaramonti
Biorefinery I: Chemicals and Materials From Thermo-Chemical Biomass Conversion and Related Processes
No abstract provided.
Upgraded Production Of A Hydroxylactone Anhydrosugar By Cellulose Pyrolysis And Its Application In The Synthesis Of Biologically Active Compounds,
2015
Universita' di Trento
Upgraded Production Of A Hydroxylactone Anhydrosugar By Cellulose Pyrolysis And Its Application In The Synthesis Of Biologically Active Compounds, Ines Mancini, Andrea Defant, Federico Dosi', Danilo Malferrari, Daniele Fabbri
Biorefinery I: Chemicals and Materials From Thermo-Chemical Biomass Conversion and Related Processes
No abstract provided.
Biodiesel Synthesis From Domestic Used Cooking Oil In Southern Europe: Evaluation Of Fuel Quality,
2015
Technical University of Crete
Biodiesel Synthesis From Domestic Used Cooking Oil In Southern Europe: Evaluation Of Fuel Quality, T.D. Tsoutsos, St. Tournaki, O. Paraiba, D. Antunes, F. Giglio, P. Quero Garcia, J. Braga, H. Adrianos, M. Filice
Biorefinery I: Chemicals and Materials From Thermo-Chemical Biomass Conversion and Related Processes
No abstract provided.
Sustainable Disposal Of Coal Processing Waste Streams,
2015
University of Kentucky
Sustainable Disposal Of Coal Processing Waste Streams, Mohammad Rezaee
Theses and Dissertations--Mining Engineering
Modern coal preparation facilities incorporate a wide array of solid-solid and solid-liquid separation processes for rejecting mineral matter to meet market specifications. The coarse mineral matter is typically placed into engineered refuse piles whereas the fine refuse is either stored in impoundments or co-disposed with the coarse refuse. The discharge water from the refuse material represents an environmental concern due to the potential release of trace elements, and the subsequent elevation of total dissolved solids and conductivity. The research findings reported in this dissertation addresses sustainable coal processing waste disposal through using strategies aimed at minimizing the environmental impacts. To …
Designed Synthesis Of Nanoporous Organic Polymers For Selective Gas Uptake And Catalytic Applications,
2015
Virginia Commonwealth University
Designed Synthesis Of Nanoporous Organic Polymers For Selective Gas Uptake And Catalytic Applications, Pezhman Arab
Theses and Dissertations
Design and synthesis of porous organic polymers have attracted considerable attentions during the past decade due to their wide range of applications in gas storage, gas separation, energy conversion, and catalysis. Porous organic polymers can be pre-synthetically and post-synthetically functionalized with a wide variety of functionalities for desirable applications. Along these pursuits, we introduced new synthetic strategies for preparation of porous organic polymers for selective CO2 capture.
Porous azo-linked polymers (ALPs) were synthesized by an oxidative reaction of amine-based monomers using copper(I) as a catalyst which leads to azo-linkage formation. ALPs exhibit high surface areas of up to 1200 …
High Surface Area And Z′ In A Thermally Stable 8-Fold Polycatenated Hydrogen-Bonded Framework,
2015
Oberlin College
High Surface Area And Z′ In A Thermally Stable 8-Fold Polycatenated Hydrogen-Bonded Framework, Cassandra A. Zentner, Holden W.H. Lai, Joshua T. Greenfield, Ren A. Wiscons, Matthias Zeller, Charles F. Campana, Orhan Talu, Stephen A. Fitzgerald, Jesse L.C. Rowsell
Chemical & Biomedical Engineering Faculty Publications
1,3,5-Tris(4-carboxyphenyl)benzene assembles into an intricate 8-fold polycatenated assembly of (6,3) hexagonal nets formed through hydrogen bonds and π-stacking. One polymorph features 56 independent molecules in the asymmetric unit, the largest Z′ reported to date. The framework is permanently porous, with a BET surface area of 1095 m2 g−1 and readily adsorbs N2, H2 and CO2.
Stabilizing Electrochemical Carbon Capture Membrane With Al2O3 Thin-Film Overcoating Synthesized By Chemical Vapor Deposition,
2015
University of South Carolina - Columbia
Stabilizing Electrochemical Carbon Capture Membrane With Al2O3 Thin-Film Overcoating Synthesized By Chemical Vapor Deposition, Jingjing Tong, Fengzhan Si, Lingling Zhang, Jie Fang, Minfang Han, Kevin Huang
Faculty Publications
Development of high-efficiency and cost-effective carbon capture technology is a central element of our effort to battle the global warming and climate change. Here we report that the unique high-flux and high-selectivity of electrochemical silver-carbonate dual-phase membranes can be retained for an extended period of operation by overcoating the surfaces of porous silver matrix with a uniform layer of Al2O3 thin-film derived from chemical vapor deposition.
