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Articles 4561 - 4590 of 16704

Full-Text Articles in Engineering

Thermodynamic Determination Of Optimal Conditions For Growing Si1-Xgex Crystals From A Tin Solution On A Silicon Substrate, Alijon Shonazarovich Razzokov, Khushnudbek Odilbekovich Eshchanov Jan 2022

Thermodynamic Determination Of Optimal Conditions For Growing Si1-Xgex Crystals From A Tin Solution On A Silicon Substrate, Alijon Shonazarovich Razzokov, Khushnudbek Odilbekovich Eshchanov

Journal of Metals, Materials and Minerals

Thermodynamic calculations have been carried out for growing crystalline Si1-xGex solid solution epitaxial films on Si<100> and Si<111> substrates from a tin solution-melt by liquid-phase epitaxy. Nanoclusters are thought to be involved in crystal growth. To determine the optimal conditions for obtaining a Si1-xGex crystal from a Si-Ge-Sn solution system, we focused on the change in Gibbs energy and the size of the nanoclusters involved in crystal formation. On this basis, a film with a thickness of 5 µm to 8 µm was experimentally obtained in the temperature range from Тc.s.=1135 K (crystallization start temperature) to Тc.t.=1023 K (crystallization termination …


Progress Of Water Desalination Applications Based On Wettability And Surface Characteristics Of Graphene And Graphene Oxide: A Review, Husam Hussein Ibrahim Eltigani, Yuttanant Boonyongmaneerat Jan 2022

Progress Of Water Desalination Applications Based On Wettability And Surface Characteristics Of Graphene And Graphene Oxide: A Review, Husam Hussein Ibrahim Eltigani, Yuttanant Boonyongmaneerat

Journal of Metals, Materials and Minerals

Seawater desalination techniques have been continuously developed to tackle the water scarcity problems. This review article provides comprehensive discussion on the progress of water desalination applications that utilize the unique wettability and surface characteristics of graphene and graphene oxides, which are being employed as ultrafiltration membranes in either a monolayer or multilayer nanosheet configuration. The interaction of water with graphene materials and their wetting characteristics as well as the controlling factors are examined.  Particularly, the designs and roles of hydrophilic and hydrophobic nanopores and nanochannels are discussed. A focus is also made on recent developments of graphene membrane with respect …


Tailoring The Structural And Optical Properties Of Zinc Oxide With Addition Of Bismuth Oxide Prepared By Two Step Process, Saedah Munirah Sanusi, Ruziana Mohamed, Nurin Jazlina Ahmad, Myzatul Azlyn Muhamad Jan 2022

Tailoring The Structural And Optical Properties Of Zinc Oxide With Addition Of Bismuth Oxide Prepared By Two Step Process, Saedah Munirah Sanusi, Ruziana Mohamed, Nurin Jazlina Ahmad, Myzatul Azlyn Muhamad

Journal of Metals, Materials and Minerals

This study was done to investigate the impact of bismuth oxide (Bi2O3) composites on the zinc oxide (ZnO) properties for varistor applications. ZnO-Bi2O3 samples were prepared using a two-step process, precipitation, and solid-state method. Bi2O3 was added into ZnO at various concentrations (0, 0.5, 1.0 and 1.5 mol%). All samples were characterized using X-ray diffraction (XRD), Scanning electron microscope (SEM) and UV visible spectroscopy. XRD results have shown that the crystallite size of ZnO-Bi2O3 samples became smaller when Bi2O3 was added from 0.5 mol% to 1.0 mol%. However, the crystallite size of ZnO-Bi2O3 increased over 1.0 mol% of Bi2O3 concentration. …


A Molecular Dynamics Simulation Study To Investigate The Effect Of C60 On Thermo- Mechanical And Elastic Properties Of Dgeba/Deta Nanocomposites, Dhritiman Talukdar, Sudipta Halder, Subhankar Das, M.S. Goyat, Abhishek Kumar Mishra Jan 2022

A Molecular Dynamics Simulation Study To Investigate The Effect Of C60 On Thermo- Mechanical And Elastic Properties Of Dgeba/Deta Nanocomposites, Dhritiman Talukdar, Sudipta Halder, Subhankar Das, M.S. Goyat, Abhishek Kumar Mishra

Journal of Metals, Materials and Minerals

Molecular dynamics simulations were performed to investigate the effect of  fullerenes (C60) on the thermal and mechanical properties of a cross-linked epoxy system composed of epoxy resin DGEBA and curing agent DETA. Hence, a comparative investigation was performed on the thermal and mechanical properties of DGEBA/DETA reinforced with 2.3 wt% C60 and neat epoxy systems. Properties such as glass transition temperature (GTT), coefficients of thermal expansion (CTE), and elastic properties at different cross-linking densities. Simulation results indicated that the GTT of the epoxy increased by about 25 K due to the presence of C60. The effect of C60 on the …


Sm3+ Doped Mn-Zn Mixed Ferrites: Synthesis And Characterization, Anjali Shrivastava, A. K. Shrivastava Jan 2022

Sm3+ Doped Mn-Zn Mixed Ferrites: Synthesis And Characterization, Anjali Shrivastava, A. K. Shrivastava

Journal of Metals, Materials and Minerals

Pure and Samarium (Sm3+) doped Mn-Zn ferrites were synthesized using Co-precipitation method. The Sm3+ concentration varied from 0.1% to 0.3%. This was added to the solution during the synthesis of Mn-Zn ferrites (Mn0.5Zn0.5Fe2O4) at room temperature. The precipitate so obtained was annealed at 200℃ for 4 h and then crushed to powder. The powdered material was subjected to structural, morphological, compositional, optical and magnetic characterization. XRD shows cubic spinal structure with crystallite size of the order of 6 nm. TEM and SEM images show spherical particles are in good agreement with XRD data. EDAX indicates stoichiometry of elements present in …


Multi-Responsive Rotaxane With Tunable Fluorescence Under Azobenzene-Based Benzoxazine Structure, Sorapat Niyomsin, Suwabun Chirachanchai, Toshikazu Takata Jan 2022

Multi-Responsive Rotaxane With Tunable Fluorescence Under Azobenzene-Based Benzoxazine Structure, Sorapat Niyomsin, Suwabun Chirachanchai, Toshikazu Takata

Journal of Metals, Materials and Minerals

Rotaxanes are known for the mechanically interlocked molecules for decades. The present work demonstrates a method to prepare multi-responsive rotaxane by conjugating with a multi-responsive supramolecule. Benzoxazine dimers, N, N’-bis(3,5-dimethyl-2-hydroxybenzyl) methylamine derivatives, are good models because their simple chemistry. An azobenzene containing benzoxazine with remaining hydroxyl group for further conjugation with rotaxane was designed. The ring opening of rotaxane using fluorescent phenol provides benzoxazine dimer with metal ion responsive and fluorescent properties. Based on this concept, light responsive benzoxazine conjugated with rotaxane system shows light, metal ion and rotaxane shuttling responsiveness which can be followed by fluorescent signals. The present …


Synthesis Of Cacu3ti4o12 Utilizing Eggshell Waste As A Calcium Source: Structure, Morphology, And Dielectric Properties, Akhiruddin Maddu, Habiburahmat Yulwan, Irmansyah Sofian, Ahmad Sofyan Sulaeman, Permono Adi Putro Jan 2022

Synthesis Of Cacu3ti4o12 Utilizing Eggshell Waste As A Calcium Source: Structure, Morphology, And Dielectric Properties, Akhiruddin Maddu, Habiburahmat Yulwan, Irmansyah Sofian, Ahmad Sofyan Sulaeman, Permono Adi Putro

Journal of Metals, Materials and Minerals

Calcium copper titanate (CaCu3Ti4O12, CCTO) has been synthesized utilizing eggshell waste as a source of calcium through the hydrothermal route, followed by annealing treatment at temperatures 950°C and 1050°C. The sample with annealing temperatures of 950°C and 1050°C is named CTO-A and CCTO-B, respectively. The structure, microstructure, and dielectric properties of CCTO samples were investigated. The X-ray diffraction analysis results confirmed that the pure phase of CCTO has been successfully synthesized as identified in the diffraction pattern. The average crystallite size of CCTO is quite large due to annealing at high-temperature. The morphology of CCTO by electron microscopy investigation showed …


Extraction, Characterization, And Improvement Of Banana Stem And Water Hyacinth Cellulose Fibers As Reinforcement In Cementitious Composites, Supranee Laoubol, Piyalak Ngernchuklin, Malinee Leekrajang Jan 2022

Extraction, Characterization, And Improvement Of Banana Stem And Water Hyacinth Cellulose Fibers As Reinforcement In Cementitious Composites, Supranee Laoubol, Piyalak Ngernchuklin, Malinee Leekrajang

Journal of Metals, Materials and Minerals

A sequential treatment for cellulose isolation from the banana stalk (BNSF) and water hyacinth (WHCF) based on the simultaneous fractionation of hemicelluloses and lignin by alkaline peroxide extraction has been studied. The crude cellulose was then purified by using an acetic acid-nitric acid mixture and further bleached with acidified sodium chlorite. The isolated cellulose was subject to analyses of associated hemicelluloses and lignin content. The structural changes between crude and purified celluloses were revealed by using FT-IR, TGA, and XRD analyses. The successive alkaline and bleaching treatments led to a significant loss in hemicelluloses and lignin, enrichment of the cellulose …


A Holistic Review On The Synthesis Techniques Of Spinel Structured Lithium Cobalt Manganese Tetroxide, Chee Wayne Tan, Zul Hilmi Che Daud, Zainab Asus, Mohd Hasbullah Idris, Izhari Izmi Mazali, Mohd Ibthisham Ardani, Mohd Kameil Abdul Hamid Jan 2022

A Holistic Review On The Synthesis Techniques Of Spinel Structured Lithium Cobalt Manganese Tetroxide, Chee Wayne Tan, Zul Hilmi Che Daud, Zainab Asus, Mohd Hasbullah Idris, Izhari Izmi Mazali, Mohd Ibthisham Ardani, Mohd Kameil Abdul Hamid

Journal of Metals, Materials and Minerals

Spinel structured lithium cobalt manganese tetroxide (LiCoMnO4) which exhibit unrivalled reduction potential of 5.3V (vs. Li0 | Li+) was identified to be one of the potential cathode candidates for next generation lithium-ion batteries offering high voltage output and energy density. The focal point of this article is to holistically review relevant techniques established for the synthesis of LiCoMnO4 compound, particularly solid-state reaction, sol-gel synthesis, flux method and hydrothermal technology. Electrochemical performances of lithium cobalt manganese tetroxide (LiCoMnO4) synthesised via the four distinctive approaches as well as the critical process parameters will be compared and scrutinised. Adversities associated with deoxygenation in …


Ecological Dyeing Of Acrylic Yarn With Colorant Derived From Natural Lac Dye, Nattaya Vuthiganond, Pisutsaran Chitichotpanya, Monthon Nakpathom, Rattanaphol Mongkholrattanasit Jan 2022

Ecological Dyeing Of Acrylic Yarn With Colorant Derived From Natural Lac Dye, Nattaya Vuthiganond, Pisutsaran Chitichotpanya, Monthon Nakpathom, Rattanaphol Mongkholrattanasit

Journal of Metals, Materials and Minerals

In recent years, the application of natural dyes in textile coloration has attracted significant study interest. In this current study, the bio-based dyeing of synthetic textile fiber, specifically acrylic yarn, with natural lac dye was investigated. The yarn was dyed using a meta-mordanting technique. The dyeing parameters, including temperature, time, pH of the dye bath, dye concentration, mordant type, and mordant concentration, were examined. Two eco-mordants, aluminium sulfate and ferrous sulfate, are compared against an eco-restricted copper sulfate in terms of color strength and fastness. The results demonstrated that the meta-mordanting technique can be used to dye acrylic fiber using …


Preparation Of Bacterial Cellulose Film From Rotten Fruits For Mulching Film Application, Nattapong Pinpru, Varol Intasanta, Thitirat Charoonsuk, Supharada Khaisaat, Oubonwan Sawanakarn, Naratip Vittayakorn, Somsak Woramongkolchai Jan 2022

Preparation Of Bacterial Cellulose Film From Rotten Fruits For Mulching Film Application, Nattapong Pinpru, Varol Intasanta, Thitirat Charoonsuk, Supharada Khaisaat, Oubonwan Sawanakarn, Naratip Vittayakorn, Somsak Woramongkolchai

Journal of Metals, Materials and Minerals

This research aims to reduce production capital costs and added value to natural products. The bio-mulching film was prepared by bacterial cellulose (BC) “Acetobacter xylinum”, extracted from three rotten fruits, grape, coconut, and pineapple under standard tests in the laboratory. The analysis from the FTIR technique confirmed to cellulose molecular vibration of BC films. XRD pattern was matched to structure crystallinity of JCPDS standard file which possessed a high percentage of crystallinity. The SEM micrographs were also revealed the 3D nanofiber network structure. The absorption capability of BC films could highly hold water in its structure. In addition, …


Effect Of Pore Modifiers On Physical And Mechanical Properties Of High-Performance Cement Mortar, Kisun Chunti, Sureerat Polsilapa, Parinya Chakartnarodome, Passakorn Sonprasarn, Wichit Prakaypan, Edward A. Laitila Jan 2022

Effect Of Pore Modifiers On Physical And Mechanical Properties Of High-Performance Cement Mortar, Kisun Chunti, Sureerat Polsilapa, Parinya Chakartnarodome, Passakorn Sonprasarn, Wichit Prakaypan, Edward A. Laitila

Journal of Metals, Materials and Minerals

Two different pore modifiers (PM), artificial pozzolan (AP) and modified aluminum salt (MA), were introduced into the composition of a High Performance Cement Mortar (HPCM). The chemical compositions of raw materials, ordinary Portland cement (OPC), sea sand, AP, and MA were identified by X-Ray Fluorescence spectrometry (XRF). The hydration kinetics resulting from each PM added to the HPCM was investigated by the relevance of hydration temperature. The mechanical properties such as compressive strength, dynamic modulus of rupture, and dynamic modulus of elasticity were measured as well as water absorption and density. Additionally, Scanning Electron Microscope (SEM) and Brunauer-Emmett-Teller (BET) were …


The Effects Of Double Intercritical Annealing On Microstructure And Mechanical Properties Of 0.107c-2.39mn-0.453si Dual Phase Steel, Nithi Saenarjhan, Gobboon Lothongkum, Jatupon Opapaiboon Jan 2022

The Effects Of Double Intercritical Annealing On Microstructure And Mechanical Properties Of 0.107c-2.39mn-0.453si Dual Phase Steel, Nithi Saenarjhan, Gobboon Lothongkum, Jatupon Opapaiboon

Journal of Metals, Materials and Minerals

In this study, double intercritical annealing was applied to modify the mechanical properties of 0.107%C-2.39%Mn-0.453%Si dual phase steel. The effects of the double intercritical annealing (DIA) method were investigated via microstructure observation and tensile test, and then compared with the single intercritical annealing (SIA) method. By increasing the intercritical annealing temperature, yield and tensile strengths increase while ductility decreases primarily due to the increase of martensite fraction. DIA leads to a slight reduction of the ferrite size and the martensite fraction regardless of the intercritical annealing temperature. Tensile results showed that DIA increases ductility without losing significant amount of strength. …


Utilization Of Rubber Tree Bark As A Carbon Source For Electric Arc Furnace Steelmaking: Carbon/Slag Interaction At 1550℃, Wasutha Bandityaruck, Weerayut Srichaisiriwaech, Somyote Kongkarat Jan 2022

Utilization Of Rubber Tree Bark As A Carbon Source For Electric Arc Furnace Steelmaking: Carbon/Slag Interaction At 1550℃, Wasutha Bandityaruck, Weerayut Srichaisiriwaech, Somyote Kongkarat

Journal of Metals, Materials and Minerals

Rubber tree bark (RTB) is a biomass that consists of wood and rubber parts, with high volatile and ash contents. This research reports the utilization of RTB as a carbon source in Electric Arc Furnace steelmaking processes. RTB was mixed with coal at a ratio of 1:1 by weight, and heated at 1000℃ under an argon atmosphere for 1 h. The chars were brought to contact with Electric Arc Furnace slag (37.86 wt% Fe2O3) at 1550℃ for 15 min to investigate their interaction and compared to coal. Coal showed short slag foaming behavior with a foaming time of 4 min, …


Green Acidic Catalyst From Cellulose Extracted From Sugarcane Bagasse Through Pretreatment By Electron Beam Irradiation And Subsequent Sulfonation For Sugar Production, Thitirat Rattanawongwiboon, Prim Chanklinhorm, Threeraphat Chutimasakul, Tanagorn Kwamman, Wilasinee Kingkam, Rattapon Khamlue, Sarute Ummartyotin Jan 2022

Green Acidic Catalyst From Cellulose Extracted From Sugarcane Bagasse Through Pretreatment By Electron Beam Irradiation And Subsequent Sulfonation For Sugar Production, Thitirat Rattanawongwiboon, Prim Chanklinhorm, Threeraphat Chutimasakul, Tanagorn Kwamman, Wilasinee Kingkam, Rattapon Khamlue, Sarute Ummartyotin

Journal of Metals, Materials and Minerals

The objective of this research is to prepare a green acidic catalyst from cellulose derived from sugarcane bagasse (SB). Initially, SB was pretreated by electron beam irradiation with a dose of 50 kGy to 200 kGy and subsequent acid hydrolysis to obtain cellulose. The cellulose derived from SB was carbonized at different temperatures for 4 h and then sulfonated with heating at 120°C under reflux. Fourier transform infrared spectroscopy (FTIR) and X-ray diffraction (XRD) were used to confirm the successful preparation of acidic catalyst by irradiation pretreatment and subsequent sulfonation. The cellulose derived from irradiated SB at the lowest dose …


Sugarcane Waste-Derived Activated Carbon For Lithium-Sulfur Batteries With Enhanced Performance By Thiourea Doping, Yanisa Thumkaew, Vipada Petson, Thanapat Jorn-Am, Natee Sirisit, Chalathorn Chanthad, Jedsada Manyam, Xiao Liang, Shufeng Song, Peerasak Paoprasert Jan 2022

Sugarcane Waste-Derived Activated Carbon For Lithium-Sulfur Batteries With Enhanced Performance By Thiourea Doping, Yanisa Thumkaew, Vipada Petson, Thanapat Jorn-Am, Natee Sirisit, Chalathorn Chanthad, Jedsada Manyam, Xiao Liang, Shufeng Song, Peerasak Paoprasert

Journal of Metals, Materials and Minerals

In this work, bio-renewable sugarcane bagasse and leaf were utilized for the preparation of activated carbon (BAC and LAC), which was then employed as the host material in lithium-sulfur (Li-S) batteries. The activated carbon, for the first time, was doped with nitrogen and sulfur via the addition of thiourea during the synthesis of carbon char via a simple, one-step hydrothermal method. The activated carbon was used to fabricate the cathodes of the CR2032 coin cells. The amount of added thiourea was found to influence the nitrogen/sulfur content, porosity, amorphous/graphitic structure, and performance of the activated carbon.  At 0.2C, BAC2 (4.15 …


Preparation Of Spent Coffee Grounds-Rubber Composites Using Natural Rubber Latex As Binder, Varittha Mitsaichon, Kanok-On Ruaesrijan, Pranee Phinyocheep, Taweechai Amornsakchai, Preeyanuch Junkong, Sombat Thanawan Jan 2022

Preparation Of Spent Coffee Grounds-Rubber Composites Using Natural Rubber Latex As Binder, Varittha Mitsaichon, Kanok-On Ruaesrijan, Pranee Phinyocheep, Taweechai Amornsakchai, Preeyanuch Junkong, Sombat Thanawan

Journal of Metals, Materials and Minerals

The aim of this work was to explore the use of natural rubber latex (NRL) as a natural binder (according to the BCG concept) to replace commercial synthetic binders such as polyurethane resin. A composite sheet of spent coffee ground (SCG) and natural rubber (NR) was prepared by mixing of SCG in NRL compounds having concentrations of 30% and 60% dry rubber content (DRC). The amount of SCG in the composites was varied from 33 to 167 part per hundred rubber (phr). The mixture was cast in a mold to form a thin sheet then left drying at room temperature …


Erratum To: In Search For Near-Room-Temperature Superconducting Critical Temperature Of Metal Superhydrides Under High Pressure: A Review, Udomsilp Pinsook Jan 2022

Erratum To: In Search For Near-Room-Temperature Superconducting Critical Temperature Of Metal Superhydrides Under High Pressure: A Review, Udomsilp Pinsook

Journal of Metals, Materials and Minerals

No abstract provided.


Development Of Oxide Dispersion Strengthening (Ods) Alloys Powder For Additive Manufacturing, Changyu Ma Jan 2022

Development Of Oxide Dispersion Strengthening (Ods) Alloys Powder For Additive Manufacturing, Changyu Ma

Graduate Theses, Dissertations, and Problem Reports (ETD)

Additive manufacturing (AM) fabricated oxide dispersion strengthened (ODS) alloys are given high expectations for critical structural components such as the first stage turbine blade for their excellent creep strength and oxidation resistance compared to superalloys. However, the powder feedstock processing is still an open question since current state-of-the-art processes are not capable of achieving ultrafine strengthening elements such as Y2O3 in powder which leads to agglomeration issues in as-consolidated alloys. In this research, the oxidation behavior and stability of ultrafine oxide in AM-printed alloys using mechanically alloyed powders were evaluated at 1100 oC. In addition, a …


Functionally Magnetic Gradient Copper-Nickel Material Fabricated Via Directed Energy Deposition, Vy Tran Phuong Nguyen Jan 2022

Functionally Magnetic Gradient Copper-Nickel Material Fabricated Via Directed Energy Deposition, Vy Tran Phuong Nguyen

Graduate Theses, Dissertations, and Problem Reports (ETD)

Functionally gradient materials (FGMs) of CuSn10 and Inconel 718 were fabricated via a hybrid directed energy deposition (DED) system. The objective of the present thesis is to determine the feasibility of manufacturing CuSn10 and Inconel 718 FGMs via DED and investigate the physical and mechanical properties and the microstructures of the resulting FGMs. The physical tests comprised of conductivity and Seebeck coefficient measurements. The microstructure analysis and mechanical testing include microscopic imaging, scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), and hardness test. In addition, compressive strength test was performed to analyze the interface bonding behaviors.


Influence Of Saturation Nonequilibrium And Variable Operation Conditions On The Electromechanical Performance Of Ionic Polymer Metal Composite Actuator Architectures, Allison Maria Arnold Jan 2022

Influence Of Saturation Nonequilibrium And Variable Operation Conditions On The Electromechanical Performance Of Ionic Polymer Metal Composite Actuator Architectures, Allison Maria Arnold

Graduate Theses, Dissertations, and Problem Reports (ETD)

Electroactive polymers (EAPs) continue to gain attention for their potential to offer unique and versatile solutions in the soft robotic and flexible electronic industries. Ionic Polymer-Metal Composites (IPMCs) are a class of ionic-type EAPs which can be configured as capacitor actuators with very low voltage requirements (≤ 5 V AC or DC). Their compact, portable, and lightweight properties, coupled with a biomimetic bending actuation response make them ideal for human-machine integrated technologies such as medical implants, active skins, and artificial muscles. The Nafion-based IPMC can be described as a layered composite capacitor containing an ionic polymer core, sandwiched between chemically …


Modeling, Fabrication, And Characterization Of Rf-Based Passive Wireless Sensors Composed Of Refractory Semiconducting Ceramics For High Temperature Applications, Kavin Sivaneri Varadharajan Idhaiam Jan 2022

Modeling, Fabrication, And Characterization Of Rf-Based Passive Wireless Sensors Composed Of Refractory Semiconducting Ceramics For High Temperature Applications, Kavin Sivaneri Varadharajan Idhaiam

Graduate Theses, Dissertations, and Problem Reports (ETD)

Real-time health monitoring of high temperature systems (>500oC) in harsh environments is necessary to prevent catastrophic events caused by structural failures, varying pressure, and chemical reactions. Conventional solid-state temperature sensors such as resistance temperature detectors (RTDs) and thermocouples are restricted by their operating environments, sensor dimensions and often require external power sources for their operation. The current work presents the research and development of RF-based passive wireless sensing technology targeting high temperatures and harsh environmental conditions. Passive wireless devices are generally classified as near-field and far-field devices based on the interrogation distance. Near-field sensors are placed at …


Theoretical Investigation Of Sofc/Soec Degradation Mechanisms And Mitigations, Fuming Jiang Jan 2022

Theoretical Investigation Of Sofc/Soec Degradation Mechanisms And Mitigations, Fuming Jiang

Graduate Theses, Dissertations, and Problem Reports (ETD)

America has a rapid growth in the development of renewable power generation in the twenty-first century. Hydrogen energy especially is the major topic in development of renewable power generation because it has the ability to provide for energy in transportation, combined heat and power generation and energy storage systems with little or no impact on the global ecosystem. Electrolysis and fuel cell technology for hydrogen energy storage has brought interest to the researchers worldwide.

Solid oxide electrolysis cells (SOECs) and Solid oxide fuel cells (SOFCs) are promising hydrogen energy technologies that can utilize chemical energy to produce and store electricity. …


Microwave-Assisted Carbon Nanotube Growth From Methane On Surface Catalyst Exsolving Perovskite Oxide, Angela M. Deibel Jan 2022

Microwave-Assisted Carbon Nanotube Growth From Methane On Surface Catalyst Exsolving Perovskite Oxide, Angela M. Deibel

Graduate Theses, Dissertations, and Problem Reports (ETD)

The novel method of using a perovskite exsolution catalyst, strontium titanium nickel oxide (STNO), proved capable of simultaneously producing carbon nanotubes (CNTs) and COx-free hydrogen during methane decomposition under microwave irradiation. An optimization of common perovskite materials was conducted for microwave-responsiveness with the results reported in this study. Out of the materials screened, strontium titanium nickel oxide (STNO) was the best candidate to achieve an acceptable methane conversion rate as well as a decent responsiveness to microwave. STNO was further optimized through Ni content, reduction dwell time, and reduction temperature to produce the best methane conversion and CNT …


Minimizing Cr-Evaporation From Balance Of Plant Components By Utilizing Cost-Effective Alumina-Forming Austenitic Steels, Lingfeng Zhou Jan 2022

Minimizing Cr-Evaporation From Balance Of Plant Components By Utilizing Cost-Effective Alumina-Forming Austenitic Steels, Lingfeng Zhou

Graduate Theses, Dissertations, and Problem Reports (ETD)

A solid oxide fuel cell (SOFC) is a clean and efficient energy conversion device. The development of intermediate-temperature SOFCs has made it preferable to use metallic interconnects (MICs) to greatly reduce the cost and significantly increase the efficiency compared to ceramic interconnect materials. However, gaseous chromium species will evaporate from the chromium-containing layer formed on the surface of commonly used MICs and balance of plant (BoP) components. Volatile chromium species have been shown to form solid deposits which poison the cathodes of SOFCs, causing drastic cell performance degradation and thereby limiting commercialization. In order to alleviate the Cr poisoning and …


Low-Temperature Hot Corrosion Of Boilers In The Coal-Fired Power Plant, Artem Gavrilev Jan 2022

Low-Temperature Hot Corrosion Of Boilers In The Coal-Fired Power Plant, Artem Gavrilev

Graduate Theses, Dissertations, and Problem Reports (ETD)

Hot corrosion of materials has remained a relevant topic since its introduction in the second half of the 20th century as gas turbine engines suffered severe corrosion during operation over seawater. Hot corrosion is observed in a multitude of high temperature components, such as gas turbines, power plants, refineries, fluidized bed combustion systems, pipelines, and industrial waste incinerators.

Hot corrosion experiments in the laboratory have been conducted under constant temperatures of interest, while in the actual working conditions of coal-fired power plants, boiler tubes are cooled down via water cooling from a relatively high fireside temperature, e.g., 1000°C. To investigate …


Effects Of Vacancies And Electron Temperature On The Electron Phonon Coupling In Cubic Silicon Carbide And Their Connection To The Inelastic Thermal Spike, Salah Al-Smairat Jan 2022

Effects Of Vacancies And Electron Temperature On The Electron Phonon Coupling In Cubic Silicon Carbide And Their Connection To The Inelastic Thermal Spike, Salah Al-Smairat

Doctoral Dissertations

“The electron-phonon interaction is an important interaction in many solids as it influences transport phenomena and related quantities such as the electrical and thermal conductivities, especially in nuclear and space applications. The importance of the electron-phonon interaction in primary damage production in 3C-SiC is the subject of this research.

The electron-phonon coupling factor was calculated using a hybrid Density Functional Perturbation Theory - Classical Electron Gas model. The coupling factor was calculated as a function of electron temperature in pristine and defective 3C-SiC, and relaxed defective cells. The electron-phonon coupling is found to depend strongly on the electronic temperature and …


Corrosion Protection Mechanisms Of Trivalent Chromium Based Passivations On Γ-Znni Coated Al6061-T6 Alloy, Kevin Foster Jan 2022

Corrosion Protection Mechanisms Of Trivalent Chromium Based Passivations On Γ-Znni Coated Al6061-T6 Alloy, Kevin Foster

Doctoral Dissertations

“The role of cobalt in trivalent chromium passivations (TCPs) to improve corrosion resistance of γ-ZnNi coated steel and aluminum is based on its effect on hexavalent chromium content in the passive layer. Investigations of both a cobalt-containing and cobalt-free TCP on SAE 1008 steel indicated that both passivations protect well for up to 1000 hours in neutral salt spray exposure (SSE). A repetition on Al 6061-T6 alloy indicated that TCP performed much better than cobalt-free TCP implicating the underlying substrate. Optical and electron micrographs indicated physical changes such as crack thickness, crack density, passivation porosity, and passivation thickness existed between …


Investigation Of The Thermodynamics Of Iron Phosphate Melts And Stability Of Iron Phosphate Glasses: Effects Of Composition And Iron Redox Ratio, Melodie Linda Schmitt Jan 2022

Investigation Of The Thermodynamics Of Iron Phosphate Melts And Stability Of Iron Phosphate Glasses: Effects Of Composition And Iron Redox Ratio, Melodie Linda Schmitt

Doctoral Dissertations

“Iron phosphate glasses with Fe/P = 0.33 - 0.67, O/P = 3.0 - 3.5 and Fe2+/ΣFe = 0.16- 0.52 were prepared by altering batch compositions and melt conditions. Thermal analyses indicate polyphosphate glasses with intermediate chain lengths are most stable against devitrification. Heterogeneous crystallization occurs on the glass surface and is dependent on iron valence state, particle size, heating rate, temperature and oxygen availability in the atmosphere. Oxidation of ferrous iron on the glass surface occurs at temperatures as low as Tg, and thus crystallization behavior and stability can be altered via post-melt heat treatments. A novel preparation …


Bulk Nanostructured Steels For Nuclear Reactor And Extreme Environment Applications, Maalavan Arivu Jan 2022

Bulk Nanostructured Steels For Nuclear Reactor And Extreme Environment Applications, Maalavan Arivu

Doctoral Dissertations

"Candidate accident tolerant FeCrAl fuel (ATF) claddings for light water reactors (LWRs) need to be thinner than current Zircaloys owing to higher neutronic penalty, demanding an improvement in strength. Therefore, equal channel angular pressing (ECAP), and high-pressure torsion (HPT) were used to produce bulk ultra-fine grained and nanocrystalline Kanthal-D [KD; Fe-21Cr-5Al-0.026C (wt.%) alloy] which resulted in an improvement in strength of up to 3 times their nominal strength from grain boundary strengthening, and dislocation strengthening. Dynamic recovery was promoted due to ECAP at 520 oC rendering it with a large area fraction of less mobile low angle grain boundaries (LAGBs) …