Zif-67-Derived Ag/Co-Embedded N-Enriched Mesoporous Carbon For Oxygen Reduction Reaction,
2019
College of Chemical Engineering, North China University of Science and Technology, Tangshan 063210, PR China;Hebei Province Key Laboratory of Photocatalytic and Electrocatalytic Materials for Environment, Tangshan 063009, PR China;
Zif-67-Derived Ag/Co-Embedded N-Enriched Mesoporous Carbon For Oxygen Reduction Reaction, Zheng-Ling Di, Jing Zhu, Lei Dai, Wei Meng, Yue-Hua Li, Zhang-Xing He, Ling Wang
Journal of Electrochemistry
Nitrogen-doped porous carbon materials are considered as one of the most promising catalysts for oxygen reduction reaction (ORR). Herein, in order to further improve the activity of the nitrogen-doped porous carbon, Ag/Co bimetal is embedded into nitrogendoped porous carbon to form Ag/Co-embedded nitrogen-doped porous carbon material (AgCo@NC). The AgCo@NC was derived by the wet impregnation of Ag+ into ZIF-67 precursor, followed by chemical reduction and a subsequent pyrolysis process under Ar atmosphere at different temperatures (500 ℃, 600 ℃, 700 ℃). The morphologic characterization shows that the Ag/Co nanoparticles were successfully embedded in the mesoporous carbon framework with abundant nitrogen …
Ionic Liquid Assisted Synthesis Of Porous Carbons From Rice Husk For Supercapacitors,
2019
School of Chemistry and Chemical Engineering, Anhui Key Lab of Coal Clean Conversion and Utilization, Anhui University of Technology, Maanshan 243002, China;
Ionic Liquid Assisted Synthesis Of Porous Carbons From Rice Husk For Supercapacitors, Han-Fang Zhang, Feng Wei, Jian Sun, Meng-Ying Jing, Xiao-Jun He
Journal of Electrochemistry
It is still a challenge to prepare carbon materials with high specific surface area at low cost from renewable resources. Herein, the authors report an efficient approach to synthesize porous carbons (PCs) from rice husk with ionic liquid (1-butyl-3-methylimidazolium hexafluorophosphate (BMIMPF6)) as a template and an activation agent. The as-made PCs featured the high specific surface area up to 1438 m2·g-1. As electrodes for supercapacitors, PCs showed a high specific capacitance of 256 F·g-1 at 0.05 A·g-1 in 6 mol·L-1 KOH aqueous electrolyte and a good rate performance of 211 F·g …
2019 Fall Engr333 Project Final Report,
2019
Calvin University
2019 Fall Engr333 Project Final Report, Megan Black, Evan Block, Jacob Deysher, Zach Erickson, Peter Atma, John Macy, Paul Steenwyk, Justin Skaggs, Justin Eekhoff, Adam Marquardt, Alan Samdel, Nathan Van Wyhe, Zach Ashenfelter, Brett Ermer, Clayton Lockwood, Ryan Schierbeek, Andrew Zerull, Matthew Buist, Hannah Chilkiewicz, Nathan Hall, Holly Straup, Ivy Chipinda, Andrew Huston, Peter Oh, Tony Vander Ploeg, Josh Hallenbeck, Cameron Ilbrink, Bridget Pertzsch, Lillie Spackman, Zuber Abdella, Michael Merz, Nathan Schuten, Abigail Willson, William Benneh, Marcus Gelder, Steven Vanast, Tyler Johnson, Christopher Pappageorge, Trevor Sando
ENGR 333
Today, many institutions and individuals see energy efficiency as an important issue; reducing energy consumption is thought to decrease demand for fossil fuels and consumes energy more sustainably. However, while more efficient devices can save users both energy and money, they do not always result in less energy use as a society. This discrepancy between expected and actual energy savings is called the rebound effect. This can be a result of several factors: increased use of the device drawing more energy, manufacturers using more energy to create the new device, or money saved by the users being respent in the …
2019 Fall Engr333 Poster,
2019
Calvin University
2019 Fall Engr333 Poster, Megan Black, Evan Block, Jacob Deysher, Zach Erickson, Peter Atma, John Macy, Paul Steenwyk, Justin Skaggs, Justin Eekhoff, Adam Marquardt, Alan Samdel, Nathan Van Wyhe, Zach Ashenfelter, Brett Ermer, Clayton Lockwood, Ryan Schierbeek, Andrew Zerull, Matthew Buist, Hannah Chilkiewicz, Nathan Hall, Holly Straup, Ivy Chipinda, Andrew Huston, Peter Oh, Tony Vander Ploeg, Josh Hallenbeck, Cameron Ilbrink, Bridget Pertzsch, Lillie Spackman, Zuber Abdella, Michael Merz, Nathan Schuten, Abigail Willson, William Benneh, Marcus Gelder, Steven Vanast, Tyler Johnson, Christopher Pappageorge, Trevor Sando
ENGR 333
Energy efficiency can be a worthy goal for institutions and individuals; reducing energy consumption decreases demand for fossil fuels and consumes energy more sustainably. However, more cost-effective devices can lead to behavioral changes that ultimately increase energy consumption, even though the devices themselves are more energy efficient: This called the rebound effect. Rebound occurs when less energy is saved than expected. This can be a result of several factors: increased use of the device drawing more energy, manufacturers using more energy to create the new device, or money saved by the users being re-spent in the economy. The combination of …
Optimal Allocation Of Energy Storage And Wind Generation In Power Distribution Systems,
2019
University of Nebraska-Lincoln
Optimal Allocation Of Energy Storage And Wind Generation In Power Distribution Systems, Carlos Mendoza
Department of Electrical and Computer Engineering: Dissertations, Theses, and Student Research
The advent of energy storage technologies applications for the electric power system gives new tools for planners to cope with the operation challenges that come from the integration of renewable generation in medium voltage networks. This work proposes and implements an optimization model for Battery Energy Storage System (BESS) and distributed generation allocation in radial distribution networks. The formulation aims to assist distribution system operators in the task of making decisions on energy storage investment, BESSs' operation, and distributed generation penetration's level to minimize electricity costs. The BESSs are required to participate in energy arbitrage and voltage control. In addition, …
2019 Fall Engr333 Seminar Presentation,
2019
Calvin University
2019 Fall Engr333 Seminar Presentation, Ivy Chipinda, Andrew Huston, Adam Marquardt, Lillie Spackman
ENGR 333
File for student presentation, given by students in the Fall 2019 class of ENGR333.
Load Flow Analysis Of 138/69kv Substation Using Electrical Transient & Analysis Program (Etap),
2019
University of Arkansas, Fayetteville
Load Flow Analysis Of 138/69kv Substation Using Electrical Transient & Analysis Program (Etap), Vanessa Abadia Gomez
Electrical Engineering Undergraduate Honors Theses
This paper examines the load flow analysis of a high-voltage substation using ETAP, and explores options for improving the voltage profile of the system. This study yields critical information about the system, such as the voltage drop at each feeder, the voltage at each bus, as well as real and reactive power losses at the different branches and feeders. In this power flow examination, the system’s performance is evaluated for different operating conditions, so that control measurements can be applied if necessary. The experimental results are used for proposing a plan of using fixed and switched shunt capacitor banks to …
Pv Mppt Water Pump Controller,
2019
California Polytechnic State University, San Luis Obispo
Pv Mppt Water Pump Controller, Jacob R. Lamkin
Electrical Engineering
The intention of this project is to create a low cost way to extract the maximum useful power from a PV module to power a water pump. This approach will yield maximum financial and technical accessibility for end users. The project was successful in powering a water pump from a PV module as desired, and the microcontroller driven control circuitry was capable of finding and maintaining operation at the maximum power point of the PV module. Due to the low performance of the buck converter used in this project, this approach was not as efficient as desired and would require …
Demand-Side Load Management Using Single-Phase Residential Static Var Compensators,
2019
Boise State University
Demand-Side Load Management Using Single-Phase Residential Static Var Compensators, Muhammad Kamran Latif
Boise State University Theses and Dissertations
Distribution systems are going through a structural transformation from being radially-operated simple systems to becoming more complex networks to operate in the presence of the distributed energy resources (DERs) with significant levels of penetration. It is predicted that the share of electricity generation from DERs will keep increasing as the world is moving away from the power generation involving carbon-emission and towards cleaner energy sources such as solar, wind, and biofuels. However, the unstable behavior of the renewables resources presents challenges to the already existing distribution systems. One such problem is when the distribution feeder experience variable power supply due …
Critical Radius Of Insulation,
2019
California Polytechnic State University, San Luis Obispo
Critical Radius Of Insulation, Maria N. Ambrose, Samuel J. Sayre, Travis W. Martin, Matt T. Sterling
Mechanical Engineering
The critical radius of insulation is a counterintuitive concept within the study of heat transfer. The theory states that adding insulation to a cylindrical or spherical object will increase the rate of heat loss rather than decrease it, if the radius (thickness) of the insulation is at its “critical” value. The Critical Radius of Insulation Senior Project is designed to demonstrate this phenomenon to Heat Transfer students via a portable apparatus. The concept will be demonstrated with a cylindrical object which is heated by way of a separate voltage source. Thermocouples will display the temperature of the cylinder while insulation …
High Frequency Ltcc Based Planar Transformer,
2019
University of Arkansas, Fayetteville
High Frequency Ltcc Based Planar Transformer, Adithya Venkatanarayanan
Graduate Theses and Dissertations
As we move towards high power and higher frequency related technology, conventional wire-wound magnetics have their own limitations which has led path to the development of planar based magnetic materials. Nowadays more planar magnetic technology has been employed because it is easier to fabricate them. The planar magnetic is a transformer or an inductor that replaces the wire-wound transformer or inductors which generally uses copper wires. One of the main reasons why we move to planar magnetic technology is its operation at higher frequency which provides higher power density. This study explains in detail about the design and fabrication of …
Design And Optimization Of A High Power Density Silicon Carbide Traction Inverter,
2019
University of Arkansas, Fayetteville
Design And Optimization Of A High Power Density Silicon Carbide Traction Inverter, Tyler Adamson
Graduate Theses and Dissertations
This project was initiated with the goal of demonstrating a 3-phase silicon carbide based 150-kW 25 kW/L DC-AC power conversion unit capable of operation with coolant temperatures up to 90°C. The project goals were met and exceeded by first analyzing the established inverter topologies to find which one would yield the highest power density while still meeting electrical performance needs in the 150-kW range. Following topology selection, the smallest silicon carbide power module that met the electrical requirements of the system was found through experimental testing and simulation. After a power module selection was finalized, a DC link capacitor bank …
Performance Enhancement And Characterization Of An Electromagnetic Railgun,
2019
California Polytechnic State University, San Luis Obispo
Performance Enhancement And Characterization Of An Electromagnetic Railgun, Paul M. Gilles
Master's Theses
Collision with orbital debris poses a serious threat to spacecraft and astronauts. Hypervelocity impacts resulting from collisions mean that objects with a mass less than 1g can cause mission-ending damage to spacecraft. A means of shielding spacecraft against collisions is necessary. A means of testing candidate shielding methods for their efficacy in mitigating hypervelocity impacts is therefore also necessary. Cal Poly’s Electromagnetic Railgun was designed with the goal of creating a laboratory system capable of simulating hypervelocity (≥ 3 km/s) impacts. Due to several factors, the system was not previously capable of high-velocity (≥ 1 km/s) tests. A deficient projectile …
Fractional Order State Feedback Control For Improved Lateral Stability Of Semi-Autonomous Commercial Heavy Vehicles,
2019
University of Arkansas, Fayetteville
Fractional Order State Feedback Control For Improved Lateral Stability Of Semi-Autonomous Commercial Heavy Vehicles, Rasheed Mazen Abdulkader
Graduate Theses and Dissertations
With the growing development of autonomous and semi-autonomous large commercial heavy vehicles, the lateral stability control of articulated vehicles have caught the attention of researchers recently. Active vehicle front steering (AFS) can enhance the handling performance and stability of articulated vehicles for an emergency highway maneuver scenario. However, with large vehicles such tractor-trailers, the system becomes more complex to control and there is an increased occurrence of instabilities. This research investigates a new control scheme based on fractional calculus as a technique that ensures lateral stability of articulated large heavy vehicles during evasive highway maneuvering scenarios. The control method is …
Adaptive Boundary Control Using The Natural Switching Surfaces For Flyback Converters,
2019
University of Arkansas, Fayetteville
Adaptive Boundary Control Using The Natural Switching Surfaces For Flyback Converters, Luciano Andres Garcia Rodriguez
Graduate Theses and Dissertations
The derivation and implementation of the natural switching surfaces (NSS) considering certain parametric uncertainties for a flyback converter operating in the boundary conduction mode (BCM) is the main focus of this paper. The NSS with nominal parameters presents many benefits for the control of nonlinear systems; for example, fast transient response under load-changing conditions. However, the performance worsens considerably when the converter actual parameters are different from the ones used in the design process. Therefore, a novel control strategy for NSS considering the effects of parameter uncertainties is proposed. This control law can estimate and adapt the control trajectories in …
Evaluation And Analysis Of Null Convention Logic Circuits,
2019
University of Arkansas, Fayetteville
Evaluation And Analysis Of Null Convention Logic Circuits, John Davis Brady
Graduate Theses and Dissertations
Integrated circuit (IC) designers face many challenges in utilizing state-of-the-art technology nodes, such as the increased effects of process variation on timing analysis and heterogeneous multi-die architectures that span across multiple technologies while simultaneously increasing performance and decreasing power consumption. These challenges provide opportunity for utilization of asynchronous design paradigms due to their inherent flexibility and robustness.
While NULL Convention Logic (NCL) has been implemented in a variety of applications, current literature does not fully encompass the intricacies of NCL power performance across a variety of applications, technology nodes, circuit scale, and voltage scaling, thereby preventing further adoption and utilization …
E700xd Portable Doppler Radar Energy Systems Analysis,
2019
Air Force Institute of Technology
E700xd Portable Doppler Radar Energy Systems Analysis, Brandon M. Bailey, Torrey J. Wagner, Jada Williams
Faculty Publications
Occurring in industrialized nations, inexpensive and abundantly available power is routinely taken for granted. However, energy resilience and to a lesser extent price are key concerns when considering potential solutions for disaster response, disaster relief, or military operations. The Department of Defense (DoD) currently uses a 5 kW generator to power the E700XD portable Doppler radar system when grid power is unavailable [1]. While the radar has an approximate power consumption of 2.5 kW, there is a potential for higher demand due to weather conditions [2]. This paper examines the cost of operating a currently installed generator, compared to the …
Transmission-Scale Battery Energy Storage Systems: A Systematic Literature Review,
2019
Pacfic Power
Transmission-Scale Battery Energy Storage Systems: A Systematic Literature Review, Kevin Marnell, Manasseh Obi, Robert B. Bass
Electrical and Computer Engineering Faculty Publications and Presentations
When the transmission capacity of an electrical system is insufficient to adequately serve customer demand, the transmission system is said to be experiencing congestion. More transmission lines can be built to increase capacity. However, transmission congestion typically only occurs during periods of peak demand, which occur just a few times per year; capitol-intensive investments in new transmission capacity address problems that occur infrequently. Alternative solutions to alleviated transmission congestion have been devised, including generation curtailment, demand response programs, and various remedial action schema. Though not currently a common solution, battery energy storage systems can also provide transmission congestion relief. Technological …
Performance Of Desiccant Enhanced Evaporative Cooling System Based On High-Low Control,
2019
Technological and Higher Education Institute of Hong Kong (THEi)
Performance Of Desiccant Enhanced Evaporative Cooling System Based On High-Low Control, Yi Chen, Huaxia Yan, Yimo Luo
Faculty of Science & Technology (THEi)
Desiccant enhanced evaporative cooling system is a sustainable air-conditioning (A/C) system which deals the latent load and sensible load separately by a dehumidifier and an evaporative cooler. A LDD-RIEC system consists of a liquid desiccant dehumidifier (LDD) and a regenerative indirect evaporative cooler (RIEC) were investigated. The LDD-RIEC system is characterized by low energy consumption compared with conventional mechanical cooling system, but the main shortcoming is the high dependency on ambient air conditions. To maintain stable indoor temperature, a control scheme is essential. However, very limited research work regarding control strategy can be found in open literatures. In this paper, …
Overview Of Flywheel Systems For Renewable Energy Storage With A Design Study For High-Speed Axial-Flux Permanent-Magnet Machines,
2019
University of Kentucky
Overview Of Flywheel Systems For Renewable Energy Storage With A Design Study For High-Speed Axial-Flux Permanent-Magnet Machines, Murat G. Kesgin, Peng Han, Narges Taran, Dan M. Ionel
Power and Energy Institute of Kentucky Faculty Publications
Flywheel energy storage is considered in this paper for grid integration of renewable energy sources due to its inherent advantages of fast response, long cycle life and flexibility in providing ancillary services to the grid, such as frequency regulation, voltage support, etc. The fundamentals of the technology and recent developments are reviewed, firstly with an emphasis on the design considerations and performance metrics. Then the progress and development trends in electric motor/generators employed in flywheel energy storage systems (FESS) are summarized, showing the potential of axial-flux permanent-magnet (AFPM) machines in such applications. Design examples of high-speed AFPM machines are provided …
