Design Of Natural Rubber Extraction From Tks Dandelion,
2017
The University of Akron
Design Of Natural Rubber Extraction From Tks Dandelion, Jehad S. Alrawajfeh, Trevor Cody, Jason Pogozelski
Williams Honors College, Honors Research Projects
A design was developed for a controlled environment agriculture 3D greenhouse to grow and harvest TKS dandelions, as well as a processing plant to extract natural rubber and inulin from the roots. The design capacity was scaled for both pilot- and full-scale production: 100 and 100,000 tonnes of natural rubber per year, respectively. The byproducts of the process were dandelion greens, inulin, cellulose, and glucose; all of these except for cellulose were able to be valorized. The greenhouse was designed based on existing 3D hydroponic growing environments, and the extraction process was designed based on the original TKS dandelion extraction …
Role Of Salt On Coating Failure,
2017
The University of Akron
Role Of Salt On Coating Failure, Kyle Krause
Williams Honors College, Honors Research Projects
It is important to understand the role of salt in the coating failure because it may influence the coating degradation mechanism that is related to coating performance. This project will study the role of salt on two types of organic coatings under two different immersion environment. The environment selected was 3.5% by weight sodium chloride solution and deionized (DI) water. The two coatings were Neorez 1080 (a waterborne polyurethane) and Joncryl 587-AC (a solvent borne polyurethane). Each coating was tested in each environment using electrochemical impedance spectroscopy (EIS) measurement which presented a total of four data sets. The equivalent circuit …
Characterization Of Polyurethane For Use As Substrate In Nanofiber Sensor For Biomedical Applications,
2017
The University of Akron
Characterization Of Polyurethane For Use As Substrate In Nanofiber Sensor For Biomedical Applications, Megan Theaker
Williams Honors College, Honors Research Projects
The purpose of this project is to begin to determine properties of polymer nanocomposites that make a suitable substrate for nanofiber sensors. In this work, sensitivity of a sodium ion selective sensor constructed with polyurethane was used as a benchmark for comparison with sensors constructed with nylon-6. The sensors were characterized using contact angle and chronoamperometry. Using an ANOVA analysis, the results showed that the multi-walled carbon nanotube type was a significant factor on sensor response both with and without additional functionalization of the polymer by calixarene. The weight percentage of polyurethane in the electrospinning solution was also statistically significant …
Stability And Retention Enhancement Of Low Fouling Polystyrene Sulfonic Acid (Pss) And Polyethylene Glycol (Peg) Blend Films With Silane Coupling Agents,
2017
University of Akron
Stability And Retention Enhancement Of Low Fouling Polystyrene Sulfonic Acid (Pss) And Polyethylene Glycol (Peg) Blend Films With Silane Coupling Agents, Sean Stybel
Williams Honors College, Honors Research Projects
The goal of this research project was to apply silane coupling agents for enhanced stability and retention of a low fouling polymeric coating to an inorganic substrate. A blend of polystyrene sulfonic acid (PSS) and polyethylene glycol (PEG) was crosslinked in order to create a low fouling film. The film was prepared by spin coating a PSS-PEG solution on an inorganic substrate coated with a layer of a silane coupling agent (3-aminopropyltriethoxysilane, APTES, solution), followed by thermal curing. The research was limited to less than one year and only used lab equipment available at the University of Akron. Stability and …
Platinum-Rhodium Alloy Electrocatalyst Activities In The Methanol Oxidation Reaction,
2017
The University of Akron
Platinum-Rhodium Alloy Electrocatalyst Activities In The Methanol Oxidation Reaction, William R. Sandorf
Williams Honors College, Honors Research Projects
This study evaluates the electrochemical activity of several compositions of platinum-rhodium alloys on carbon support to identify potential replacements for the expensive platinum electrocatalysts currently used in direct methanol fuel cells (DMFCs). The electrochemical active surface areas (ECSAs) of each sample were determined using cyclic voltammetry (CV) in a 0.5 M H2SO4 solution to normalize CV currents generated in the methanol oxidation reaction (MOR). The activity of five compositions was tested; Pt3Rh, Pt2Rh, PtRh, Pt2Rh, and Pt3Rh. 100 mg of each catalyst was synthesized at 10% by weight platinum …
Polarized Elastic Nanofiber Tubular Mat,
2017
The University of Akron
Polarized Elastic Nanofiber Tubular Mat, Elizabeth Moore
Williams Honors College, Honors Research Projects
Abstract
The scope of this project is to find the optimal parameters to polarize a nanofiber membrane in a tubular geometry as spun on a metal spring. Several different recipes were tested for electrospinning and polarization. Some recipes proved unable to be electrospun. A polymer solution with 12 weight percent resulted in good fiber formation. The results from the polarization attempts proved inconclusive as the electrostatic surface charge did not appear to change. The readings were taken with an electrostatic field meter. As a future experiment a new measurement technique with a Faraday cage will be utilized.
Corrosion Resistance Of Silane Coatings On Aluminum And Magnesium Alloys,
2017
The University of Akron
Corrosion Resistance Of Silane Coatings On Aluminum And Magnesium Alloys, John Demopoulos
Williams Honors College, Honors Research Projects
The purpose of this project was to increase the corrosion resistance of aluminum and magnesium alloys by coating the coupons with a silane on the surface. Four different silanes: 3-aminopropyltriethoxysilane (APTES), Bis(triethoxysilylpropyl)amine (Bis), (Heptadecafluoro-1,1,2,2-tetrahydrodecyl)trichlorosilane (FTS), and (Heptadecafluoro-1,1,2,2-tetrahydrodecyl)triethoxysilane (non Cl FTS) will be used and compared to see which silane would give the best corrosion resistance. Each silane solution was coated on the coupons by using a solution method in which the coupon was submerged for 24 hours and then thermally cured for another 24 hours. Once the coating was applied, the water contact angle and the thickness of the coating …
Chemical Modification Of Crumb Rubber To Increase Its Bonding With Concrete,
2017
The University of Akron
Chemical Modification Of Crumb Rubber To Increase Its Bonding With Concrete, Mary T. Mccannon, Kendall J. Sweitzer
Williams Honors College, Honors Research Projects
The hydrophilicity of crumb rubber was increased with wet chemical modification and added to concrete to increase its adhesion with concrete, consequently the compressive strength relative to that of concrete with untreated rubber. Other modification methods were tested on crumb rubber and rubber sheets to yield an increase in hydrophilicity. Certain tests were less reliable for powder testing or tedious and time consuming and concrete materials and rubber may not be homogeneous.
For wet chemical modification, several approaches were attempted. First, crumb rubber was soaked in 5% sodium hydroxide, 5% potassium permanganate and saturated sodium bisulfite, tested for hydrophilicity using …
Titanium Nanoparticles Synthesized Via Hydrothermal Reaction,
2017
The University of Akron
Titanium Nanoparticles Synthesized Via Hydrothermal Reaction, Kyle W. Hodge
Williams Honors College, Honors Research Projects
The main goal of this project was to determine if increasing the time and temperature of a hydrothermally reacted titanium nanotube would increase the size of the nanotubes. Five experiments were conducted while varying the time and temperature of the reaction: 120°C for 24 hours, 120°C for 48 hours, 150°C for 24 hours, 180°C for 24 hours, and 180°C for 48 hours. Following the synthesis of all of these samples x-ray diffraction (XRD), scanning electron microscopy (SEM), and energy-dispersive spectroscopy (EDS) analyses were performed. The XRD analysis revealed anatase titanium nanoparticles formed in the 120°C and 150°C samples, this could …
A Miniaturized Spectrophotometric In Situ Ph Sensor For Seawater,
2017
The University Of Montana
A Miniaturized Spectrophotometric In Situ Ph Sensor For Seawater, Reuben C. Darlington
Graduate Student Theses, Dissertations, & Professional Papers
Since the Industrial Revolution, the world's oceans have absorbed increasing amounts of CO2 and the resultant changes to the marine carbonate chemical system have reduced the pH by > 0.1 units (~ 30%) in surface waters. This acidification of the oceans has many far reaching impacts on marine life and there is great need of quality instrumentation to assess and follow the changing carbonate system. This MIS project aims to develop a low cost pH sensor with high precision and accuracy for open sea measurements with special emphasis on reduced size and cost. Design effort is based on the commercially available …
Study Potential Of Indigenous Pseudomonas Aeruginosa And Bacillus Subtilis In Bioremediation Of Diesel-Contaminated Water,
2017
Brigham Young University - Provo
Study Potential Of Indigenous Pseudomonas Aeruginosa And Bacillus Subtilis In Bioremediation Of Diesel-Contaminated Water, Mohammad-Saeed Safdari, Hamid-Reza Kariminia, Zahra Ghobadi Nejad, Thomas H. Fletcher
Faculty Publications
Petroleum products which are used in a wide variety of industries as energy sources and raw materials have become a major concern in pollution of terrestrial and marine environments. The purpose of this study was to assess the potential of indigenous microbial isolates for degradation of diesel fuel. Two most proficient bacterial strains among five isolated strains from polluted soil of an industrial refinery were studied. The isolates then were identified as Pseudomonas aeruginosa and Bacillus subtilis using biochemical tests and 16S rRNA gene sequence analyses. P. aeruginosa showed higher biodegradation efficiency than B. subtilis in shaking flask containing diesel-contaminated …
Improving Performance Of Au/Ts-1 Catalyst For Propylene Epoxidation,
2017
University of Alabama in Huntsville
Improving Performance Of Au/Ts-1 Catalyst For Propylene Epoxidation, Jacob Kunisch, Zheng Lu
Summer Community of Scholars Posters (RCEU and HCR Combined Programs)
No abstract provided.
Purification Of Human Hematopoietic Prostaglandin D-Synthase,
2017
University of Alabama in Huntsville
Purification Of Human Hematopoietic Prostaglandin D-Synthase, Katherine Peffen
Summer Community of Scholars Posters (RCEU and HCR Combined Programs)
No abstract provided.
Heat Transfer Analysis In A Paddle Reactor For Biomass Fast Pyrolyis,
2017
Michigan Technological University
Heat Transfer Analysis In A Paddle Reactor For Biomass Fast Pyrolyis, Ankith Ullal
Dissertations, Master's Theses and Master's Reports
Heat transfer analysis was performed on a novel auger reactor for biomass fast pyrolysis. As part of this analysis, correlations for specific heat capacity and heat transfer coefficients for biomass (sawdust) and sand (used as heat transfer medium) were developed. For sand, the heat transfer coefficient followed a power law distribution with reactor fill level and temperature. For raw biomass, the heat transfer coefficient also showed similar dependence on fill level, but was independent of temperature up to 300°C. These correlations were used in a one dimensional heat transfer model developed to calculate the heating time and heating rate of …
Detecting Overpressure Zones By Using Model Based Inversion In Kupe Field, New Zealand,
2017
Michigan Technological University
Detecting Overpressure Zones By Using Model Based Inversion In Kupe Field, New Zealand, Timucin Cakir
Dissertations, Master's Theses and Master's Reports
Overpressure is a significant parameter during a drilling process in oil exploration. This phenomenon happens when pore pressure exceeds the limit of hydrostatic pressure in a formation and causes drastic hazards such as blow outs while drilling. This thesis focuses on the determination of possible overpressure areas and studies at three wells in Kupe Field, which is considered to be a natural-gas field in Taranaki Basin. In an effort to identify potential overpressure zones at the Kupe Field, acoustic impedance responses of 3D seismic data for three wells, along with their well log responses were evaluated.
Seismic inversion plays an …
Controlling Properties Of Agglomerates For Chemical Processes,
2017
Michigan Technological University
Controlling Properties Of Agglomerates For Chemical Processes, Joseph A. Halt
Dissertations, Master's Theses and Master's Reports
Iron ore pellets are hard spheres made from powdered ore and binders. Pellets are used to make iron, mainly in blast furnaces. Around the time that the pelletizing process was developed, starch was proposed as a binder because it’s viscous, adheres well to iron oxides, does not contaminate pellets and is relatively cheap. In practice, however, starch leads to weak pellets with rough surfaces – these increase the amount of dust generated within process equipment and during pellet shipping and handling. Thus, even though the usual binder (bentonite clay) contaminates pellets, pelletizers prefer it to starch or other organics.
This …
Surface Enabled Lab-On-A-Chip (Loc) Device For Protein Detection And Separation,
2017
Michigan Technological University
Surface Enabled Lab-On-A-Chip (Loc) Device For Protein Detection And Separation, Zhichao Wang
Dissertations, Master's Theses and Master's Reports
Sensitive and selective chemical/biological detection/analysis for proteins is essential for applications such as disease diagnosis, species phenotype identification, product quality control, and sample examination. Lab-on-a-chip (LOC) device provides advantages of fast analysis, reduced amount of sample requirements, and low cost, to magnificently facilitate protein detection research. Isoelectric focusing (IEF) is a strong and reliable electrophoretic technique capable of discerning proteins from complex mixtures based on the isoelectric point (pI) differences. It has experienced plenty of fruitful developments during previous decades which has given it the capability of performing with highly robust and reproducible analysis. This progress has made IEF devices …
Platinum Nanoparticles-Cobalt Oxide Nanostructures As Efficient Binary Catalyst For Ethylene Glycol Electro-Oxidation,
2017
The British University in Egypt
Platinum Nanoparticles-Cobalt Oxide Nanostructures As Efficient Binary Catalyst For Ethylene Glycol Electro-Oxidation, Ghada El-Nowihy
Chemical Engineering
An enhanced electrocatalytic activity towards ethylene glycol oxidation reaction (EGO) in alkaline medium is observed at a glassy carbon (GC) electrode modified with a nanoparticle-based binary catalyst composed of Pt (nano-Pt) and cobalt oxide (nano-CoOx). The electrocatalytic activity of the modified electrodes towards EGO depends on the loading level as well as the composition of the catalyst layer atop the GC electrode surface. Several techniques including cyclic voltammetry (CV), field-emission scanning electron microscopy (FE-SEM) and energy dispersive X-ray spectroscopy (EDS) are used to address the catalytic activity of the proposed catalyst and to reveal their surface morphology and composition, respectively. …
Use Of Natural Ores As Oxygen Carriers In Chemical Looping Combustion: A Review,
2017
University of Nebraska-Lincoln
Use Of Natural Ores As Oxygen Carriers In Chemical Looping Combustion: A Review, Michael J. Matzen, Jessica Pinkerton, Xiaomeng Wang, Yaşar Demirel
Department of Chemical and Biomolecular Engineering: Faculty Publications
Chemical looping combustion (CLC) has gained considerable ground in energy production due to its inherent carbon capture with a minimal energy penalty. The choice of metal oxide used as an oxygen carrier (OC) in CLC has a substantial weight on the overall efficiency of energy production as well as the ultimate cost per MW. While much work has gone into manufacturing synthetic OCs with high fuel conversions, harsh operating conditions and process limitations cause some unavoidable loss of the oxygen carrier. With low production costs and minimal conditioning required, natural ores have grown in interest as cheap alternative oxygen carriers. …
Effects Of Fillers On The Properties Of Polypropylene For Fused Deposition Modeling-Based 3d Printing Technique,
2017
Faculty of Engineering
Effects Of Fillers On The Properties Of Polypropylene For Fused Deposition Modeling-Based 3d Printing Technique, Chomphoonut Buaprommee
Chulalongkorn University Theses and Dissertations (Chula ETD)
The objective of this research was to study the influence of filler contents and filler types on the tensile properties and shrinkage behavior of polypropylene composites to develop the properties of polypropylene (PP) to be a raw material for fused deposition modeling (FDM) technique. PP was compounded with three fillers, i.e., talc and milled glass fiber with aspect ratio 5.4 and 15.4, at various contents of 10, 20 and 30 wt%. The test specimens were fabricated by FDM and injection molding techniques for tensile and shrinkage tests. The findings showed that the increase of filler contents into PP matrix tended …
