Development Of Pvdf Membrane Nanocomposites Via Various Functionalization Approaches For Environmental Applications,
2016
University of Kentucky
Development Of Pvdf Membrane Nanocomposites Via Various Functionalization Approaches For Environmental Applications, Douglas M. Davenport, Minghui Gui, Lindell E. Ormsbee, Dibakar Bhattacharyya
Chemical and Materials Engineering Faculty Publications
Membranes are finding wide applications in various fields spanning biological, water, and energy areas. Synthesis of membranes to provide tunable flux, metal sorption, and catalysis has been done through pore functionalization of microfiltration (MF) type membranes with responsive behavior. This methodology provides an opportunity to improve synthetic membrane performance via polymer fabrication and surface modification. By optimizing the polymer coagulation conditions in phase inversion fabrication, spongy polyvinylidene fluoride (PVDF) membranes with high porosity and large internal pore volume were created in lab and full scale. This robust membrane shows a promising mechanical strength as well as high capacity for loading …
Sustainable P2 Design For Batch-Based Specialty Chemical Manufacture,
2016
Rowan University
Sustainable P2 Design For Batch-Based Specialty Chemical Manufacture, Brigitte Pastore
Theses and Dissertations
A case study has been conducted on the reduction of n-methyl-2-pyrrilodone (NMP) solvent waste in the manufacture of polyimide and polybenzoxazole precursors. The evaluation includes the environmental and economic assessment of solvent recovery and substitution strategies. A two-step distillation process proved effective in recovering 95% of the NMP at a purity of 99.97% from the aqueous solvent waste stream. Yearly operating costs were reduced by 83% and total life cycle emissions were reduced by 44%, due to reduction in virgin NMP use and hazardous waste disposal. With capital acquisition, the recovery option would still result in a net present value …
Voltammetric Analysis Of Mixtures Of Molten Eutectic Licl-Kcl Containing Lacl3 And Thcl4 For Concentration And Diffusion Coefficient Measurement,
2016
University of Chinese Academy of Sciences
Voltammetric Analysis Of Mixtures Of Molten Eutectic Licl-Kcl Containing Lacl3 And Thcl4 For Concentration And Diffusion Coefficient Measurement, Zhong-Hang Wang, Devin Rappleye, Michael F. Simpson
Faculty Publications
Several electrochemical techniques, including cyclic voltammetry (CV), chronopotentiometry-open circuit potential (CP-OCP), chronoamperometry (CA) and normal pulse voltammetry (NPV) were applied to the eutectic LiCl-KCl melt containing LaCl3 and ThCl4 at 773K. The dependence of diffusion coefficient of La(III) on concentration of LaCl3 was investigated by using CV, CP and CA. As the concentration of LaCl3 increases, the DLa(III) value obtained from CV gradually decreases, while the values derived from CA and CP exhibit a dome-shaped variation trend. In the LiCl-KCl-LaCl3-ThCl4 system, the diffusion coefficients of La(III) and Th(IV) are both approximately constant …
Effect Of Spalled Particles Thermal Degradation On A Hypersonic Flow Field Environment,
2016
University of Kentucky
Effect Of Spalled Particles Thermal Degradation On A Hypersonic Flow Field Environment, Raghava S. C. Davuluri, Huaibao Zhang, Alexandre Martin
Mechanical Engineering Faculty Publications
Two-way coupling is performed between a spallation code and a hypersonic aerothermodynamics CFD solver to evaluate the effect of spalled particles on the flow field. Time accurate solutions are computed in argon and air flow fields. A single particle simulations and multiple particles simulations are performed and studied. The results show that the carbon vapor released by spalled particles tend to change the composition of the flow field, particularly the upstream region of the shock.
Methane Emissions As Energy Reservoir: Context, Scope, Causes And Mitigation Strategies,
2016
Tongji University
Methane Emissions As Energy Reservoir: Context, Scope, Causes And Mitigation Strategies, Xiaoli Chai, David J. Tonjes, Devinder Mahajan
Technology & Society Faculty Publications
Methane (CH4) is now considered a bridge fuel between present fossil (carbon) economy and desired renewables and this energy molecule is projected to play an important role in the global energy mix well beyond 2035. The atmospheric warming potential of CH4 is 28-36 times, when averaged over a 100-year period, that of carbon dioxide (CO2) and this necessitates a close scrutiny of global CH4 emissions inventory. As the second most abundant greenhouse gas (GHG), the annual global CH4 emissions were 645 million metric tons (MMT), accounting for 14.3% of the global anthropogenic GHG emissions. Of this, five key anthropogenic sources: …
Champions’ Summer Defense: Manufacturing All-Natural Equine Spray,
2016
Virginia Commonwealth University
Champions’ Summer Defense: Manufacturing All-Natural Equine Spray, Brooke Riggs, Peter Rinaldi, Zach Taylor
Capstone Design Expo Posters
Research was conducted in 2014 and 2015 for the development of Champions’ Summer Defense, an all-natural product to protect horses from irritating and potentially harmful summer elements. This formulation provides sunscreen to protect the horses from sunburn and reduces coat bleaching. In addition, this spray acts as a conditioner and leaves the horse’s coat shiny by fighting dry skin and moisturizing the coat. Champions’ Summer Defense’s unique formulation is naturally antimicrobial, eliminating the need for a preservative and allows the product to be 100% natural. The antimicrobial property will also help prevent skin irritations from insects and will keep the …
Polyether Product Recovery: Salt-Induced Water-Polymer Separation,
2016
Virginia Commonwealth University
Polyether Product Recovery: Salt-Induced Water-Polymer Separation, Carolina Andrea Mercado Buelvas, Chance Parrish, Rohit Sharma
Capstone Design Expo Posters
Evonik Industries currently loses approximately 50 tons of polyether product to wastewater washes annually. Evonik has requested an industrially viable solution to maximize the recovery of the lost product in the current process. It was required that the solution have a one year payback period, and be in compliance with current regulatory policies. Literature sources showed that salt is a commonly used agent to force the separation of polyether-water mixtures. Using this information, a method was developed using a salt already present in the process to induce a phase separation and to recover the polyether. An empirical multilinear refractive index …
Smart Medication Disposal: Subcritical Water Oxidation Of Pharmaceutical Compounds,
2016
Virginia Commonwealth University
Smart Medication Disposal: Subcritical Water Oxidation Of Pharmaceutical Compounds, Sharon Veeravalli, Charles Fricke, F. William Ronnau
Capstone Design Expo Posters
Disposal of unused or expired pharmaceuticals is neither safe nor environmentally-friendly. Current regulations for pharmaceutical disposal do not prevent environmental contamination. Industrial methods of disposing of waste medications can generate toxic compounds through incineration, or generate large volumes of waste through use of physical adsorbents. Medium sized providers (pharmacies, small clinics) typically hire expensive hazardous waste removal or dispose of these medications improperly.
The project goal is to deliver a safe, sustainable process, suitable for retail pharmacies and the like, for rendering pharmaceuticals chemically inactive. This project encompasses the development of a degradation process via testing of 5 model pharmaceuticals …
Development Of A Tabletop Soft Gel Encapsulation Machine,
2016
Virginia Commonwealth University
Development Of A Tabletop Soft Gel Encapsulation Machine, Amanda Carter, Lara Hamid, Harini Muralikrishnan, Bethlehem Solomon
Capstone Design Expo Posters
This VCU Chemical and Life Science Engineering student team is designing a tabletop gel encapsulation machine to produce ~50 capsules per minute enabling rapid changeover for research and development purposes for Pfizer Consumer Healthcare. The preliminary design is based on reverse engineering of the large-scale encapsulation machine. Building from an initial prototype that included die rolls with variable rotation speed control and temperature control, the team identified and designed additional components to produce soft gel capsules: (1) producing gelatin ribbons from molten gelatin, (2) synchronizing the injection of medicine and capsule formation, and (3) ensuring that the capsules seal properly. …
Nanoparticles As Lubricant Additives,
2016
Virginia Commonwealth University
Nanoparticles As Lubricant Additives, Jacob Miller, Rayyan Alsinan, Zainab Suwaiket, Samuel Wojcicki
Capstone Design Expo Posters
Nanoparticles have generated interest in the oil industry as potential additives. Many nanoparticles have been shown to improve fuel economy and engine efficiency. However, there are an infinite number of nanoparticle formulations, and to test all these would be impossible. The objective of this project was to develop a predictive model which demonstrates the impact of factors such as size, concentration, and hardness on the performance of nanoparticles as oil additives.
The concentrations tested were 0.01% and 0.5% by mass in PAO4 base oil. The sizes tested were 5-15nm and 20-50nm. Using four compositions to approximate hardness, a 4 x …
Treatment Of Menorrhagia And Irregular Menstruation: Cryo-Fluid Ablation Of The Endometrium,
2016
Virginia Commonwealth University
Treatment Of Menorrhagia And Irregular Menstruation: Cryo-Fluid Ablation Of The Endometrium, Baha Endisha, Benjamin Green
Capstone Design Expo Posters
Menorrhagia and irregular menstruation, characterized as dysfunctional uterine bleeding (DUB), is a condition that affects 15 to 20% of reproductive and pre-menopausal women. Common treatments are invasive, painful, or have low success rates; there is a need for new treatment. A 2014-2015 senior design team developed a prototype treatment based on the hypothesis that if free fluid was circulated in the uterine cavity at temperatures between 0 and -15ᵒC, cell death of the 2cm reproductive endometrial layer in the uterine cavity could be achieved and induce long term amenorrhea. The current senior design team significantly modified the prototype to reach …
Improved Ballast Recovery In Water Treatment,
2016
Virginia Commonwealth University
Improved Ballast Recovery In Water Treatment, Zach Canfield, Ruqaia Suleman, Jasmine Wang, James Westbrook
Capstone Design Expo Posters
SUEZ Environnement’s Densadeg XRC™ is a high throughput water clarification unit capable of removing total suspended solids (TSS) with the aid of a high density ballast material. The ballast material is separated from the waste solids through a hydrocyclone and recycled into the system. Separation is inefficient and the unit experiences loss of ballast at 7 to 14 lbs per million gallons of treated water through the overflow of the hydrocyclone. Currently, ballast must be added at the loss rate to maintain the proper concentration to remove TSS. This requires that water treatment plants must provide storage space for ballast …
Development Of Chemical Process Design And Control For Sustainability,
2016
West Virginia University
Development Of Chemical Process Design And Control For Sustainability, Shuyun Li, Gaurav Mirlekar, Gerardo J. Ruiz-Mercado, Fernando V. Lima
Faculty & Staff Scholarship
This contribution describes a novel process systems engineering framework that couples advanced control with sustainability evaluation for the optimization of process operations to minimize environmental impacts associated with products, materials and energy. The implemented control strategy combines a biologically-inspired method with optimal control concepts for finding more sustainable operating trajectories. The sustainability assessment of process operating points is carried out by using the U.S. EPA’s Gauging Reaction Effectiveness for the ENvironmental Sustainability of Chemistries with a multi-Objective Process Evaluator (GREENSCOPE) tool that provides scores for the selected indicators in the economic, material efficiency, environmental and energy areas. The indicator scores …
Modeling And Optimization Of High-Performance Polymer Membrane Reactor Systems For Water–Gas Shift Reaction Applications,
2016
West Virginia University
Modeling And Optimization Of High-Performance Polymer Membrane Reactor Systems For Water–Gas Shift Reaction Applications, Andrew J. Radcliffe, Rajinder P. Singh, Kathryn A. Berchtold, Fernando V. Lima
Faculty & Staff Scholarship
In production of electricity from coal, integrated gasification combined cycle plants typically operate with conventional packed bed reactors for the water-gas shift reaction, and a Selexol process for carbon dioxide removal. Implementation of membrane reactors in place of these two process units provides advantages such as increased carbon monoxide conversion, facilitated CO2 removal/sequestration and process intensification. Proposed H2-selective membranes for these reactors are typically of palladium alloy or ceramic due to their outstanding gas separation properties; however, on an industrial scale, the cost of such materials may become exorbitant. High-performance polymeric membranes, such as polybenzimidazoles (PBIs), present themselves as low-cost …
Phosphate And Selective Anion Removal Of Waste Water In Industrial Systems,
2016
Virginia Commonwealth University
Phosphate And Selective Anion Removal Of Waste Water In Industrial Systems, Daniel Dillon, Campbell Mccolley, Laura Strukl
Capstone Design Expo Posters
Phosphorous is an essential nutrient for a functioning water ecosystem, however, heightened levels caused by waste water and agriculture can be damaging. High levels of PO43- cause toxic algae blooms, which kill wildlife and contaminate drinking water supplies. Therefore, cheap, efficient phosphate removal systems are beneficial for commercial settings in order to meet governmental standards. Similar research and technology can aid in the removal of toxic heavy metals in industrial waste water. Using a packed column with solid supported media, both phosphate and other selective anions were successfully removed from water. This was confirmed by inductively coupled plasma analysis. Constraints …
Conference Program (Gpe 2016),
2016
ICFAR, Western University, Canada
Conference Program (Gpe 2016), Franco Berruti, Cedric Briens
5th International Congress on Green Process Engineering (GPE 2016)
No abstract provided.
State-Of-The-Art Review Of Cathodic Protection For Reinforced Concrete Structures,
2016
Technological University Dublin
State-Of-The-Art Review Of Cathodic Protection For Reinforced Concrete Structures, Aimee Byrne, Niall Holmes, Brian Norton
Articles
Cathodic protection (CP) limits the corrosion of a metal surface by making it the cathode of an electrochemical cell. This can be achieved either by using a more active sacrificial anode to create a driving current, or by using inert anodes and impressing a current onto the cathode surface using an external direct current (DC) source. Impressed current cathodic protection (ICCP) is preferred where widespread protection is required, particularly in reinforced concrete structures. ICCP needs a constant DC power supply that is usually provided through a grid connection or independent generators. This paper presents the currently available CP systems for …
Hazardous Waste Reduction: Hexamethyldisiloxane,
2016
Virginia Commonwealth University
Hazardous Waste Reduction: Hexamethyldisiloxane, William Keesee, Reuben Gol, Kennet Castillo
Capstone Design Expo Posters
Waste Reduction: (1) Engineering problem - The manufacturing of a Silicone intermediate creates a flammable waste stream that must be disposed of at cost to QSI (0.48$/lb.). This stream contains two phases, which are mainly hexamethydisiloxane (HMDS) and aqueous ammonium hydroxide in roughly 50/50 ratio by volume. The HMDS phase (upper) is flammable and is thus hazardous. The clean aqueous phase (lower) can be discarded via the sewer at no cost if the flash point is above hazardous classification (60 °C). (2) Project deliverables - The Engineering solution must reduce the yearly volume of waste to under 13 tons/year and …
Method Of Mold Release From Process Equipment,
2016
Virginia Commonwealth University
Method Of Mold Release From Process Equipment, Craig Paris, Jason Marshall, Trae Fuller
Capstone Design Expo Posters
Once a process cycle has been completed, glass condom molds are removed from spindles that connect them to the process equipment. Currently, glass molds are removed by destroying the glass around the spindle, resulting in safety hazards from glass shards, monetary loss due to replacement cost, and also loss of money due to the labor cost associated with time spent cleaning up the glass shards and breaking the molds. To solve the dilemma, the sponsor demanded a safe, cost efficient method or addition that would not harm the process during the cycle nor damage the spindle and glass molds at …
The Response Of An Ellipsoidal Colloid Particle In An Ac Field,
2016
Cleveland State University
The Response Of An Ellipsoidal Colloid Particle In An Ac Field, Cornelius Adebowale Obasanjo
ETD Archive
The quest for new smart materials with engineered properties and desired functionalities has driven scientists into the domain of nanotechnology over the past 30 years. Particles with anisotropic properties as a result of their geometry, chemical patterning or surface functionality have been envisioned as building blocks for advanced materials. By tuning the anisotropic interactions engendered by anisotropic particles, one potentially could manipulate the dynamic pathways for assembly.
The work described in this thesis considers the response of an ellipsoidal colloid particle to a nearby AC electrode polarized at ~0.1 – 4 kV/m and ~0.1 – 3 kHz. The ellipsoidal particle, …
