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Fabrication And Analysis Of Variable Density Poly-(L)-Lactic Acid Fiber Scaffolds, N. W. Zaccor, C. J. Rivet, R. J. Gilbert 2011 Missouri University of Science and Technology

Fabrication And Analysis Of Variable Density Poly-(L)-Lactic Acid Fiber Scaffolds, N. W. Zaccor, C. J. Rivet, R. J. Gilbert

Chemical and Biochemical Engineering Faculty Research & Creative Works

Poly-L-lactic acid (PLLA) is an extensively studied synthetic polymer that has demonstrated utility as a scaffolding material. A common technique for the fabrication of PLLA scaffolds is electrospinning. The purpose of the present material study was to assess whether an electrospinning process could produce consistent and uniform PLLA scaffold densities. An 8% PLLA solution was made using a 1:1 chloroform: dichloromethane solution and was then run through an electrospinning apparatus. Samples were spun onto 4% PLLA films for 2- or 20-min. Scanning electron microscopy (SEM) was used for imaging the scaffolds. A nine-measurement data set was used for the assessment …


An Argument For The Importance Of Material Property Characterization Of Hydrogels, J. M. Zuidema, R. J. Gilbert 2011 Missouri University of Science and Technology

An Argument For The Importance Of Material Property Characterization Of Hydrogels, J. M. Zuidema, R. J. Gilbert

Chemical and Biochemical Engineering Faculty Research & Creative Works

Hydrogels are being fabricated for use in many tissue engineering applications. In order to advance the field, material properties must be characterized to determine the most desirable attributes. The data presented shows the importance of both surface charge and mechanical properties on dorsal root ganglia neurite extension. © 2011 IEEE.


Fabrication And Characterization Of A Hydrogel Containing Electrospun Fibers, C. J. Rivet, R. J. Gilbert 2011 Missouri University of Science and Technology

Fabrication And Characterization Of A Hydrogel Containing Electrospun Fibers, C. J. Rivet, R. J. Gilbert

Chemical and Biochemical Engineering Faculty Research & Creative Works

Electro spun an fibers hydrogels are two focal points of research within the biomaterial's community. The electrospinning process allows for fabrication of nanoscale, aligned topography and has been shown to direct cellular migration and outgrowth. Hydrogels exhibit benefits over traditional, rigid scaffolds in that they are injectable and can be tailored to mimic the mechanical properties of the surrounding tissue. Although both electro spun fibers and hydrogels display favorable characteristics for biomedical applications in vitro, there in vivo benefits are limited due to inherent deficiencies Therefore, to advance the field of biomaterials research, a composite material containing electro spun fibers …


Using Cerebrospinal Fluid For In Situ Fabrication Of Injectable Alginate Hydrogels For Spinal Cord Repair, C. A. McKay, R. J. Gilbert 2011 Missouri University of Science and Technology

Using Cerebrospinal Fluid For In Situ Fabrication Of Injectable Alginate Hydrogels For Spinal Cord Repair, C. A. Mckay, R. J. Gilbert

Chemical and Biochemical Engineering Faculty Research & Creative Works

Severe mechanical trauma of the spinal cord induces a secondary injury response that contributes to post injury cell death and the formation of barriers inhibitory to neuronal regeneration. It is believed that engineered scaffolds produce favorable results when they mimic the properties of the t issue that they are aiming to replicate. Alginate hydrogels have been shown to be beneficial in a number of biomaterial applications and this study shows that alginate hydrogels formed in the presence of an artificial cerebrospinal fluid are able to form hydrogels with mechanical properties similar to those exhibited by neural tissue in the CNS. …


Decreasing The Gelation Time Of Fibrin Hydrogels, C. D. Johnson, J. Zudiema, R. J. Gilbert 2011 Missouri University of Science and Technology

Decreasing The Gelation Time Of Fibrin Hydrogels, C. D. Johnson, J. Zudiema, R. J. Gilbert

Chemical and Biochemical Engineering Faculty Research & Creative Works

Spinal cord injury (SCI) is a debilitating problem that often results in paraplegia or quadriplegia. Fibrin hydrogels can be injected into the injured cavity and fill the irregular space. Current techniques require 60 minutes to form a hydrogel. The purpose of this study was to design a fibrin biomaterial that would solidify at a faster rate. By augmenting the existing fabrication procedure, a novel biomaterial was created that formed in 5-7 minutes but lost much of its mechanical stability. Further studies will be performed to improve the mechanical properties while maintaining the faster rate of formation observed here. © 2011 …


Aligned, Electrospun Topography For Use With External Stimulus Systems, S. G. Quallich, C. J. Rivet, R. J. Gilbert 2011 Missouri University of Science and Technology

Aligned, Electrospun Topography For Use With External Stimulus Systems, S. G. Quallich, C. J. Rivet, R. J. Gilbert

Chemical and Biochemical Engineering Faculty Research & Creative Works

Variations in fiber density, diameter, and orientation can be used to direct cell migration and guide neurite growth. The characterization of electro spun fibers is essential prior to conducting further research that utilizes electro spun scaffolds to control the magnitude and direction of cell migration and neurite growth. The goal of this study is to create highly aligned, electro spun fibers on poly-L-lactic acid (PLLA) films in parallel and perpendicular orientations to the long axis of rectangular cover slips. Fibers were electro spun into scaffolds and scanning electron microscopy (SEM) was used to characterize fiber density and orientation. The construction …


The Effect Of Adding Organic Polymers To Ca-Sr-Zn-Si Glass Polyalkenoate Cement, A. Coughlan, N. M. Cummins, A. W. Wren, Mark R. Towler 2011 Missouri University of Science and Technology

The Effect Of Adding Organic Polymers To Ca-Sr-Zn-Si Glass Polyalkenoate Cement, A. Coughlan, N. M. Cummins, A. W. Wren, Mark R. Towler

Chemical and Biochemical Engineering Faculty Research & Creative Works

To conclude, the addition of polymers to GPCs resulted in little change to the Tw and Ts, however the compressive strength was found to decrease slightly. ASAP tests revealed that the cements may undergo some structural changes as a result of these additions. In the future perhaps the addition of organic polymers suspended in the liquid phase as part of the cement may yield improved results in this type of study. © 2011 IEEE.


Aluminium-Free Glass Polyalkenoate Spinal Cements, A. W. Wren, N. M. Cummins, Mark R. Towler 2011 Missouri University of Science and Technology

Aluminium-Free Glass Polyalkenoate Spinal Cements, A. W. Wren, N. M. Cummins, Mark R. Towler

Chemical and Biochemical Engineering Faculty Research & Creative Works

Addition of Yitanium increased the Wt & St and the sf strength of these cements compared to the control (BT 101). © 2011 IEEE.


Determination Of Ibuprofen Isotherm Using Supercritical Fluid Chromatography, Loi Ho 2011 University of South Florida

Determination Of Ibuprofen Isotherm Using Supercritical Fluid Chromatography, Loi Ho

USF Tampa Graduate Theses and Dissertations

Chromatography is widely used to determine physiochemical properties data including adsorption isotherm. In the separation of enantiomers through sorptive processes, supercritical fluids allow efficient and green alternatives to liquid solvent based systems. The isotherm information is vital in the development of operating policies and design of preparative chromatographic or moving bed separation schemes. Determination of sorption isotherms from experimental chromatographic elution data is automated and compared with different chromatogram model. Procedures were developed and validated for separation of R- and S- ibuprofen with supercritical 〖CO〗_2 and ethanol mixture as the mobile phase over a chiral stationary phase. The isotherms for …


Failing Drop Co2 Deposition (Desublimation) Heat Exchanger For The Cryogenic Carbon Capture Process, David William James 2011 Brigham Young University - Provo

Failing Drop Co2 Deposition (Desublimation) Heat Exchanger For The Cryogenic Carbon Capture Process, David William James

Theses and Dissertations

Cryogenic carbon capture removes CO2 and other pollutants from flue and waste stream gases produced from the combustion of fossil fuels such as coal, natural gas, and oil and the production of cement. A transient, 1-dimensional numerical model was developed to study the temperature profile within a counter-current surface CO2 desublimation-falling liquid or solid heat exchanger. Effects of desublimation heat and mass transfer as well as convective and conductive heat transfer relationships were taken into account. Experiments show that CO2 can be captured on a falling spherical particle when appropriate column operating conditions are met.


A Direct Sampling Particle Filter From Approximate Conditional Density Function Supported On Constrained State Space, Sridhar Ungarala 2011 Cleveland State University

A Direct Sampling Particle Filter From Approximate Conditional Density Function Supported On Constrained State Space, Sridhar Ungarala

Chemical & Biomedical Engineering Faculty Publications

Constraints on the state vector must be taken into account in the state estimation problem. Recently, acceptance/rejection and projection methods are proposed in the particle filter framework for constraining the particles. A weighted least squares formulation is used for constraining samples in unscented and ensemble Kalman filters. In this paper, direct sampling from an approximate conditional probability density function (pdf) is proposed. It is obtained by approximating the a priori pdf as a Gaussian. The support of the conditional density is a subset of the intersection of two supports, the 3-sigma bounds of the priori Gaussian and the constrained state …


Temperature Control Device With A Flexible Temperature Control Surface, Phil D. Belgrader, Christopher G. Cooney, Robert D. Doebler, Anna D. Hickerson, Bruce D. Irvine, Ali D. Nadim, James D. Sterling, Reza Miraghale 2011 Missouri University of Science and Technology

Temperature Control Device With A Flexible Temperature Control Surface, Phil D. Belgrader, Christopher G. Cooney, Robert D. Doebler, Anna D. Hickerson, Bruce D. Irvine, Ali D. Nadim, James D. Sterling, Reza Miraghale

Business and Information Technology Faculty Research & Creative Works

A device for controlling temperature in a reaction chamber is disclosed. The device comprises: a bladder assembly comprising a housing dimensioned to hold a reaction chamber disposed within an interior Volume of the housing; and a first temperature-control bladder disposed within the housing, the first temperature-control bladder is configured to receive a temperature-control fluid and comprises a flexible, heat conductive Surface that comes in contact with at least a portion of an exterior surface of the reaction chamber after receiving the temperature-control fluid. Also disclosed are a bladder thermal cycler, a temperature-control bladder assembly and methods for producing a thermal …


Microstructure And Transport Properties Of Porous Li-Ion Electrodes, David E. Stephenson 2011 Brigham Young University - Provo

Microstructure And Transport Properties Of Porous Li-Ion Electrodes, David E. Stephenson

Theses and Dissertations

The goal of this work is to understand the relationships between electrode microstructure and mass transport resistances. One can use this information to predict cell performance from fundamental principles. This work includes new types of particle-scale 3D models for correlating and predicting the effects of electrode microstructure on both ionic and electronic transport. The 3D models imitate the sub-micrometer-scale arrangement of active material particles, carbon, binder, and pores and use FIB/SEM images as a basis for parameterization. The 3D models are based respectively on the statistical mechanics techniques of molecular dynamics and Monte Carlo. The approach closely related to molecular …


Applied Control Strategies At A Cogeneration Plant, Joseph William Burns 2011 University of Connecticut

Applied Control Strategies At A Cogeneration Plant, Joseph William Burns

Master's Theses

The purpose of this paper is to demonstrate the effectiveness of “classical strategies for dynamic control” on authentic cogeneration processes. These strategies are applied to several processes at the University of Connecticut’s cogeneration plant. Case studies of their applications are presented in this paper. Strategies that are applied include the following:

1) The classical SISO feedback structure

2) The First Order Plus Dead Time (FOPDT) process model

3) The Internal Model Control (IMC) correlations for PI controller tuning

4) Static feed forward with feedback trim

5) Cascade Control


Determining A Method For Rendering Low Cost Cdse(Zns) Core(Shell) Quantum Dots Aqueous Soluble Via Amphiphilic Polymer Wrapping, Patrick McBride 2011 California Polytechnic State University - San Luis Obispo

Determining A Method For Rendering Low Cost Cdse(Zns) Core(Shell) Quantum Dots Aqueous Soluble Via Amphiphilic Polymer Wrapping, Patrick Mcbride

Materials Engineering

Herein is described the procedure of two amphiphilic polymer wrapping techniques that may be employed for obtaining aqueous soluble quantum dots (QDs) for use in biological fluorescent imaging applications. The advent of QDs has led to new nanoscale fluorescent materials that exhibit unparalleled quantum yields (QYs), high resistance to photobleaching, tunable emissions, and
absorption over a large optical range. However, the QD synthesis employed here at Cal Poly to obtain bright, photostable CdSe(ZnS) core(shell) QDs involves the use of organic solvents and surfactants, leading to hydrophobic QDs. Since all of biology relies on aqueous solubility, this hydrophobicity creates a major …


The Design And Manufacture Of A Microfluidic Reactor For Synthesis Of Cadmium Selenide Quantum Dots Using Silicon And Glass Substrates, Peter Gonsalves 2011 California Polytechnic State University - San Luis Obispo

The Design And Manufacture Of A Microfluidic Reactor For Synthesis Of Cadmium Selenide Quantum Dots Using Silicon And Glass Substrates, Peter Gonsalves

Materials Engineering

A microfluidic reactor for synthesizing cadmium selenide (CdSe) quantum dots (QDs) was synthesized out of silicon and Pyrex glass. Microfabrication techniques were used to etch the channels into the silicon wafer. Holes were wet-drilled into Pyrex glass using a diamond-tip drill bit. The Pyrex wafer was aligned to the etched silicon wafer and both were anodically bonded to complete the microfluidic reactor. Conditions for anodic bonding were created by exposing the stacked substrates to 300V at ~350oC under 5.46N of force.  Bulk CdSe solution was mixed at room temperature and treated as a single injection. The syringe containing …


Rayleigh Test Apparatus Design Report, Josef Duller, Owen Raybould, James Nicovich 2011 California Polytechnic State University - San Luis Obispo

Rayleigh Test Apparatus Design Report, Josef Duller, Owen Raybould, James Nicovich

Mechanical Engineering

The Rayleigh Test Apparatus is a device that will be used to test the thermodynamic properties of Nitrous Oxide to assess the feasibility of using this fluid as a coolant for a hybrid rocket aero spike. The aero spike is intended to redirect the propulsion flow as it leaves the engine to create a more efficient flow pattern at low and high altitudes. However, there are issues of overheating which leads to melting of the aero spike. For this reason, the use of nitrous oxide (N2O) as a coolant is being explored. N20 is being considered because it is already …


Effect Of Dry Particle Coating On The Properties Of Cohesive Pharmaceutical Powders, Lauren Elizabeth Beach 2011 New Jersey Institute of Technology

Effect Of Dry Particle Coating On The Properties Of Cohesive Pharmaceutical Powders, Lauren Elizabeth Beach

Dissertations

Engineered particles, which have undergone surface modification via dry coating, have been previously shown to have improved flow and handling properties. The improvements in these properties can be applied and are very useful for a number of industrial applications, in this case the pharmaceutical industry. This work investigates the effect of dry particle coating to improve the flowability of cohesive active pharmaceutical ingredient (API) powders and their blends. Improving the flow properties of cohesive API powders can significantly improve their handling and subsequent use for pharmaceutical processes such as formulation and manufacturing processing operations. Although it has been shown that …


Electrodeless Electro Hydrodynamic Printing Of Personalized Drug Dosages, Ezinwa Okeoma Elele 2011 New Jersey Institute of Technology

Electrodeless Electro Hydrodynamic Printing Of Personalized Drug Dosages, Ezinwa Okeoma Elele

Dissertations

There is compelling evidence that variability in drug efficacy in individuals depends on their genetic fingerprints. These observations have given rise to the concept of personalized therapy whose ultimate goal is to develop medicinal agents designed for each niche of the population and individual patients according to their genetic background. The drawback in current pharmaceutical technologies is that most processes are designed to target large population and are unable to meet the demand of small-scale manufacturing of tailored therapeutics with diverse range of physical properties. One of the major challenges lie in developing efficient and cost effective methods of manufacturing …


Deagglomeration And Mixing Via The Rapid Expansion Of High Pressure And Supercritical Suspensions, Daniel To 2011 New Jersey Institute of Technology

Deagglomeration And Mixing Via The Rapid Expansion Of High Pressure And Supercritical Suspensions, Daniel To

Dissertations

Nano-materials are the focus of many research activities due to the desirable properties imparted from their small grain size and high interfacial surface area. However, these materials are highly cohesive powders in the dry state and typically form large agglomerates, leading to a diminished surface area or even grain growth, which minimizes the effectiveness of these nanomaterials. This dissertation addresses the issue of mixing nanopowders constituents by deagglomerating them and achieving simultaneous mixing so that even after inevitable reagglomeration, the effectiveness of large interfacial surface area may be preserved.

Nano-particle mixtures were prepared using the environmentally benign dry mixing methods …


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