Increased Energy Yield Through Fast Pyrolysis: Empowering Malawian Villages,
2018
Brigham Young University
Increased Energy Yield Through Fast Pyrolysis: Empowering Malawian Villages, Diehl Mutamba
Undergraduate Honors Theses
Biomass contributes to several renewable energy technologies. This project will explore the use of fast pyrolysis to produce fuels by designing an apparatus for fast pyrolysis. Malawian people harvest firewood from the forests, which is a major contributor to deforestation. Furthermore, they convert some of it to charcoal with about 10-15% efficiency to sell to city dwellers. The project will enable herbaceous fuels to replace wood, increase charcoal yields and create new products. Firewood and charcoal produce smoke and carbon monoxide (CO) that compromises the villagers’ health.
This project will address deforestation problems, improve sustainability, decrease health hazards and improve …
Suitability Of The Kalina Cycle For Power Conversion From Pressurized Water Reactors,
2018
Brigham Young University
Suitability Of The Kalina Cycle For Power Conversion From Pressurized Water Reactors, Jack Ryan Webster
Theses and Dissertations
The primary objective of this work is to determine the Kalina cycle's suitability for thermal power conversion from a pressurized water reactor. Several previous papers have examined this application, but these either lack proof of concept or make unfeasible assumptions. This work expands current knowledge by simulating the Kalina cycle and comparing it to current pressurized water reactor Rankine cycles in order to identify which is more efficient. Prerequisite to the modeling is a simulation tool capable of modeling the thermodynamics of ammonia/water mixtures. Instead of using an existing program, a new one called Clearwater is used. This tool is …
Preparation Of Supramolecular Amphiphilic Cyclodextrin Bilayer Vesicles For Pharmaceutical Applications,
2018
California Polytechnic State University, San Luis Obispo
Preparation Of Supramolecular Amphiphilic Cyclodextrin Bilayer Vesicles For Pharmaceutical Applications, Kate E. Frischkorn
Master's Theses
Recent pharmaceutical developments have investigated using supramolecular nanoparticles in order to increase the bioavailability and solubility of drugs delivered in various methods. Modification of the carbohydrate cyclodextrin increases the ability to encapsulate hydrophobic pharmaceutical molecules by forming a carrier with a hydrophobic core and hydrophilic exterior. Guest molecules are commonly added to these inclusion complexes in order to add stability and further increase targeting abilities of the carriers. One such guest molecule is adamantine combined with a poly(ethylene glycol) chain. Vesicles are formed by hydrating a thin film of amphiphilic cyclodextrin and guest molecules in buffer solution that mimics physiological …
Using Switchable Solvents For Simultaneous Microalgae Lipids’ Extraction And Biodiesel Production,
2018
United Arab Emirates University
Using Switchable Solvents For Simultaneous Microalgae Lipids’ Extraction And Biodiesel Production, Mariam Sultan Saeed Alamer
Chemical and Petroleum Engineering Theses
Biodiesel produced from microalgae biomass has been pursued as a possible replacement to petroleum diesel. Among the main steps in microalgae biodiesel production are the drying and cell walls disruption, which are energy intensive and/or time consuming, and oil extraction, which is conventionally done using toxic organic solvents that contaminate the left over biomass and require additional solvent recovery. Therefore, these steps are considered the major obstacles facing the commercialization of microalgae biodiesel.
In this work, switchable solvents (SSs), which can reversibly alter their hydrophobicities, have been tested for oil extraction and biodiesel production. Three switchable solvents, namely N, N-dimethylcyclohexylamine …
Negative Electron Transfer Dissociation Sequencing Of 3-O-Sulfation-Containing Heparan Sulfate Oligosaccharides,
2018
Missorui University of Science and Technology
Negative Electron Transfer Dissociation Sequencing Of 3-O-Sulfation-Containing Heparan Sulfate Oligosaccharides, Jiandong Wu, Juan Wei, John D. Hogan, Pradeep Chopra, Apoorva Joshi, Weigang Lu, Joshua Klein, Geert Jan Boons, Cheng Lin, Joseph Zaia
Chemical and Biochemical Engineering Faculty Research & Creative Works
Among Dissociation Methods, Negative Electron Transfer Dissociation (NETD) Has Been Proven the Most Useful for Glycosaminoglycan (GAG) Sequencing Because It Produces Informative Fragmentation, a Low Degree of Sulfate Losses, High Sensitivity, and Translatability to Multiple Instrument Types. the Challenge, However, is to Distinguish Positional Sulfation. in Particular, NETD Has Been Reported to Fail to Differentiate 4-O- Versus 6-O-Sulfation in Chondroitin Sulfate Decasaccharide. This Raised the Concern of Whether NETD is Able to Differentiate the Rare 3-O-Sulfation from Predominant 6-O-Sulfation in Heparan Sulfate (HS) Oligosaccharides. Here, We Report that NETD Generates Highly Informative Spectra that Differentiate Sites of O-Sulfation on Glucosamine …
The Effect Of Wellbore Circulation On Building An Lcm Bridge At The Fracture Aperture,
2018
Missouri University of Science and Technology
The Effect Of Wellbore Circulation On Building An Lcm Bridge At The Fracture Aperture, Ghassan Alshubbar, Runar Nygaard, Montri Jeennakorn
Geosciences and Geological and Petroleum Engineering Faculty Research & Creative Works
Different laboratory experimental setups with slotted disks, simulating fractures' apertures, have been used extensively to formulate effective loss circulation materials (LCM) recipes. The amount of fluid loss and sealing pressure have been used as the evaluation criteria. The question still remains is how valuable these tests are when LCM fluids are circulated in the wellbore to stop losses. The main objective of this work is to study the effect of the annular fluid flow on building an LCM bridge at the fracture aperture. To address the objective, a fluid loss apparatus has been developed to mimic wellbore circulation. Tapered slotted …
Chemotherapeutic Drug Cytotoxicity Measurement With A 3d Biomimetic Microfluidic Device And Computational Fluid Dynamics Model,
2018
Virginia Polytechnic Institute and State University
Chemotherapeutic Drug Cytotoxicity Measurement With A 3d Biomimetic Microfluidic Device And Computational Fluid Dynamics Model, Maryam Moarefian, Caroline Jones, Luke Achenie, Danesh Tafti
Biology and Medicine Through Mathematics Conference
No abstract provided.
Mechanochemical Nitration Of Aromatic Compounds,
2018
New Jersey Institute of Technology
Mechanochemical Nitration Of Aromatic Compounds, Oleg Shlomo Lagoviyer
Theses
Aromatic compounds such as toluene are commercially nitrated using a combination of nitric acid with other strong acids. This process relies on the use of highly corrosive chemicals and generates environmentally harmful waste, which is difficult to handle and dispose of. In this study aromatic nitration using solvent-free mechanochemical processing of environmentally benign precursors has been achieved and investigated. Mononitrotoluene was synthesized by milling toluene with sodium nitrate and molybdenum trioxide as a catalyst. Several parameters affecting the desired product yield and selectivity were identified and varied. MNT yields in excess of 60% have been achieved in different tests. The …
Micronized Dry Drug Powder-Loaded Polymer Films For Delivery Of Poorly Water Soluble Drugs,
2018
New Jersey Institute of Technology
Micronized Dry Drug Powder-Loaded Polymer Films For Delivery Of Poorly Water Soluble Drugs, Lu Zhang
Dissertations
Polymer strip films have been recently established as a robust platform for delivery of poorly water-soluble drugs via slurry casting, in particular using stable drug nanosuspensions. In this dissertation, a simpler, economically feasible, and robust method to directly incorporate dry micronized poorly water-soluble drug is introduced. As a major novelty, simultaneous surface modification using hydrophilic silica along with micronization is done using fluid energy mill (FEM) in order to reduce the hydrophobicity and agglomeration of poorly water-solube drug powder. When micronized coated drug powders are used, films exhibit improved appearance (thickness uniformity, visible lumps), better drug content uniformity (relative standard …
Elucidating The Action Of A Regulatory Lipid Ligand Via Molecular Simulation: Cholesterol Swarms And The Inwardly Rectifying Potassium Channel,
2018
North Carolina State University
Elucidating The Action Of A Regulatory Lipid Ligand Via Molecular Simulation: Cholesterol Swarms And The Inwardly Rectifying Potassium Channel, Belinda Akpa, Nicolas Barbera, Irena Levitan
Biology and Medicine Through Mathematics Conference
No abstract provided.
Modeling Pharmaceutical Inhibition Of Glucose-Stimulated Renin-Angiotensin System In Kidneys,
2018
Oklahoma State University - Main Campus
Modeling Pharmaceutical Inhibition Of Glucose-Stimulated Renin-Angiotensin System In Kidneys, Ashlee N. Ford Versypt, Minu R. Pilvankar, Hui Ling Yong
Biology and Medicine Through Mathematics Conference
No abstract provided.
Experimental Evaluation Of Lignocellulosic Biomass Pyrolysis By Dielectric Heating And Thermocatalytic Upgrading Of Pyrolysis Vapors Via Iron-Doped Montmorillonite Clay Catalyst,
2018
Louisiana State University and Agricultural and Mechanical College
Experimental Evaluation Of Lignocellulosic Biomass Pyrolysis By Dielectric Heating And Thermocatalytic Upgrading Of Pyrolysis Vapors Via Iron-Doped Montmorillonite Clay Catalyst, Candice Raffaela Ellison
LSU Doctoral Dissertations
This work is an investigation of microwave-assisted biomass pyrolysis and thermocatalytic upgrading of pyrolysis vapors. In the first two chapters, the microwave susceptibility of mixtures of biomass with potential microwave absorbers are characterized by dielectric measurements at microwave frequencies. Dielectric constant and dielectric loss factor of biomass mixtures with char and biomass mixtures with bentonite are found to increase quadratically with increasing weight percent of char or bentonite.
Chapter 3 presents a finite element model, developed in COMSOL Multiphysics, comparing two waveguide applicator configurations for microwave processing using biomass as a model material. A standing wave configuration results in intense …
Selective Flocculation Separation Of Fine Hematite From Quartz Using A Novel Grafted Copolymer Flocculant,
2018
North China University of science and technology
Selective Flocculation Separation Of Fine Hematite From Quartz Using A Novel Grafted Copolymer Flocculant, Jinxia Zhang, Weiguang Sun, Zhiyong Gao, Fusheng Niu, Long Wang, Yawei Zhao, Yuesheng Gao
Michigan Tech Publications, Part 1
Beneficiation of ultrafine mineral particles (typically with an average size less than 20 µm) remains a critical problem for the mineral processing industry. Selective flocculation technique has been found to show great potential to tackle this problem, whose success mainly depends on the selective adsorption of a flocculant on the target mineral particles. In this work, a novel copolymer flocculant was synthesized by grafting starch and acrylamide, which for the first time, was employed in the flocculation separation of fine hematite from quartz. The composites of the grafted copolymer flocculant (GCF) were characterized by Fourier transform infrared spectroscopy (FTIR) and …
Synthesis-Structure-Activity Relationships In Co3o4 Catalyzed Co Oxidation,
2018
University of South Carolina - Columbia
Synthesis-Structure-Activity Relationships In Co3o4 Catalyzed Co Oxidation, Kathleen Mingle, Jochen A. Lauterbach
Faculty Publications
In this work, a statistical design and analysis platform was used to develop cobalt oxide based oxidation catalysts prepared via one pot metal salt reduction. An emphasis was placed upon understanding the effects of synthesis conditions, such as heating regimen and Co2+ concentration on the metal salt reduction mechanism, the resultant nanomaterial properties (i.e., size, crystal structure, and crystal faceting), and the catalytic activity in CO oxidation. This was accomplished by carrying out XRD, TEM, and FTIR studies on synthesis intermediates and products. Additionally, high-throughput experimentation was employed to study the performance of Co3O4 oxidation catalysts over a wide range …
Stretchable Methyl Ammonium Lead Iodide Perovskite Solar Cells For Photovoltaic And Piezoelectric Energy Harvesting,
2018
University of Connecticut
Stretchable Methyl Ammonium Lead Iodide Perovskite Solar Cells For Photovoltaic And Piezoelectric Energy Harvesting, William Tait
University Scholar Projects
The goal of this work was to fabricate an inverse planar perovskite solar cell (PSC) that was stretchable in one dimension and completely solution-processible. Perovskites are a material that have attracted much attention in recent years due to their appealing characteristics, such as being photovoltaic and piezoelectric. PSCs have been the focus of many studies in the solar cell area, as they are solution-processible and have shown high efficiencies relative to the amount of time they have been studied. Fabricating a PSC on a stretchable substrate would be beneficial, as a bendable, stretchable PSC would likely have more applications than …
Learning In Bio-Molecular Computing Systems,
2018
Portland State University
Learning In Bio-Molecular Computing Systems, Lauren Braun
Maseeh Summer Undergraduate Research Experience
Many potential applications of biochemical computers involve the detection of highly adaptable and dynamic chemical systems, such as emerging pathogens. Current technology is expensive to develop and unique to each application, thus causing limitations in accessibility. In order to make this type of computing a realistic solution to problems in the medical field, a biochemical computer would need to be adaptable to work in a variety of applications. Banda et al. (2014) previously proposed a first dynamic biochemical system that was capable of autonomous learning. For this project we studied a framework similar to Banda’s but in two separate pieces, …
Predicting The Dynamic Binding Capacities For Adsorbents Using Bsa As A Model Protein,
2018
Rose-Hulman Institute of Technology
Predicting The Dynamic Binding Capacities For Adsorbents Using Bsa As A Model Protein, Gaoshan Li
Rose-Hulman Undergraduate Research Publications
Membrane adsorbers are one alternative to traditional bead-based chromatography that receive attention in the bioseparation process because of their ability to process material with lower residence times. However some properties of membranes make membrane adsorbers unrealistic for some applications. For example, some membrane adsorbers exhibit lower binding capacities compared with the traditional bead-based chromatography counterparts. The dynamic binding capacity (DBC) in this study is defined as the amount of protein bound in the column when the outlet reaches a certain concentration, which is 10% [2], and the equilibrium binding capacity (EBC) is the binding capacity under the equilibrium conditions, when …
Radical Social Ecology As Deep Pragmatism: A Call To The Abolition Of Systemic Dissonance And The Minimization Of Entropic Chaos,
2018
Fordham University
Radical Social Ecology As Deep Pragmatism: A Call To The Abolition Of Systemic Dissonance And The Minimization Of Entropic Chaos, Arielle Brender
Student Theses 2015-Present
This paper aims to shed light on the dissonance caused by the superimposition of Dominant Human Systems on Natural Systems. I highlight the synthetic nature of Dominant Human Systems as egoic and linguistic phenomenon manufactured by a mere portion of the human population, which renders them inherently oppressive unto peoples and landscapes whose wisdom were barred from the design process. In pursuing a radical pragmatic approach to mending the simultaneous oppression and destruction of the human being and the earth, I highlight the necessity of minimizing entropic chaos caused by excess energy expenditure, an essential feature of systems that aim …
Fundamental Studies Of Solid-Fuel Combustion Using A Two-Stage Flat-Flame Burner,
2018
Washington University in St. Louis
Fundamental Studies Of Solid-Fuel Combustion Using A Two-Stage Flat-Flame Burner, Adewale Ayodeji Adeosun
McKelvey School of Engineering Graduate Student Theses & Dissertations
Innovative coal technologies are essential for addressing concerns about air pollution and global climate change. A key pathway to advancing these technologies is through developing a thorough understanding of the fundamental physical and chemical processes that occur during coal combustion. Ignition influences many aspects of coal combustion, including flame stability, submicron aerosol evolution, and char burnout. As important as ignition and these associated processes are, they are challenging to study because they depend on many factors, such as the combustion environment, particle size, and particle-particle interactions.
While there have been many studies of coal ignition, none have studied the process …
Poly- L -Lactic Acid- Co-Poly(Pentadecalactone) Electrospun Fibers Result In Greater Neurite Outgrowth Of Chick Dorsal Root Ganglia In Vitro Compared To Poly- L -Lactic Acid Fibers,
2018
Missouri University of Science and Technology
Poly- L -Lactic Acid- Co-Poly(Pentadecalactone) Electrospun Fibers Result In Greater Neurite Outgrowth Of Chick Dorsal Root Ganglia In Vitro Compared To Poly- L -Lactic Acid Fibers, Alexis M. Ziemba, Keith P. Lane, Ignacio M. San Segundo, Anthony R. D'Amato, Andrew K. Mason, Ryan J. Sexton, Hubert Casajus, Richard A. Gross, David T. Corr, Ryan J. Gilbert
Chemical and Biochemical Engineering Faculty Research & Creative Works
Electro spun poly-l-lactic acid (PLLA) fiber scaffolds are used to direct axonal extension in neural engineering models. We aimed to improve the efficacy of these fibers in promoting neurite outgrowth by altering surface topography and reducing fiber elastic modulus through the incorporation of a compatibilized blend, poly-l-lactic acid-poly(pentadecalactone) (PLLA-PPDL) into the solution prior to electrospinning. PLLA+PLLA-PPDL fibers had a larger diameter, increased surface nano topography, and lower glass transition temperature than PLLA fibers but had similar mechanical properties. Increases in neurite outgrowth on PLLA+PLLA-PPDL fibers were observed, potentially due to the significantly increased diameter and surface coverage with nano topography. …
