Engineering A Fluorescent Protease Sensor For In Vivo Protein Detection,
2017
University of Connecticut
Engineering A Fluorescent Protease Sensor For In Vivo Protein Detection, Thomas C. Kinard
Honors Scholar Theses
This report details the results of an ongoing project to engineer a mutant form of Red Fluorescent Protein (RFP) variant mCherry that acts as a real-time in vivo protease sensor. The sought-after mutant only becomes fluorescent when exposed to Tobacco Etch Virus (TEV) Protease, this system’s model protease. This will be accomplished via the insertion of the TEV Protease Recognition Site (TEV-PRS) in such a position that, before cleavage, will prevent the protein from folding to fluorescent conformation, but upon cleavage, will allow for fluorescent conformation to occur. The cylindrical structure of the protein, composed of beta-pleated sheets, contains “loops” …
Catalytic Upgrading Of Biogas To Fuels: Role Of Reforming Temperature, Oxidation Feeds, And Contaminants,
2017
University of South Florida
Catalytic Upgrading Of Biogas To Fuels: Role Of Reforming Temperature, Oxidation Feeds, And Contaminants, Nada Elsayed
USF Tampa Graduate Theses and Dissertations
Global energy demands are constantly increasing and fossil fuels are a finite resource. The shift towards alternative, more renewable and sustainable fuels is inevitable. Furthermore, the increased emissions of greenhouse gases have forced a pressing need to find cleaner, more environmentally friendly sources of fuel. Biomass energy is a promising alternative fuel because it offers several important advantages. It is a renewable energy form, it comes from many sources and produces biogas (CH4 and CO2). Furthermore, it can have a zero carbon footprint; this is due to the fact that the carbon produced is from the same …
Fatigue Properties And Damage Mechanism Of A Cr-Mn Austenite Steel,
2017
Yanshan University, China
Fatigue Properties And Damage Mechanism Of A Cr-Mn Austenite Steel, Z. Q. Lv, Pei Cai, T. Yu, Yan Jin, H. F. Zhang, Tongguang Zhai, W. T. Fu
Chemical and Materials Engineering Faculty Publications
The fatigue properties and the damage mechanism of a Cr-Mn austenite steel were investigated using four-point bend fatigue testing. The stress-number of cycles to failure (S-N) curve of the Cr-Mn austenite steel was measured at room temperature, at the frequency of f=20 Hz and the stress ratio of R=0.1. The fatigue strength of this Cr-Mn austenite steel was measured to be 503 MPa in the maximum stress. Multiple cracks are initiated on the sample surface after fatigue failure tests, and usually only one or two of them can lead to the final failure of the samples. Most of the cracks …
Producing Food Packaging Printing Ink Via Green Emulsion Aggregation Method,
2017
Department of Printing Science and Technology, Institute for Color Science and Technology
Producing Food Packaging Printing Ink Via Green Emulsion Aggregation Method, Maryam Ataeefard, Shohre Rouhani
Journal of Applied Packaging Research
Digital printing will become more and more important in the packaging industry. Digital printing technology is growing because it allows the print suppliers to improve the level of service they offering to their customers, as well as, it opens new opportunities and helps them to make more money. Additives, dyestuffs, resin and other chemicals in packaging printing ink may influence safety of the food. Therefore, choosing suitable materials are very important in food packing ink. Over the last years, many printing ink manufacturers moved toward more sustainable inks. Drivers for this development, besides the resource scarcity and a higher legislative …
The Effect Of Graphene On Catalytic Performance Of Palladium Nanoparticles Decorated With Fe3o4, Co3o4, And Ni (Oh)2: Potential Efficient Catalysts Used For Suzuki Cross—Coupling,
2017
The British University in Egypt
The Effect Of Graphene On Catalytic Performance Of Palladium Nanoparticles Decorated With Fe3o4, Co3o4, And Ni (Oh)2: Potential Efficient Catalysts Used For Suzuki Cross—Coupling, Hany A. Elazab Dr
Chemical Engineering
In this research, we report a scientific investigation of an efficient method used for the synthesis of highly active Palladium Nanoparticles decorated with Fe3O4, Co3O4, and Ni (OH)2 Supported on Graphene as Potential Efficient Catalysts for Suzuki Cross—Coupling. Pd/Fe3O4 nanoparticles supported on graphene nanosheets (Pd/ Fe3O4/G) showed an excellent catalytic activity for Suzuki coupling reactions and recycled for up to four times without loss of catalytic activity. An efficient magnetic catalyst has been successfully synthesized using a simple, reproducible fast and reliable method using microwave irradiation conditions. The prepared catalysts are magnetic as in case of iron and cobalt oxides …
Interplay Of Composition, Structure, And Electron Density Of States In W-Os Cathode Materials And Relationship With Thermionic Emission,
2017
University of Kentucky
Interplay Of Composition, Structure, And Electron Density Of States In W-Os Cathode Materials And Relationship With Thermionic Emission, Qunfei Zhou, Thomas John Balk, Matthew J. Beck
Chemical and Materials Engineering Faculty Publications
The presence and composition of W-Os alloys have been found to significantly affect the thermionic emission properties of Os-coated tungsten dispenser cathodes. However, the comprehensive understanding of structure–property relationships needed to design improved tungsten cathodes with larger thermionic emission is still lacking. In this study, composition–structure–property relationships governing thermionic emission from W-Os alloys were investigated using quantum mechanical calculations. Low-energy W-Os atomic configurations at various compositions were determined from first-principles calculations based on density functional theory in combination with cluster expansion calculations. Electronic properties were investigated in terms of the electron density of states. The relative position of the Fermi …
Idiosyncratic Drug-Induced Liver Injury (Idili): Potential Mechanisms And Predictive Assays,
2017
Cleveland State University
Idiosyncratic Drug-Induced Liver Injury (Idili): Potential Mechanisms And Predictive Assays, Alexander D. Roth, Moo-Yeal Lee
Chemical & Biomedical Engineering Faculty Publications
Idiosyncratic drug-induced liver injury (IDILI) is a significant source of drug recall and acute liver failure (ALF) in the United States. While current drug development processes emphasize general toxicity and drug metabolizing enzyme- (DME-) mediated toxicity, it has been challenging to develop comprehensive models for assessing complete idiosyncratic potential. In this review, we describe the enzymes and proteins that contain polymorphisms believed to contribute to IDILI, including ones that affect phase I and phase II metabolism, antioxidant enzymes, drug transporters, inflammation, and human leukocyte antigen (HLA). We then describe the various assays that have been developed to detect individual reactions …
Inhibition Of Mammalian Glycoprotein Ykl-40 Identification Of The Physiological Ligand,
2017
University of Kentucky
Inhibition Of Mammalian Glycoprotein Ykl-40 Identification Of The Physiological Ligand, Abhishek A. Kognole, Christina M. Payne
Chemical and Materials Engineering Faculty Publications
YKL-40 is a mammalian glycoprotein associated with progression, severity, and prognosis of chronic inflammatory diseases and a multitude of cancers. Despite this well documented association, identification of the lectin′s physiological ligand and, accordingly, biological function has proven experimentally difficult. YKL-40 has been shown to bind chito-oligosaccharides; however, the production of chitin by the human body has not yet been documented. Possible alternative ligands include proteoglycans, polysaccharides, and fibers like collagen, all of which makeup the extracellular matrix. It is likely that YKL-40 is interacting with these alternative polysaccharides or proteins within the body, extending its function to cell biological roles …
Hybrid Concentrated Solar Thermal Power Systems: A Review,
2017
University of Utah
Hybrid Concentrated Solar Thermal Power Systems: A Review, Kody M. Powell, Khalid Rashid, Kevin Ellingwood, Jake Tuttle, Brian D. Iverson
Faculty Publications
Concentrated solar power (CSP), or solar thermal power, is an ideal technology to hybridize with other energy technologies for power generation. CSP shares technology with conventional power generation and can be readily integrated with other energy types into a synergistic system, which has many potential benefits including increased dispatchability and reliability, improved efficiency, reduced capital costs through equipment sharing, and the opportunity for flexible operation by alternating between energy sources. Another advantage of CSP technology is the ability to readily store via thermal energy storage (TES), making the intermittent solar resource dispatchable. A review of CSP hybridization strategies with coal, …
Geometry-Driven Folding Of A Floating Annular Sheet,
2017
Syracuse University
Geometry-Driven Folding Of A Floating Annular Sheet, Joseph Paulsen, Vincent Démery, K. Buğra Toga, Zhanlong Qiu, Thomas P. Russell, Benny Davidovitch, Narayanan Menon
Physics - All Scholarship
Predicting the large-amplitude deformations of thin elastic sheets is difficult due to the complications of self contact, geometric nonlinearities, and a multitude of low-lying energy states. We study a simple twodimensional setting where an annular polymer sheet floating on an air-water interface is subjected to different tensions on the inner and outer rims. The sheet folds and wrinkles into many distinct morphologies that break axisymmetry. These states can be understood within a recent geometric approach for determining the gross shape of extremely bendable yet inextensible sheets by extremizing an appropriate area functional. Our analysis explains the remarkable feature that the …
Lab-Scale Reproduction Of Siloxane Foam Synthesis,
2017
Virginia Commonwealth University
Lab-Scale Reproduction Of Siloxane Foam Synthesis, Albert Deangelis, Benjamin Ledoux, Conrad Roos
Capstone Design Expo Posters
Evonik has a synthesis reaction to create siloxane-based foam for sale that they run in their Hopewell plant. They would like to utilize a bench scale reactor system for experimentation on the process. The problem is that the foam created on the lab scale does not show the same properties as the foam created on the plant scale and to run experiments accurately they would have to use the plant reactor, wasting both reactor time and plant resources. Evonik wanted the Senior Design team to find a way of recreating the conditions of the plant reactor on the lab scale …
Hazardous Waste Reduction Continuation,
2017
Virginia Commonwealth University
Hazardous Waste Reduction Continuation, J. Brian Morrell, Alex Alvarez, Adnan Qasem
Capstone Design Expo Posters
A silicone manufacturing process yields two-phase wastewater, of which the aqueous phase flashes at 2°C primarily due to hexamethyldisiloxane (HMDSO). To be classified as non-hazardous and immediately disposable, it must flash above 60°C. Project objectives entailed identifying a method and then designing a prototype for on-site aqueous phase treatment, removing enough HMDSO for non-hazardous disposal. The previous team’s proposal was gravity separation, NaCl extraction, and feeding through an activated carbon packed bed. Extraction proved ineffective, packed bed outlet samples flashed at 52°C, and HMDSO quantification methodology was incorrect. From titration, wastewater was determined to be 3.3 ± 0.2 wt.% aqueous …
Rapid, Diagnostic Test For Cardiac Ischemia,
2017
Virginia Commonwealth University
Rapid, Diagnostic Test For Cardiac Ischemia, Jose Gonzales, Abdelmagid Nasreldeen, Emerson Physioc, Julio Contreras, Evan Thoresen
Capstone Design Expo Posters
Current methods to detect cardiac ischemia rely on biomarkers such as troponin. Elevated levels of troponin are observed hours after the cardiac event. There is an unmet need for rapid diagnostic tests for cardiac ischemia, which utilizes recently discovered biomarkers. A VCU patented assay for cardiac ischemia employs the use of chemiluminescence to detect metabolic byproducts of xanthine oxidase activity. These byproducts are detectable minutes after the cardiac event. Early diagnosis of and response to cardiac events is beneficial for clinical decision-making; therefore, a point-of-care device within the emergency health setting is sought. The CLSE 203 project team designed and …
Development Of A Tabletop Soft Gel Encapsulation Machine,
2017
Virginia Commonwealth University
Development Of A Tabletop Soft Gel Encapsulation Machine, Brigitte Ha, Emily Miller, Haya Rizvi
Capstone Design Expo Posters
Currently, to test new formulations of gel capsules at Pfizer, they must use the large-scale machine that requires a minimum of 25 kg of gel melt and produce hundreds of capsules per run. Production at a smaller scale to enable rapid changeover for research and development is desired. The team’s goal was to achieve continuous production of sealed capsules with 80% fill capacity. Capsule sealing was the prime consideration. Preliminary trials using the existing system and heat transfer analysis indicated localized heating was necessary to promote capsule sealing. To provide localized heating, a brass wedge was designed based on the …
Fabricating Non-Close Packed Colloidal Monolayers For Ion Irradiation Templates,
2017
Cleveland State University
Fabricating Non-Close Packed Colloidal Monolayers For Ion Irradiation Templates, Nandini Padaraju
Undergraduate Research Posters 2017
Due to their unique properties, anisotropic nanoparticles are desirable components for future applications yet there are few processes capable of fabricating nanoparticle impregnated coatings for the manufacturing environment. Our work seeks to develop new masking techniques for the production of the templated substrates that will induce ordered nanoparticle films. Specifically, we are fabricating non-close packed colloidal monolayers onto silicon substrates, which then serve as the template for ion irradiation. The first steps to creating this monolayer are obtaining a spin-coated poly(vinyl alcohol) (PVA) thin film of ~200 nm and a close-packed colloidal monolayer using a peltier heater. We achieved a …
Influence Of Cross-Section Change During Directional Solidification On Dendrite Morphology, Macrosegregation And Defect Formation In Pb-6 Wt Sb Alloy,
2017
Cleveland State University
Influence Of Cross-Section Change During Directional Solidification On Dendrite Morphology, Macrosegregation And Defect Formation In Pb-6 Wt Sb Alloy, Claudine Lacdao
ETD Archive
The purpose of this research is to examine the dendrite array morphology, macrosegregation, and defect formation caused by the fluid flow at the abrupt cross-section changes during directional solidification of Pb-6% Sb alloy. Four 24-cm long cylindrical alloy samples were directionally solidified in graphite crucibles: two having a constant diameter (9-mm) grown at 10.4 and 63.1 μm s-1 , one having an abrupt cross-section decrease (from 12.7 to 6.35 mm) and one having an abrupt increase (from 6.35 to 12.7 mm) by pulling down the alloy containing cylindrical graphite crucibles from the upper hot-zone of a stationary vertical furnace into …
Sensor Technology Using Fluorescent Dyes,
2017
Virginia Commonwealth University
Sensor Technology Using Fluorescent Dyes, Rebecca Jarrell, Rashed Rashed, Joshua Petteway
Capstone Design Expo Posters
This project is concerned with the application of fluorescent dye technology for leak detection in pulp and paper recovery boiler systems in order to avoid a smelt / water explosion. The dyes’ property to absorb light of short wavelength and emit light of a longer wavelength (fluoresce) is what makes them a quintessential candidate for the desired sensor technology. The projected benefits of this technology pertain to cost-effectiveness and safety of recovery boiler operations.
For all purposes, the inert dye pyrenetetrasulfonic acid (PTSA) was used as a tracer agent. Multiple methods of experimental design were attempted to determine the reaction …
Method And Apparatus For Removal Of Phosphate From Wastewater Streams,
2017
Virginia Commonwealth University
Method And Apparatus For Removal Of Phosphate From Wastewater Streams, Steven Skeels, Arjun Subedi, Fred Williams
Capstone Design Expo Posters
Church and Dwight uses a phosphate-containing soap in their latex condom manufacturing process in Chesterfield County, VA. The wastewater streams from this process contain a concentration of phosphate that is over the county limit, costing $100,000/yr for non-optimized disposal. C&D has a need for an in-house method of phosphate removal which does not interfere with current manufacturing or wastewater treatment processes. The focus of the project was precipitation methodology as it is the most economically feasible option for these high concentrations of phosphate; more advanced technologies were considered for a potential final polishing step to remove any residual phosphate. The …
Development And Validation Of A Kinetic Model For Enzymatic Hydrolysis Using Candida Rugosa Lipase,
2017
University of North Dakota
Development And Validation Of A Kinetic Model For Enzymatic Hydrolysis Using Candida Rugosa Lipase, Ammar Jamie, Ali Alshami, Zuhair O. Maliabari, Muataz A. Ateih
Chemical Engineering Faculty Publications
Biochemical processing involving enzymatic catalysis of hydrolysis reactions of oils and fats must overcome significant technological barriers before the full benefits of the technology can be realized. Owing to their selectivity and mild reaction conditions, lipases are becoming increasingly important as biocatalysts provided that their kinetics and optimum reaction conditions are well-understood. In this study we report on the development and validation of a kinetic model for the degradation of oils using Candida rugosa lipase, from which a better understanding of the influence of different reaction conditions on hydrolysis kinetics is elucidated. Variations of reaction temperature, mixing speed, enzyme loading …
Evaluation Of Mass Transfer Rate In Column Of Small Lilsx Particles,
2017
Cleveland State University
Evaluation Of Mass Transfer Rate In Column Of Small Lilsx Particles, Mihikumar S. Patel
ETD Archive
Air separation using zeolite based adsorption processes is a widely-studied topic. Proper process modeling is a key requirement to simulate the process. Conventional process modeling for air separation is designed for large scale adsorption processes using a long cycle time. However, advanced technology now permits to use of a short cycle time using small particles, which significantly reduces the size of the process.
Traditional process models were mostly developed for large particles (dp > 1.5 mm). Typically, it is safely assumed that intra particle diffusion controls the rate of the process while axial dispersion has a much smaller effect. This is …
