Microwave Heating With Potassium Hydroxide Activation For Converting Water Hyacinth Into Activated Carbon,
2017
Faculty of Engineering
Microwave Heating With Potassium Hydroxide Activation For Converting Water Hyacinth Into Activated Carbon, Purichaya Kuptajit
Chulalongkorn University Theses and Dissertations (Chula ETD)
Activated carbon was successfully synthesized form dried water hyacinth via KOH activation with microwave irradiation. Resultant activated carbon with large specific surface area can be produced using microwave irradiation for 1 minute which was consumed less time than conventional heating method that consumed 1 hour. Microwave irradiation can be a strategic way to improve uniform and quick heating to prepare porous carbons by inducing dipole rotation in atomic scale and creating a frictional force between atoms and molecules within heated material so that volumetric heating inside the heated material is realized. The BET analysis shown that the activated carbon, derived …
Mechanism And Performance Of Solid Non-Particulate Soil (Waxy Solid) Removal From Fabrics,
2017
The Petroleum and Petrochemical College
Mechanism And Performance Of Solid Non-Particulate Soil (Waxy Solid) Removal From Fabrics, Jarussri Chanwattanakit
Chulalongkorn University Theses and Dissertations (Chula ETD)
Methyl palmitate or palmictic acid methyl ester was used as both a model solid fat and an oily soil was removed from cotton and polyester above and below the melting point. Surfactants studied were extended surfactants (C12,13-4PO-SO4Na , C12,14-10PO-2EO-SO4Na and C12,14-16PO-2EO-SO4Na), alcohol ethoxylate (EO9), sodium dodecyl sulfate (SDS), methyl ester sulfonate (MES), methyl ester ethoxylate (MEE), and mixed surfactants between extended surfactant (C12,13-4PO-SO4Na) and sodium mono- and dimethyl naphthalene sulfonate (SMDNS). Above the melting point (~30 ºC) of methyl palmitate, the maximum oily soil removal was found to correlate well with the lowest dynamic interfacial tension (IFT) with increasing washing …
Use Of Anionic Surfactant In Regeneration Of Spent Activated Carbon,
2017
The Petroleum and Petrochemical College
Use Of Anionic Surfactant In Regeneration Of Spent Activated Carbon, Buch Kallapadee
Chulalongkorn University Theses and Dissertations (Chula ETD)
Surfactant-enhanced carbon regeneration (SECR) is a regeneration process that utilizes surfactant solution to dissolve adsorbed organic from spent activated carbon. Sodium dodecyl sulfate (SDS) and methyl ester sulfonate (MES) are anionic surfactants that are used in this investigation. The study is done in 3 steps: sample characterization, regeneration and water flushing step. The proximate analysis of spent activate carbon contains 27.5% moisture, 27.2% volatile matter content, 10% total ash content. The spent activated carbon also contains 18.4% benzene. In regeneration step, the benzene removal by SDS and MES solution were compared. The effect of concentration, solution flow rate and temperature …
Conversion Of Palm Fatty Acid Distillate To Biojet Fuel Over Ni/Hy-Pditioz Core-Shell Catalyst,
2017
The Petroleum and Petrochemical College
Conversion Of Palm Fatty Acid Distillate To Biojet Fuel Over Ni/Hy-Pditioz Core-Shell Catalyst, Chanakran Homla-Or
Chulalongkorn University Theses and Dissertations (Chula ETD)
Generally, jet fuel is obtained from the refining of petroleum feedstock in order to powering the aircrafts, hence the world is more confronting a problem with increasing air pollution emission. Therefore, biojet fuel is introduced as an alternative way to solve the problem. Biojet fuel can be derived from bio-based feedstock such as palm fatty acid distillate or PFAD. Which is converted via the deoxygenation reaction in order to remove oxygenated compounds, carboxylic and carbonyl groups in the fatty acid molecules then followed by hydrocracking and hydroisomerization reaction. The heterogeneous catalyst is used to convert PFAD into saturated paraffins in …
Analysis Of Biomarkers In Crude Oils, Processed Oils, And Spilled Oils,
2017
The Petroleum and Petrochemical College
Analysis Of Biomarkers In Crude Oils, Processed Oils, And Spilled Oils, Pornpetch Hattakijvilai
Chulalongkorn University Theses and Dissertations (Chula ETD)
Oil spills in marine are commonly come from crude oils, fuel oils and lubricating oils by accidental leakages or purposeful discharges to the surroundings. As crude oil and fuel oil which refined from the heavy fraction of crude oil have similar physical properties especially if they were weathering, it is difficult to differentiate that the spill has the origin from crude oil or fuel oil. In this study, five crude oils, two fuel oils, one fresh and one used lube oil that are typically used in Thailand were investigated. All crude oils, fuel oils, and used lube oil were weathered …
ปฏิกิริยาทรานส์เอสเทอริฟิเคชันของกลีเซอรอลและไดเมทิลคาร์บอเนตโดยใช้ตัวเร่งปฏิกิริยาโซเดียมฟอสเฟต,
2017
คณะวิศวกรรมศาสตร์
ปฏิกิริยาทรานส์เอสเทอริฟิเคชันของกลีเซอรอลและไดเมทิลคาร์บอเนตโดยใช้ตัวเร่งปฏิกิริยาโซเดียมฟอสเฟต, แพรพรรณ ศรีสอ้าน
Chulalongkorn University Theses and Dissertations (Chula ETD)
งานวิจัยนี้เป็นการศึกษาปฏิกิริยาทรานส์เอสเทอริฟิเคชันของกลีเซอรอลและไดเมทิลคาร์บอเนต โดยใช้ตัวเร่งปฏิกิริยาโซเดียมฟอสเฟต โดยทำการทดลองในเครื่องปฏิกรณ์แบบกะ ปริมาณตัวเร่งปฏิกิริยาโซเดียมฟอสเฟตร้อยละ 1 3 และ 5 โดยน้ำหนักของกลีเซอรอล อัตราส่วนโดยโมลระหว่างกลีเซอรอลต่อไดเมทิลคาร์บอเนต 1:1 1:2 1:3 และ 1:4 อุณหภูมิในการทำปฏิกิริยาที่ 60 70 75 และ 80 องศาเซลเซียส ผลการทดลองแสดงให้เห็นว่า ตัวเร่งปฏิกิริยาโซเดียมฟอสเฟตมีความว่องไวในการทำปฏิกิริยาทรานส์เอสเทอริฟิเคชันของกลีเซอรอลและไดเมทิลคาร์บอเนต การเพิ่มปริมาณของตัวเร่งปฏิกิริยาที่ไม่เกินร้อยละ 3 โดยน้ำหนักของกลีเซอรอล ส่งผลให้ค่าร้อยละผลได้ของกลีเซอรอลคาร์บอเนตมีค่าเพิ่มมากขึ้น การลดลงของอัตราส่วนโดยโมลระหว่างกลีเซอรอลต่อไดเมทิลคาร์บอเนต ส่งผลให้ค่าร้อยละการแปลงผันของกลีเซอรอลและค่าร้อยละผลได้ของกลีเซอรอลคาร์บอเนตเพิ่มมากขึ้น นอกจากนี้ยังช่วยลดการเกิดดีคาร์บอกซิเลชันของกลีเซอรอลคาร์บอเนตไปเป็นไกลซิดอลอีกด้วย ในส่วนของการเพิ่มอุณหภูมิในการทำปฏิกิริยาส่งผลให้ค่าร้อยละการแปลงผันของกลีเซอรอล ค่าร้อยละผลได้ของกลีเซอรอลคาร์บอเนตเพิ่มสูงขึ้นและยังช่วยให้ปฏิกิริยาเข้าสู่สมดุลเร็วมากยิ่งขึ้น
Effects Of Ratio Of Oxygen Partial Pressure To Propane Partial Pressure And Temperature On Non-Faradaic Electrochemical Modification Of Catalytic Activity (Nemca) Of Propane Oxidation On Pt-Ysz,
2017
Faculty of Engineering
Effects Of Ratio Of Oxygen Partial Pressure To Propane Partial Pressure And Temperature On Non-Faradaic Electrochemical Modification Of Catalytic Activity (Nemca) Of Propane Oxidation On Pt-Ysz, Sareerat Thongsrigate
Chulalongkorn University Theses and Dissertations (Chula ETD)
The effects of electrochemical promotion of catalysis (EPOC) or non-faradaic electrochemical modification of catalytic activity (NEMCA) of sputtered-Pt catalyst on Y2O3-stabilized-ZrO2 (YSZ) disk, an O2- conductor, were studied with the catalytic reaction of propane oxidation, which was chosen to model the combustion of residual hydrocarbons in catalytic converters. In electrochemical promotion, the catalyst was electrochemically promoted by applying electric current or potential between the Pt and Au electrodes of YSZ disk. Catalytic performances were studied under the ratio of oxygen partial pressure to propane partial pressure difference of 1 to 5 and partial pressure of propane was 1 kPa, in …
Enzymatically Active Microspheres For Self-Propelled Colloidal Engines,
2017
CUNY City College of New York
Enzymatically Active Microspheres For Self-Propelled Colloidal Engines, Jungeun Park
Dissertations and Theses
Micro- and nano-motors have attracted numerous attentions from various scientific areas due to their potential applications. Most studies on self-propelled colloidal engines have exploited catalytic decomposition of hydrogen peroxide to drive the motor. Since the hydrogen peroxide is caustic, it is not suitable to use in biological applications, encouraging people to develop “greener” fuels. The aim of this research is to study a new transduction mechanism for self-propulsion not tied to hydrogen peroxide, and which can in particular be used with biological molecules as fuels. In this study, we focus on making particles with enzymatic activity which can effectively decompose …
Ionic Liquids Tethered To Activated Carbon For Capture Of Airborne Toxins,
2017
CUNY City College
Ionic Liquids Tethered To Activated Carbon For Capture Of Airborne Toxins, Devin Peck
Dissertations and Theses
Ionic liquids (ILs) were investigated for functionalization of activated carbon (AC) adsorbents for the filtration of warfare toxins. Preliminary steps were taken by testing absorption capacity of neat ILs and tethering ionic liquids to the surface of AC. AC is known to have good adsorption ability for warfare agents. Functionalizing the AC with ILs could enhance the capture ability significantly. ILs have been found to be good absorbents for a variety of gaseous species. The absorption selectivity and capacity can be tuned by changing the anion-cation pair. By tethering ILs to AC, the beneficial properties of gas absorption from ILs …
A New Thin Layered Structural Coating On A Metal Substrate For Enhanced Hydrogen Production From Steam Methane Reforming,
2017
CUNY City College
A New Thin Layered Structural Coating On A Metal Substrate For Enhanced Hydrogen Production From Steam Methane Reforming, Michael A. Lugo-Pimentel
Dissertations and Theses
In the past decade the use of hydrogen has become more ubiquitous. Its applications range from the upgrading of fossil fuels, to the production of ammonia, to the hydrogenation of fats, to the production of muriatic acid and methanol, all without including the efforts being taken to move towards a hydrogen economy. Its widespread use and its increasing demand lays pressure to find more efficient techniques of hydrogen production. Because the overwhelming majority of hydrogen produced nowadays comes from the steam reforming of natural gas (SMR), it appears that the most adept way to improve yields is by improving the …
Property Analysis Of Silylamine Type Reversible Ionic Liquids For Use As A Thermal Safety Switch In Batteries,
2017
CUNY City College
Property Analysis Of Silylamine Type Reversible Ionic Liquids For Use As A Thermal Safety Switch In Batteries, Showmik Podder
Dissertations and Theses
The increased capacity of the modern battery system has also brought about safety apprehensions. Uncontrollable runaway reactions are a big concern in these systems; these reactions are the result of in situ heat generation and very much increase the risk of explosions and device failures. The concept of this work is to provide a preliminary understanding into the use of a type of switchable solvent known as reversible ionic liquids (RevILs) and their feasibility in being used in electrolytes as a thermally-controlled reversible safety switch. In their pure forms these switchable solvents experience a dramatic change in their properties upon …
2016-2017 Che Newsletter,
2017
Michigan Technological University
2016-2017 Che Newsletter, Department Of Chemical Engineering, Michigan Technological University
Department of Chemical Engineering Newsletters
Table of Contents
- Department
- Convocation
- Student News
- Faculty
- Alumni & Friends
Fabrication Of Flexible, Biofunctional Architectures From Silk Proteins,
2017
Virginia Commonwealth University
Fabrication Of Flexible, Biofunctional Architectures From Silk Proteins, Ramendra K. Pal
Theses and Dissertations
Advances in the biomedical field require functional materials and processes that can lead to devices that are biocompatible, and biodegradable while maintaining high performance and mechanical conformability. In this context, a current shift in focus is towards natural polymers as not only the structural but also functional components of such devices. This poses material-specific functionalization and fabrication related questions in the design and fabrication of such systems. Silk protein biopolymers from the silkworm show tremendous promise in this regard due to intrinsic properties: mechanical performance, optical transparency, biocompatibility, biodegradability, processability, and the ability to entrap and stabilize biomolecules. The unique …
Renewable Carbon From Lignin Biomass And Its Electrode And Catalyst Applications In Batteries, Supercapacitors, And Fuel Cells,
2017
Virginia Commonwealth University
Renewable Carbon From Lignin Biomass And Its Electrode And Catalyst Applications In Batteries, Supercapacitors, And Fuel Cells, Muslum Demir
Theses and Dissertations
Over the last century, almost all of the carbon materials developed for the energy industry are derived from fossil fuels. The growing global concerns about energy needs, fossil fuels consumption, and the related environmental issues have motived scientists to find new, green and sustainable energy resources such as the wind, solar and biomass energy. Essentially, biomass-derived materials can be utilized in energy storage and conversion devices such as Li-ion batteries, fuel cells, and supercapacitors. Among the biomass resources, lignin is a high volume byproduct from the pulp and paper industry and is currently burned to generate electricity and steam. The …
Photoelectrochemical Cell Constructed From Bby Membrane With Various Substrate Materials,
2017
Virginia Community Colleges
Photoelectrochemical Cell Constructed From Bby Membrane With Various Substrate Materials, Yang Liu
Theses and Dissertations
Photoelectrochemical cells have been intensively studied in recent years with regard to using thylakoid and photosynthesis system I/II. BBY membrane is another protein complex that has potential to be utilized to build photoelectrochemical cells. Within the BBY membrane lies the highly active photosynthesis system II complex, which upon light activation, generates electrons transported within the electron transport chain during photosynthesis in green plants. This study presents an approach of immobilizing thylakoid or BBY membrane onto gold nanoparticle modified gold plate or multi-walled carbon nanotube (MWCNT) modified indium tin oxide vi (ITO) coated glass substrate. The results show that BBY membrane …
Biomimetic Devices To Drive A Thermodynamically Uphill Reaction Using Light And To Degrade Industrial Waste Stream Components,
2017
University of Kentucky
Biomimetic Devices To Drive A Thermodynamically Uphill Reaction Using Light And To Degrade Industrial Waste Stream Components, Madison Joanne Sloan
Theses and Dissertations--Chemistry
Given the amount of industrial waste produced each year, as well as the accruing amount of greenhouse gases in our atmosphere produced by the burning of fossil fuels, it is imperative that humanity develop environmentally-sustainable sources of energy and methods of remediation. Nature achieves both of these by use of enzymes as catalysts, inspiring interest in designing biomimetic systems capable of harnessing clean energy and remediating industrial waste. This study examined the ability of enzymes in electrochemical and convective flow systems to achieve these tasks. The first portion studied the incorporation of enzymes into an electrochemical system to drive the …
Formulation And Characterization Of Poly(Β-Amino Ester) Networks For Controlled Delivery Of Antioxidants In Pharmaceutical Applications,
2017
University of Kentucky
Formulation And Characterization Of Poly(Β-Amino Ester) Networks For Controlled Delivery Of Antioxidants In Pharmaceutical Applications, Vinod Shivaji Patil
Theses and Dissertations--Chemical and Materials Engineering
Oxidative stress, which reflects an imbalance between oxidants and endogenous antioxidants, is known to be a cause as well as an effect of health conditions such as cancer, diabetes, Alzheimer’s disease, Parkinson’s disease and ischemia-reperfusion injury. Antioxidants have shown promising results in vitro in controlling oxidative stress. However, years of in vitro studies have failed to translate into effective clinical interventions for controlling oxidative stress in the disease conditions. This has been due to low bioavailability and lower stability of antioxidants. Poly(antioxidant β-amino esters) (PABAE) are a recently-developed class of biodegradable polymeric hydrogels that have shown promise in their ability …
Understanding Glycoside Hydrolase Processivity For Improved Biomass Conversion,
2017
University of Kentucky
Understanding Glycoside Hydrolase Processivity For Improved Biomass Conversion, Suvamay Jana
Theses and Dissertations--Chemical and Materials Engineering
In nature, organisms secrete synergistic enzyme cocktails to deconstruct crystalline polysaccharides, such as cellulose and chitin, to soluble sugars. The cocktails consist of multiple classes of processive and non-processive glycoside hydrolases (GH) that aid in substrate accessibility and reduce product inhibition. Processive GHs attach to chain ends and hydrolyze many glycosidic linkages in sequence to produce disaccharide units before dissociation, and as such, are responsible for the majority of hydrolytic bond cleavages. Accordingly, processive GHs are targets for activity improvements towards efficient and economical biomass conversion. However, the mechanism and factors responsible for processivity are still not understood completely at …
Synthesis And Energy Applications Of Mesoporous Titania Thin Films,
2017
University of Kentucky
Synthesis And Energy Applications Of Mesoporous Titania Thin Films, Syed Z. Islam
Theses and Dissertations--Chemical and Materials Engineering
The optical and electronic properties of TiO2 thin films provide tremendous opportunities in several applications including photocatalysis, photovoltaics and photoconductors for energy production. Despite many attractive features of TiO2, critical challenges include the innate inability of TiO2 to absorb visible light and the fast recombination of photoexcited charge carriers. In this study, mesoporous TiO2 thin films are modified by doping using hydrogen and nitrogen, and sensitization using graphene quantum dot sensitization.
For all of these modifiers, well-ordered mesoporous titania films were synthesized by surfactant templated sol-gel process. Two methods: hydrazine and plasma treatments have been …
Functionalization Of Silver Nanoparticles On Membranes And Its Influence On Biofouling,
2017
University of Kentucky
Functionalization Of Silver Nanoparticles On Membranes And Its Influence On Biofouling, Conor G. Sprick
Theses and Dissertations--Chemical and Materials Engineering
Ultrafiltration (UF) processes are often used as pretreatment before more retentive/costly processes, such as nanofiltration and reverse osmosis. This study shows the results of low-biofouling nanocomposite membranes, loaded with casein-coated silver nanoparticles (casein-Ag-NPs). Membranes were cast and imbedded with Ag-NPs using two approaches, physical blending of Ag-NPs in the dope solution (PAg-NP/CA membranes) and chemical attachment of Ag-NPs to cast membranes (CAg-NP/CA membranes), to determine their biofouling control properties. The functionalization of Ag-NPs onto the CA membranes was achieved via attachment with functionalized thiol groups with the use of glycidyl methacrylate (GMA) and cysteamine chemistries. The …
