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Articles 3121 - 3150 of 14130
Full-Text Articles in Engineering
Amino-Polymer For Co2 Capture By Vacuum Swing Adsorption, Sean Billy
Amino-Polymer For Co2 Capture By Vacuum Swing Adsorption, Sean Billy
Williams Honors College, Honors Research Projects
The applications of sorbent compounds in conjunction with amines and other additives is an innovative method at combating CO2 pollution. An ideal solution would use an amine sorbent to trap the high levels of absorbed CO2 with a low binding energy (less than 45 kJ/mol) and subsequently release them into a stored vessel at ambient temperature with a vacuum swing adsorption system. Attempts at finding a best mixture will be conducted through the usage of a vacuum swing system, utilizing a bed syringe containing the sorbent mix and a vacuum syringe to pull on and subsequently release the CO2 into …
Scale-Up Of Flow-Electrode Capacitive Deionization Method For Hard Water Softening, Noah Henry
Scale-Up Of Flow-Electrode Capacitive Deionization Method For Hard Water Softening, Noah Henry
Williams Honors College, Honors Research Projects
This study’s purpose is to further document a capacitive deionization design that could be capable of purifying H2O at a household scale where clean water is otherwise unobtainable in applicable regions of the world. The hypothesis behind this study was continuously larger scaled electrochemical cell-units would increase their water softening capabilities in sustainable fashion. The trend at which performance will scale is currently unknown. The units studied were constructed using graphite plates, anion exchange membranes, cation exchange membranes, and Teflon channels. Three streams, two being CaCl2 solutions in DI H2O (one being concentrated with CaCl …
Wetting Transition On 3d-Printed Surfaces, Isabelle Moryan
Wetting Transition On 3d-Printed Surfaces, Isabelle Moryan
Williams Honors College, Honors Research Projects
Taking the previous research conducted, this project aims to further the study and research of the wettability of surfaces. Surface features and types are important factors to their wettability. The geometric properties of a surface can make it more hydrophobic and hydrophilic. Extreme cases of hydrophobic and hydrophilic surfaces lead to water repulsion or water absorption, even under extreme conditions. The goal of this project is to gain further insight on how fabricated 3D-printed featured surfaces and examine the wetting transition on these surfaces. In particular, cylindrical pillars will be studied with varied pillar spacing, height and diameter. In addition, …
Application Of Sla 3d Printing For Polymers, Taylor Wilson
Application Of Sla 3d Printing For Polymers, Taylor Wilson
Williams Honors College, Honors Research Projects
Stereolithography is a type of 3D printing that allows liquid photopolymer resin to be cured into layers that make up a 3D object. Creation of such resins for these purposes can require a significant amount of time to test and develop, and commercial resins also require some amount of testing for printer settings before use. This paper reviews how stereolithography works, the materials used, and experimentation done to compare the resin properties to the determined curing times. Using several commercially available resins, varying base exposure and layer exposure times were used to determine the lowest possible curing time that gave …
Enzymatic Treatment, Gluten Reduction, And Production Of Celiac Safe Gluten Removed Beer, Alyssa Baumann, Calvin Baumann, Noah Alfman
Enzymatic Treatment, Gluten Reduction, And Production Of Celiac Safe Gluten Removed Beer, Alyssa Baumann, Calvin Baumann, Noah Alfman
Williams Honors College, Honors Research Projects
Celiac Disease affects many people across the world with the only solution being a life-long abstinence from gluten intake. Although beers may be considered “gluten-free”, some still contain remains of gluten which can be harmful to those with Celiac Disease. There exists a large market for high-quality, celiac-safe beer. The primary approach for producing gluten-free beer is enzymatic treatment. The first objective of the project is to measure the natural gluten reduction in the beer brewing process versus the gluten reduction within enzymatic treated beer. The second objective of the project is to create celiac-safe beer through experimentation of the …
Amine-Functionalized Interpenetrating Polymer Networks For Co2 Capture, James Wills
Amine-Functionalized Interpenetrating Polymer Networks For Co2 Capture, James Wills
Williams Honors College, Honors Research Projects
The research performed looked to advance the studies of vacuum swing absorption of Carbon Dioxide to help combat global climate change issues. The focus of the project was to create an anime-polymer sorbent that will weakly absorb and desorb CO2. The sorbent must be durable and be able to withstand multiple uses. The creation of a porous polymer matrix aided in the amines' ability to absorb CO2. Created samples underwent several qualitative and quantitative tests to determine their usefulness as an industrial sorbent. Infrared spectroscopy was used to study the effectiveness of the amine sorbents. Studying the changes in the …
Retention And Stability Of Polystyrene Sulfonic Acid And Polyethylene Glycol Anti- Fouling Films With 3-Aminopropyltriethoxysilane Coupling Agent, Brian Cameron
Williams Honors College, Honors Research Projects
Fouling is a process where particles, proteins, or microorganisms will accumulate onto a material [2]. This can lead to biofilms in medical implants, which can trap and create drug resistant bacteria [5]. Due to this, the study and creation of anti-fouling polymeric films that is stable in aqueous environments is essential. The goal of this study is to utilize APTES to retain the already studied PSS-PEG anti-fouling films. The films that are created is a thermally crosslinked network of the polystyrene sulfonic acid (PSS) and polyethylene glycol (PEG) with differing mass fractions (75- 25 and 55-45 PSS-PEG). To retain the …
A Solid-State Fermentation Scale-Up Of Scopulariopsis Brevicaulis, Timothy Hudak
A Solid-State Fermentation Scale-Up Of Scopulariopsis Brevicaulis, Timothy Hudak
Williams Honors College, Honors Research Projects
Publication to be delayed until October 2023
Recycled Printer Filament, Charlotte Hyland, Troy D. Molinar
Recycled Printer Filament, Charlotte Hyland, Troy D. Molinar
Williams Honors College, Honors Research Projects
The purpose of this research is to examine the effects of recycling PLA filament for 3D printing on its material properties. After examining these effects, PLA and carbon fiber additives were mixed with recycled PLA pellets in different ratios to attempt to regain material properties lost in the recycling process. To complete these findings, an experiment was design and executed.
The research found that tensile strength during multiple iterations of recycling remained mostly unaffected, however, the strain degraded exponentially. In the PLA additive study, high ratios of PLA additive were able to increase the strength and strain properties of the …
Extraction Of Melanin From Black Knot Fungus: Optimization And Applications, Amara Davis
Extraction Of Melanin From Black Knot Fungus: Optimization And Applications, Amara Davis
Williams Honors College, Honors Research Projects
The goal of this research project was to optimize the extraction of melanin from black knot fungus and to analyze possible applications of the extracted melanin. An extraction method that was previously created was examined for possible improvements. Improvements that were studied include the elimination of steps in the extraction process while obtaining the same quality of product, examining options for machinery that could be used to increase production rate when moved to a production plant setting, and optimize the concentrations of the raw materials that are used in the extraction for possible reduction of cost without compromising yield or …
Retaining Thermoresponsive Poly(Vinyl Methyl Ether) To Cellulose Via (3-Aminopropyl)Triethoxylsilane Network, Grace Tolhurst
Retaining Thermoresponsive Poly(Vinyl Methyl Ether) To Cellulose Via (3-Aminopropyl)Triethoxylsilane Network, Grace Tolhurst
Williams Honors College, Honors Research Projects
Stimuli-responsive supports and devices that are fabricated from inexpensive materials are attractive candidates for a variety of applications, such as environmental protection, and regenerative medicine. Poly(vinyl methyl ether) (PVME), a thermoresponsive polymer (TRP), has recently been used as thermoresponsive cell culture supports for cell growth/proliferation followed with cell/cell sheet harvesting by simply switching temperature. Cellulose is an attractive candidate to replace glass/silicone supports as it is inexpensive and environmentally friendly. This project focuses on retaining PVME to the cellulose membrane via 3-aminopropyltriethoxysilane (APTES) network to generate TR membranes and flexible liners that can be incorporated into bioreactors for producing cells …
Mimicking The Namib Desert Beetle With Hydrophilic And Hydrophobic Surfaces, Tyler Bracewell
Mimicking The Namib Desert Beetle With Hydrophilic And Hydrophobic Surfaces, Tyler Bracewell
Williams Honors College, Honors Research Projects
The Namib Desert beetle, Stenocara gracilipes, condenses fog that rolls in off the west coast of Namibia to provide itself with the water it needs for the day. By lifting its abdomen into the air to collect the water vapor, it condenses on hydrophilic bumps that are about 500μm in diameter and are spaced apart about 500-1500μm. Once the water reaches a critical size, the droplet rolls off the hydrophilic bump and onto the flat hydrophobic surface of the elytra. Since the beetle is angled with its abdomen in the air, the water rolls down to its mouth. A …
Repurposing Human Α-Defensin 6, An Antimicrobial Peptide, As A Beta Amyloid Inhibitor, Eleanor Plaster
Repurposing Human Α-Defensin 6, An Antimicrobial Peptide, As A Beta Amyloid Inhibitor, Eleanor Plaster
Williams Honors College, Honors Research Projects
Amyloid aggregation and microbial infection have been identified as the two main pathological risk factors that can result in amyloid diseases such as Alzheimer’s disease (AD), type II diabetes, and Parkinson’s disease. These two risk factors have been well studied separately, however only targeting one of these risk factors has shown to not be successful in preclinical trials since amyloid diseases are multifactorial. In this study, a new approach has been proposed to determine the effects of an antimicrobial and anti-amyloid aggregation approach by looking at the inhibition abilities of a heterocomplex of human α-defensin 6 (HD-6), whose secondary structure …
Design Project: 3d Printer/Injection Molder Hybrid, Lee Paolucci, Luke Everhart, Brandon Leap, Karson Lorey
Design Project: 3d Printer/Injection Molder Hybrid, Lee Paolucci, Luke Everhart, Brandon Leap, Karson Lorey
Williams Honors College, Honors Research Projects
In the realm of rapid, small-scale prototyping, there are a few main factors that drive decisions to invest resources in technology to make that prototyping possible. Cost and ease of use are two of the most influential when looking at most SMEs (Small to Medium-sized Enterprises). The U.S. Small Business Administration defines an SME as smaller than 1,250 employees. According to An Assessment of Implementation of Entry-Level 3D Printers from the Perspective of Small Businesses, 59% of small manufacturers had implemented 3D printers as of 2014. However, no matter what technology is used in rapid prototyping, there are common …
Study Guide Generation In Chemical Engineering Thermodynamics: A Comparison Between Individual And Group Preparation, William Brown
Study Guide Generation In Chemical Engineering Thermodynamics: A Comparison Between Individual And Group Preparation, William Brown
Williams Honors College, Honors Research Projects
Thermodynamics is an essential course in the chemical engineering curriculum. Thermodynamics requires the use of many equations and rules that use subtle concepts from math, physics, and chemistry. To assist students with using these equations and recalling rules on exams, students are often permitted a “study guide” to use on the exams to help avoid rote memorization. Study guide construction is an environment in which students learn, and learning has been shown to improve when collaboration is involved. In this research, students will construct study guides individually for one exam, and in teams for one exam. Students will answer questions …
Matlab Model To Predict Liquid Hydrogen Spill Characteristics And Safety, Amy Gravenstein
Matlab Model To Predict Liquid Hydrogen Spill Characteristics And Safety, Amy Gravenstein
Williams Honors College, Honors Research Projects
The potential of using liquid hydrogen for propulsion is often undermined due to its perilous nature. Hydrogen has a wide flammability range when mixed with air (4.0 - 75.0% hydrogen) and a low ignition energy (0.019 mJ). Liquid hydrogen adds to this high risk as a cryogenic fluid that is to be maintained below -22 K. A liquid hydrogen model has been created in MATLAB that can model various spill scenarios from cryogenic liquid hydrogen vessels. This model takes into consideration the spill rate, spill temperature, air temperature, duration of spill, and air flow conditions to calculate the mass accumulation, …
Development Of Co2 Capture Method Via Polyurethane-Amine Sorbent In Vsa, Samantha Starkey, David S. Rinehart
Development Of Co2 Capture Method Via Polyurethane-Amine Sorbent In Vsa, Samantha Starkey, David S. Rinehart
Williams Honors College, Honors Research Projects
With increases in extreme weather and global temperatures, research is delving into CO2 capture to help reverse climate change. This project explored utilizing vacuum swing adsorption (VSA) for CO2 capture and release. VSA uses a sorbent, in this case amine sorbents, to capture CO2 from air and subsequently removes it via vacuum. Polyurethane (PU) foam was investigated as a potential matrix for amine sorbents to increase exposure of CO2 capturing amines to air by utilizing its porous structure. PU mixing studies were conducted to determine the feasibility of mixing PU foam with amines and coating foams …
A Novel Pulsed-Plasma Catalytic Reactor For Dry Reforming Of Methane, Benjamin F. Caithamer
A Novel Pulsed-Plasma Catalytic Reactor For Dry Reforming Of Methane, Benjamin F. Caithamer
Dissertations, Master's Theses and Master's Reports
Concerns over greenhouse gases have led to an increased interest in the Dry Reforming of Methane (DRM) which produces hydrogen and carbon monoxide from the reaction of two greenhouse gases (CO2 and CH4) over a catalyst. Currently, DRM is primarily a catalytic process which operates at temperatures between 700°C - 900°C, and 10 to 20 bar using a 1–1.5 ratio of CH4/CO2. Unfortunately, these conditions also promote the water-gas shift reaction, which produces additional CO2. Catalyst coking and sintering can also be significant problems at these harsh conditions. We have developed …
Biodiesel Production From Castor Oil: Mixing Optimization During Transestrification, Islam M. Al-Akraa
Biodiesel Production From Castor Oil: Mixing Optimization During Transestrification, Islam M. Al-Akraa
Chemical Engineering
No abstract provided.
Valuable Biodiesel Catalyst From Solvay Wastewater, Mai Hassan Roushdy, Rana Adel Bayoumi
Valuable Biodiesel Catalyst From Solvay Wastewater, Mai Hassan Roushdy, Rana Adel Bayoumi
Chemical Engineering
Biodiesel is considered a renewable, green fuel as it is derived from renewable living resources like animal fats or vegetable oils. This research is utilized to investigate the possibility of using Solvay wastewater as a source of biodiesel catalyst, which is CaO. CaCl2 from Solvay wastewater reacts with CO2 to produce CaCO3. CaCO3 is then heated to produce pure CaO. Waste cooking oil, wastewater, and CO2, which are considered dangerous materials to the environment, are used to produce valuable products. This research has environmental and economic benefit benefits of using waste materials as a replacement for raw materials. The selected …
Biodiesel Production From Castor Oil: Mixing Optimization During Transesterification, Yaser M. Asal Mr, Islam M. Al-Akraa, Ahmad M. Mohammad, Hassan E. Hisham
Biodiesel Production From Castor Oil: Mixing Optimization During Transesterification, Yaser M. Asal Mr, Islam M. Al-Akraa, Ahmad M. Mohammad, Hassan E. Hisham
Chemical Engineering
With the growing warning for accrediting the traditional combustion of fossil fuels for energy production, not only for their limited supply but also for their environmental risks (air pollution, climate change, …. etc), it became necessary to realize alternative greener and abundant sources for energy. Instead, the interest to sustain biodiesel for the energy production has recently been renewed as a replacement for petroleum diesel in conventional diesel engines. This was due to its renewable nature, low toxicity, high degradability and unique physical properties (high flash points & lubrication). Castor oil, in particular, appeared promising for biodiesel production with extremely …
A Competent Mwcnt-Grafted Mnox/Pt Nanoanode For The Direct Formic Acid Fuel Cells, Islam M. Al-Akraa, Ahmad M. Mohammad, Moutaz Mamdouh, Yasser M. Asal
A Competent Mwcnt-Grafted Mnox/Pt Nanoanode For The Direct Formic Acid Fuel Cells, Islam M. Al-Akraa, Ahmad M. Mohammad, Moutaz Mamdouh, Yasser M. Asal
Chemical Engineering
No abstract provided.
Effect Of Reduction Methods On The Properties Of Composite Films Of Bacterial Cellulose-Silver Nanoparticles, Ratchanon Jenkhongkarn
Effect Of Reduction Methods On The Properties Of Composite Films Of Bacterial Cellulose-Silver Nanoparticles, Ratchanon Jenkhongkarn
Chulalongkorn University Theses and Dissertations (Chula ETD)
Composite films of bacterial cellulose-silver nanoparticles (BC-Ag) were prepared by different methods of in-situ reduction of silver, using sodium hydroxide, ascorbic acid, chitosan, and UV irradiation. The effects of the reduction methods on their properties were investigated. The chitosan-reduced composite exhibited dispersed silver nanoparticles (AgNPs) within the nanocellulose matrix with the smallest size, while the ascorbic-reduced composite displayed the largest size. The incorporation of AgNPs tended to reduce the crystallinity of the composites, except for the ascorbic-reduced composite which exhibited an increase in crystallinity. Mechanical testing revealed that the ascorbic-reduced composite had the highest Young's modulus of 8960 MPa, whereas …
Dual-Ligand Zinc Metal Organic Frameworks-Derived Solid-Electrolyte Interphase For Stable Zinc Anode In Aqueous Electrolytes, Penwuanna Arin
Dual-Ligand Zinc Metal Organic Frameworks-Derived Solid-Electrolyte Interphase For Stable Zinc Anode In Aqueous Electrolytes, Penwuanna Arin
Chulalongkorn University Theses and Dissertations (Chula ETD)
Rechargeable aqueous zinc-ion batteries (ZIBs) have attracted attention for energy storage systems because of their high specific capacity, low cost, and safety. However, in mildly acidic aqueous electrolytes, several issues of zinc anodes such as dendrite formation, and corrosion, limit the practical deployment and performance of ZIBs. Metal-organic frameworks (MOFs) is ultrahigh porosity and high internal surface areas. MOFs layer as the solid-electrolyte interphase layer to prevent the zinc anode from attaching directly to the separator. MOFs is used in batteries as the SEI layer because the pores of MOFs efficiently facilitate the diffusion and transport of zinc-ions. In this …
Understanding And Controlling Failure Mechanisms Of The Zinc Anode For Rechargeable Alkaline Batteries, Michael J. D'Ambrose
Understanding And Controlling Failure Mechanisms Of The Zinc Anode For Rechargeable Alkaline Batteries, Michael J. D'Ambrose
Dissertations and Theses
In the coming years, the transformation of the electric grid will be in part enabled by safe, low-cost, and reliable large-scale rechargeable battery energy storage systems. Zinc (Zn) alkaline electrodes hold great importance and promise in the battery technology community as they satisfy the safety and cost requirements, yet their behavior in real world application is still poorly understood.
Two experimental studies were carried out, the first of which investigates failure mechanisms and material evolution during cycling of 27 zinc-manganese dioxide (Zn-MnO2) cells in 37 wt% potassium hydroxide (KOH) electrolyte wherein the percent utilization of the theoretical capacity …
Fundamentals Of Microgel Flooding And Nanoparticles-Stabilized Foams In Enhanced Oil Recovery, Shuaijun Li
Fundamentals Of Microgel Flooding And Nanoparticles-Stabilized Foams In Enhanced Oil Recovery, Shuaijun Li
Dissertations and Theses
For centuries oil has remained a critical energy source for human civilization. After years of extraction, many oil fields have reached or are reaching a decline stage of production, even though up to a half of the total crude oil reserves in these fields has not been recovered yet. One reason is due to the structural heterogeneity of the oil reservoirs—reservoirs may consist of regions of higher permeability with larger pore size and regions of lower permeability with smaller pore size. Displacing fluids tend to flow through large permeability zones only without reaching the oil trapped in low permeability region; …
Droplets In An Electric Field: Surface Rheology, Coalescence And Rebound, Yu Han
Droplets In An Electric Field: Surface Rheology, Coalescence And Rebound, Yu Han
Dissertations and Theses
Electrocoalescence is the process in which pairs of conducting droplets suspended in a continuous dielectric (nonconducting) liquid phase are drawn together and merge upon the application of an electric field. The electric field polarizes each of the droplets in the field direction. The polarization causes the drops to deform and drives a dipolar attraction which forces them to approach each other and coalesce. Many technologies use electric fields to manipulate fluid dispersions. Electrocoalescence is an essential unit operation for separating water droplets in a crude oil. This water in oil emulsion is stabilized by surfactants, such as asphaltenes, resins and …
Investigation Of Reactions Occurring In Municipal Solid Waste Residues, Tasnuva T. Moutushi
Investigation Of Reactions Occurring In Municipal Solid Waste Residues, Tasnuva T. Moutushi
Dissertations and Theses
Each year more than 290 million tons of municipal solid waste (MSW) is generated in the U.S. Understanding the reactions occurring in waste during disposal, transport, and storage is important to move towards an integrated waste management strategy. Recently some landfills in the U.S. have been reported to exceed the regulatory temperature range, causing numerous regulatory challenges. The reason for this phenomenon is still unidentified. In addition, the co-disposal of the MSW ash in landfills lead to various reactions which can impact the landfill environment. Understanding the reactions occurring in the MSW and in ash is essential to minimize and …
Investigation Of Recyclable And Renewable Crude Oil From Biomass And Plastics, Golam Chowdhury
Investigation Of Recyclable And Renewable Crude Oil From Biomass And Plastics, Golam Chowdhury
Dissertations and Theses
In the present world, the nonrenewable source of petroleum crude oil is suspected to cause irreversible climate impacts. So, refinery companies are looking for renewable and recyclable crude oil (RCOs). Biomass and Plastics are a great sources of RCOs. The goal of this work is to design, build and operate a pyrolysis reactor which is capable of converting different solid feedstock derived from waste to pyrolysis oil. The oils are characterized by GC-MS and sent to BASF Corporation in Iselin, NJ for catalytic upgrading potential. In this study, the feedstock ranged from virgin plastic resins (LDPE, HDPE, PS, PP), recycled …
Investigations Of The Therman Treatment Of Sodium Thiosulfate In Gas Streams For The Removal Of I2, Anjeza Arapi
Investigations Of The Therman Treatment Of Sodium Thiosulfate In Gas Streams For The Removal Of I2, Anjeza Arapi
Dissertations and Theses
The aim of this work was to study the performance of sodium thiosulfate in several systems. Sodium thiosulfate decomposition and SO2 conversion were analyzed using thermogravimetric analysis combined with chromatographic techniques. Thermogravimetric analysis (TGA) measurements determined the decomposition of the acidification reaction of 30% sodium thiosulfate solution in a 14% carbon dioxide (CO2) atmosphere and 1% hydrochloric acid (HCl) solution in the temperature regime of 300 - 750 K. Sodium thiosulfate and sulfur dioxide (SO2) are considered effective methods for removing iodine (I2) from air and flue-gas streams respectively. In acid containing gas-streams where the SO2 content is determined by …