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Food Science Faculty Publications and Presentations

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Variations In Attitudes Toward Working With Robots And Concerns About Robots Replacing Jobs Among Midwesterners, Kawsheha Muraleetharan, Julia Mcquillan, Philip G. Crandall, Corliss A. O'Bryan, Trey Fago, Jospeh Jochman Apr 2026

Variations In Attitudes Toward Working With Robots And Concerns About Robots Replacing Jobs Among Midwesterners, Kawsheha Muraleetharan, Julia Mcquillan, Philip G. Crandall, Corliss A. O'Bryan, Trey Fago, Jospeh Jochman

Food Science Faculty Publications and Presentations

This study examines how social and worldview factors influence public attitudes toward workplace robotics in Nebraska, a major U.S. meat-producing state where automation adoption remains comparatively slow. Using data from the 2020 Nebraska Annual Social Indicators Survey (n = 2,213), we analyzed two core outcomes: willingness to work with robots ("robot happy") and concern about job replacement ("robot concern"). Ordinary least-squares regression models revealed that women, older adults, and those with less education were less positive about working with robots, while respondents with more education, higher financial security, stronger trust in science, and liberal political orientations expressed greater acceptance. Education …


Evaluating The Printability And Digestibility Of 3d-Printed Pea-Sorghum Protein Gels, Sorour Barekat, Ali Ubeyitogullari Mar 2026

Evaluating The Printability And Digestibility Of 3d-Printed Pea-Sorghum Protein Gels, Sorour Barekat, Ali Ubeyitogullari

Food Science Faculty Publications and Presentations

This study explored the 3D printability and digestibility of pea and sorghum protein gels as novel plant-based bioinks. First, 25 % sorghum protein gel (SPG25) and 15–25 % pea protein gels were prepared, and the effect of extruders’ nozzle size on printability was evaluated. Samples produced at the optimized conditions were then used for analyzing particle size, microstructure, secondary structure, and in vitro digestibility. Pea protein gel at 20 % (w/w) (PPG20) and SPG25 showed ideal rheological properties, including shear-thinning behavior and rapid recovery. Dual-nozzle 3D printing was optimized at a nozzle diameter of 0.52 mm and a speed of …


3d-Printed Soy Protein And Microalga Films: A Sustainable Approach With Antioxidant Functionality, Sorour Barekat, Buse Dogan, Sibel Uzuner, Ali Ubeyitogullari Jan 2026

3d-Printed Soy Protein And Microalga Films: A Sustainable Approach With Antioxidant Functionality, Sorour Barekat, Buse Dogan, Sibel Uzuner, Ali Ubeyitogullari

Food Science Faculty Publications and Presentations

This study investigated the optimization and fabrication of soy protein isolate (SPI)-green microalga (MA) 3D-printed films. For optimizing 3D printing, the effects of MA concentration, nozzle size (0.52-0.81 mm), and speed (10-20 mm/s) were examined. The printed films were then dried, and color, mechanical properties, water vapor permeability, structure, and antioxidant activity were analyzed. All the formulations showed shear-thinning behavior and rapid recovery. The concentration of 3 % MA, nozzle size of 0.72 mm, and printing speed of 20 mm/s were selected as the optimized conditions for the best 3D printability. Compared with the control, their elongation at break decreased …


Investigating The Incorporation Of Milled Rice In Brewing Non-Alcoholic Beer To Enhance Sensory Quality, Christian Schubert, Rahul Sen, Nils Rettberg, Scott Lafontaine Dec 2025

Investigating The Incorporation Of Milled Rice In Brewing Non-Alcoholic Beer To Enhance Sensory Quality, Christian Schubert, Rahul Sen, Nils Rettberg, Scott Lafontaine

Food Science Faculty Publications and Presentations

The influence of substituting barley malt with milled rice on the sensory and chemical characteristics of nonalcoholic beers (NAB) was investigated. Physicochemical and volatile analyses were conducted on the NABs. Original gravities ranged from 6.71% w/w (100% barley malt) to 7.15% w/w (100% rice), with alcohol contents between 0.33% v/v (70% barley/30 %rice) and 0.45 % v/v (100% rice). Color decreased from 10.8 EBC (100% barley malt) to 3.3 EBC (100% rice). Descriptive analysis sensory evaluations by trained panelists in the United States and European Union were used to characterize the sensory profiles of the NABs. Principal component analysis showed …


Rapid Detection Of Chicken Residues On Poultry Plant Surfaces Using Color And Fluorescence Spectrometry, Clark Griscom, Dongyi Wang, Corliss A. O'Bryan, Rimmo Room, Philip G. Crandall Dec 2025

Rapid Detection Of Chicken Residues On Poultry Plant Surfaces Using Color And Fluorescence Spectrometry, Clark Griscom, Dongyi Wang, Corliss A. O'Bryan, Rimmo Room, Philip G. Crandall

Food Science Faculty Publications and Presentations

Color and fluorescence spectrometry were evaluated as rapid, objective tools for verifying the cleanliness of poultry-processing food-contacting surfaces contaminated with a model chicken solution across six common materials. Both techniques detected chicken residues at dilutions several orders of magnitude below human visual and olfactory thresholds, with stainless steel and blue plastic yielding the largest color differences between clean and contaminated states and fluorescence measurements remaining highly sensitive on all tested surfaces. Representative limits of detection were on the order of 1:50-1:100 dilution of chicken residue for color measurements on most surfaces and approximately 1:50 for fluorescence measurements, compared with human …


Acid And Sequential Acid–Alkali Extraction To Mitigate Enzyme Activity And Off-Flavors In Chickpea Protein: Implications On Structural, Functional, And Bioactive Properties, Kavitha Lakshmipathy, Sukanya Poddar, Nikitha Modupalli, Scott Lafontaine, Md Mahfuzur Rahman Dec 2025

Acid And Sequential Acid–Alkali Extraction To Mitigate Enzyme Activity And Off-Flavors In Chickpea Protein: Implications On Structural, Functional, And Bioactive Properties, Kavitha Lakshmipathy, Sukanya Poddar, Nikitha Modupalli, Scott Lafontaine, Md Mahfuzur Rahman

Food Science Faculty Publications and Presentations

Chickpea proteins offer significant nutritional and functional benefits in food products; however, their utilization is often restricted by off-flavors, primarily for lipoxygenase (LOX) and lipase activity. This study aims to develop a novel extraction method by combining acid (pH 2.0) extraction with the conventional alkali (pH 9.0) method to inactivate enzymes and enhance protein quality. Acid-extracted proteins exhibit the highest purity (83.4%), albumin content, and structural flexibility (46.65% random coil). Both acid and sequential acid-alkali-extracted proteins significantly reduced LOX (0.75 and 0.88 U/g) and lipase (0.10 and 0.08 U/g) activity. Acid extraction significantly lowers volatile compounds such as hexanal (0.0409 …


A Novel Drying Technology Based On Supercritical Carbon Dioxide To Enhance The Functional Properties Of Red Lentil Proteins, Niveditha Asaithambi, Arda Tuhanioglu, Ali Ubeyito Dec 2025

A Novel Drying Technology Based On Supercritical Carbon Dioxide To Enhance The Functional Properties Of Red Lentil Proteins, Niveditha Asaithambi, Arda Tuhanioglu, Ali Ubeyito

Food Science Faculty Publications and Presentations

Red lentils are protein-rich sources that are highly regarded in the plant-based food industry for their color. Appropriate drying methods are essential for maintaining the physicochemical and nutritional properties of the proteins. This study investigates the impact of three drying methods, namely oven drying, freeze-drying, and supercritical carbon dioxide (SC-CO₂) drying, on the physicochemical and functional properties of red lentil proteins (RLP). SC-CO₂ drying was optimized at varying temperatures (35–55 °C), pressures (10–20 MPa), and CO₂ flow rates (2–3 L/min), with optimal drying observed at 55 °C, 20 MPa, and 3 L/min, resulting in significantly reduced moisture content (5.7 %). …


Dual-Stage Ultrasound Application For Rice Bran Protein Extraction: A Novel Method To Improve Yield, Functional Properties, And Nutritional Profile, Saydul Md Safwa, Nikitha Modupalli, Md Mahfuzur Rahman Dec 2025

Dual-Stage Ultrasound Application For Rice Bran Protein Extraction: A Novel Method To Improve Yield, Functional Properties, And Nutritional Profile, Saydul Md Safwa, Nikitha Modupalli, Md Mahfuzur Rahman

Food Science Faculty Publications and Presentations

While ultrasound-assisted protein extraction is well-studied, the application of ultrasound in both the extraction and precipitation stages has not been explored. This study explored the ultrasound (U)-assisted alkaline extraction (AE) at pH 9.5 and ultrasound-assisted isoelectric precipitation (UIP) at pH 3.5 on the rice bran protein yield, functionality, and nutritional quality. The UAE and conventional precipitation (UAE-IP) yielded the highest protein yield of 65.7 %, while conventional extraction yielded 38.9 %. FTIR showed that UAE-IP increased beta-sheets by 96.8 % while AE-UIP decreased the alpha-helices by 42.4 %. Although UAE-IP showed no significant change in surface hydrophobicity, UAE-UIP decreased it …


Valorization Of Rice Bran For Functional Bioplastic Fabrication Using Plasma-Activated Water, Saydul Md Safwa, Muhammad Nazrul Islam, Keisha B. Walters, Md Mahfuzur Rahman Nov 2025

Valorization Of Rice Bran For Functional Bioplastic Fabrication Using Plasma-Activated Water, Saydul Md Safwa, Muhammad Nazrul Islam, Keisha B. Walters, Md Mahfuzur Rahman

Food Science Faculty Publications and Presentations

While plasma has been used for decades for the surface modification of packaging films, in this study, rice bran (RB) and rice bran protein (RBP) films were developed using plasma-activated water (PAW), and the chemical composition, surface structure modifications, surface properties, and thermal properties of these films were characterized. Fourier-transform infrared spectroscopy (FTIR) of the bran and protein films showed that the reactive species in PAW improved hydrogen bonding, as evidenced by the increase in the O-H stretching band at 3300 cm-1 and reduced peak intensity at 2940-2925 cm-1 (C-H stretching), suggesting oxidation of the aliphatic side chains. For the …


Nanofiber-Enabled Rapid And Non-Destructive Sensors For Meat Quality And Shelf-Life Monitoring: A Review, Karna Ramachandraiah, Elizabeth M. Martin, Alya Limayem Nov 2025

Nanofiber-Enabled Rapid And Non-Destructive Sensors For Meat Quality And Shelf-Life Monitoring: A Review, Karna Ramachandraiah, Elizabeth M. Martin, Alya Limayem

Food Science Faculty Publications and Presentations

The meat industry faces significant economic losses and environmental impacts due to spoilage and waste, much of which results from inadequate, delayed, or inefficient quality assessment. Traditional methods used for assessing meat quality are often time-consuming, labor-intensive, and lack the ability to provide real-time information, making them insufficient for modern supply chains that demand safety, freshness, and minimal waste. Recent advances in nanotechnology position nanofibers (NFs) as promising materials for addressing these challenges through smart sensing and active packaging. NFs, characterized by their high surface-to-volume ratio, tunable porosity, and small diameter, enable superior encapsulation and immobilization of sensing agents. These …


Developing Hydrophobic-Hydrophilic Protein Structures By 3d Food Printing Of Sorghum And Soy Protein Gels, Sorour Barekat, Ali Ubeyitogullari Nov 2025

Developing Hydrophobic-Hydrophilic Protein Structures By 3d Food Printing Of Sorghum And Soy Protein Gels, Sorour Barekat, Ali Ubeyitogullari

Food Science Faculty Publications and Presentations

The goal of this study was to introduce the simultaneous use of hydrophobic-hydrophilic proteins bioinks for 3D food printing. Sorghum protein gel (SPG) at 25 % w/w and soy protein isolate gel (SPIG) at 11 % w/w were loaded into separate extruders. The effects of the first printed layer (SPG or SPIG), printing speed (10, 20 mm/s), and nozzle size (0.52, 0.64, 0.72 mm) on printability were evaluated. The textural properties, rheological characteristics, microstructure, crystallinities, and functional groups of the proteins were analyzed. Printing sorghum and soy proteins together helped balance essential amino acids, where lysine (94.7 %) and histidine …


A Novel Turmeric Drying Approach Based On Supercritical Carbon Dioxide, Sumanjot Kaur, Arda Tuhanioglu, Ali Ubeyitogullari Oct 2025

A Novel Turmeric Drying Approach Based On Supercritical Carbon Dioxide, Sumanjot Kaur, Arda Tuhanioglu, Ali Ubeyitogullari

Food Science Faculty Publications and Presentations

As a widely used spice, turmeric is rich in curcuminoids, which are known for their anti-inflammatory and antioxidant properties. However, the drying process, especially at high temperatures, often leads to significant curcumin degradation, impacting its bioactivity and quality. This study investigates drying turmeric using an innovative approach based on supercritical carbon dioxide (SC-CO2), and conventional drying methods (oven drying and freeze-drying) in terms of curcuminoid retention, color, solubility, chemical interactions, crystallinity, and morphology. The results revealed that SC-CO2 drying preserved up to 82.3 mu g curcuminoids /mg dried turmeric, which was significantly higher than the levels retained by oven drying …


Harnessing Rice Glutelin And Chickpea Proteins Interactions To Enhance Functional And Nutritional Qualities Of Plant-Based Cheese, Nikitha Modupalli, Md Mahfuzur Rahman Oct 2025

Harnessing Rice Glutelin And Chickpea Proteins Interactions To Enhance Functional And Nutritional Qualities Of Plant-Based Cheese, Nikitha Modupalli, Md Mahfuzur Rahman

Food Science Faculty Publications and Presentations

The recent demand for plant-based dairy alternatives has increased the focus on improving the organoleptic, and nutritional attributes of plant cheeses to match their dairy counterparts. This study aimed to develop a functional cheese using the synergistic interactions of rice glutelin and chickpea proteins to enhance both nutritional and textural properties. Functional characterization revealed that rice glutelin exhibited a higher water-holding capacity of 340 % and elevated solubility, while chickpea protein showed a superior oil-holding capacity of 550 % and higher surface hydrophobicity. Cheeses were prepared using a 40:60 blend of rice glutelin to chickpea protein, which yielded 21.3 % …


Machine Learning-Based Optimization Of Alginate, Guar Gum, And Pectin-Based Edible Coatings For Extended Strawberry Shelf Life, Saklain Niam, Iftekhar Ahmad, Md Abu Rayhan, Sajid Mahmood, Parvej Hasan Jon, Md Monir Ahmed Oct 2025

Machine Learning-Based Optimization Of Alginate, Guar Gum, And Pectin-Based Edible Coatings For Extended Strawberry Shelf Life, Saklain Niam, Iftekhar Ahmad, Md Abu Rayhan, Sajid Mahmood, Parvej Hasan Jon, Md Monir Ahmed

Food Science Faculty Publications and Presentations

Strawberries deteriorate rapidly under warm, humid conditions, and to make things worse, in many tropical settings refrigerated logistics are limited. Edible biopolymer coatings offer a low-cost method to slow quality loss, but multicomponent formulations behave nonlinearly. In this study, ten types of coatings were developed and evaluated for their effects on the physicochemical (weight loss, firmness, total soluble solids (TSS), pH, color change (Delta E)) and biochemical properties (total phenolic content (TPC), antioxidant property (DPPH) of strawberries over a 6-day storage period at 25 degrees C (298.15K). The optimal formulation, consisting of 0.56 % (w/v) alginate, 0.33 % (w/v) guar …


Recovery Of Salmonella And Listeria Monocytogenes From Nonporous Surfaces Based On Surface Sampler Type, Zeynal Topalcengiz, Sahaana Chandran, Francis Torko, Kristen E. Gibson Sep 2025

Recovery Of Salmonella And Listeria Monocytogenes From Nonporous Surfaces Based On Surface Sampler Type, Zeynal Topalcengiz, Sahaana Chandran, Francis Torko, Kristen E. Gibson

Food Science Faculty Publications and Presentations

Surface sampling devices ranging in material composition and size can be used in environmental monitoring programs. This study aimed to compare the bacterial recovery efficiency of surface samplers on stainless steel (SS) and polypropylene (PP) surfaces. Separate cocktails of Listeria monocytogenes and Salmonella enterica strains were spot inoculated (1 mL; 40 spots x 25 mu L) on SS and PP surfaces at high (7 log) and low (4 log) concentrations. A cellulose sponge sampler, polyurethane foam sponge sampler, and polyolefin nonwoven fabric sampler were utilized for bacteria recovery from SS and PP surfaces at two surface areas: 1x [929 cm2 …


Sensory And Chemical Characterization Of Upcycled Pomace- And Whey-Based Piquette Beverages, Dean G. Hauser, Rahul Sen, Scott R. Lafontaine, Chris Gerling, Luann M. Preston-Wisley, Timothy A. Demarsh, Samuel D. Alcaine Sep 2025

Sensory And Chemical Characterization Of Upcycled Pomace- And Whey-Based Piquette Beverages, Dean G. Hauser, Rahul Sen, Scott R. Lafontaine, Chris Gerling, Luann M. Preston-Wisley, Timothy A. Demarsh, Samuel D. Alcaine

Food Science Faculty Publications and Presentations

Upcycling, or utilizing materials that would otherwise go to waste, enables the creation of novel products that offer sustainability advantages and generate additional value. This study evaluates the feasibility of producing alcoholic beverages using yogurt acid whey (YAW) and grape pomace (GP), byproducts of the dairy and wine industries, respectively, and compares them to commercial grape pomace beverages (piquettes) in terms of sensory attributes and chemical composition. Two YAW-GP piquettes were produced, and five commercial piquettes were obtained. Sugars and organic acids were quantified using HPLC-RID, and semi-quantitative volatile composition was determined using HS-SPME-GC-MS/MS. Descriptive analysis was conducted using a …


Fabrication Of Antibacterial And Functional Films From Starch-Polyvinylpyrrolidone Composite Using Plasma Treatment And Silver Nanoparticles, Muhammad Nazrul Islam, Nikitha Modupalli, Md Mahfuzur Rahman Aug 2025

Fabrication Of Antibacterial And Functional Films From Starch-Polyvinylpyrrolidone Composite Using Plasma Treatment And Silver Nanoparticles, Muhammad Nazrul Islam, Nikitha Modupalli, Md Mahfuzur Rahman

Food Science Faculty Publications and Presentations

Biopolymers and water-soluble nontoxic synthetic polymer composites using silver nanoparticles are astute approaches for antibacterial film fabrication. Moreover, surface treatment of the biopolymeric composite film by cold plasma can enhance the biocidal activity. Silver nanoparticles were synthesized by using the reduction method. Films were fabricated with different ratios of rice starch and polyvinylpyrrolidones (PVP) (1:0, 1:1, and 3:1), with and without silver (Ag) nanoparticles. A plasma jet was used to treat the film's surfaces by placing the Film 0.5 cm below the plasma discharge. Surface morphology was monitored by scanning electron microscopy (SEM), and the existence of Ag nanoparticles in …


Generation Of Ph-Responsive Starch And Alginate-Pectin Hydrogels Using Coaxial 3d Food Printing: The Release Of Methylene Blue, Que-Anh Truong-Le, Matthias D.R. Lenie, Ali Ubeyitogullari Aug 2025

Generation Of Ph-Responsive Starch And Alginate-Pectin Hydrogels Using Coaxial 3d Food Printing: The Release Of Methylene Blue, Que-Anh Truong-Le, Matthias D.R. Lenie, Ali Ubeyitogullari

Food Science Faculty Publications and Presentations

This article presents the development of a 3D food printing (3DFOODP) system incorporating a core-shell structure to encapsulate a model compound, methylene blue (MB). A coaxial nozzle configuration was employed to fabricate 3D-printed samples, featuring a starch core and a pH-responsive alginate-pectin (Al-P) shell. The optimal 3D printing conditions were determined as 11 wt% starch as the core along with 2 wt% Al-P with 0.02 M CaCl2 as the shell at printing temperatures of 95 degrees C and ambient temperature (23 degrees C), respectively. The overall 3D printability at this condition was 98 %, closely matching the digital 3D design. …


Descriptive Sensory Analysis Of Gluten-Containing And Gluten-Free Chocolate Chip Cookies Available In The Marketplace, Eniola Ola, Victoria J. Hogan, Han-Seok Seo Jun 2025

Descriptive Sensory Analysis Of Gluten-Containing And Gluten-Free Chocolate Chip Cookies Available In The Marketplace, Eniola Ola, Victoria J. Hogan, Han-Seok Seo

Food Science Faculty Publications and Presentations

Limited research has systematically compared the detailed sensory profiles of commercially available gluten-containing (C) and gluten-free (F) cookies using trained panelists. This study aimed to develop a comprehensive sensory lexicon for C and F chocolate chip cookies and identify key sensory attributes that differentiate them. Seven professionally trained panelists created a lexicon of 33 attributes spanning aroma, flavor, basic taste, texture, and residual property. Using this lexicon, a descriptive analysis was conducted on 12 C and 12 F cookie samples. Multivariate analysis of variance revealed significant differences between the two groups across the 33 sensory attributes (p < 0.05). A mixed model analysis showed that C cookies had higher intensities of chocolate-related and sweet aroma complex notes, while F cookies exhibited stronger nutty, artificial, and off-note flavors. In terms of texture, F cookies were higher in toothpack and powdery mouthcoat, while C cookies displayed more melt-in-mouth characteristics. Principal component analysis and agglomerative hierarchical clustering revealed three distinct clusters of test samples within both crispy and chewy cookie types, with some F cookies closely aligning with C profiles. These findings, along with the developed lexicon, provide a valuable foundation for enhancing the sensory appeal and quality of gluten-free chocolate chip cookies.


Evaluating The Chemical Composition And Sensory Attributes Of Japanese And U.S. Sake, Rahul Sen, Katie Hope, Ben Bell, Scott Robert Lafontaine Jun 2025

Evaluating The Chemical Composition And Sensory Attributes Of Japanese And U.S. Sake, Rahul Sen, Katie Hope, Ben Bell, Scott Robert Lafontaine

Food Science Faculty Publications and Presentations

Sake, a traditional rice beverage from Japan, is brewed using four key ingredients: rice, water, a koji mold, and yeast. While sake is gaining popularity in the US market, there remains a significant knowledge gap regarding the best practices for sake production and how different methods impact the chemical and sensory aspects of American sake as well as its resemblance to traditional Japanese sake. This study compared 21 sake samples from Japan and the U.S., covering grades such as ginjo, diaginjo, junmai, and nigori. Out of total 209 features, 120 were significant aromatic compounds with esters (e.g., ethyl decanoate, hexyl …


Filtration Challenges In Non-Alcoholic And Low-Alcohol Beer Production With A Focus On Different Yeast Strains, Christian Schubert, Joerg Maxminer, Matthew Aitkens, Andrew Maust, Bernardo Pontes Guimaraes, Rahul Sen, Scott Lafontaine Jun 2025

Filtration Challenges In Non-Alcoholic And Low-Alcohol Beer Production With A Focus On Different Yeast Strains, Christian Schubert, Joerg Maxminer, Matthew Aitkens, Andrew Maust, Bernardo Pontes Guimaraes, Rahul Sen, Scott Lafontaine

Food Science Faculty Publications and Presentations

This study examines the impact of yeast selection on fermentation performance, filtration efficiency, and the stability of low-alcohol and non-alcoholic beer (NAB). Three yeast strains (LA-01, LoNa, and W-34/70) were evaluated for their effects on key NAB parameters like ABV, bitterness, color, haze readings, and filtration-linked performance. Filtration trials revealed that highly flocculating W-34/70 resulted in lower post-filtration turbidity, whereas LA-01 and LoNa (which flocculated less) required more effective filtration techniques to achieve clarity. Among the tested filter sheets, AF 31, AF 71, and AF 101 successfully reduced turbidity below 2 EBC. However, all NABs exhibited haze formation during storage, …


Enhancing Lutein And Anthocyanins Stability And Bioaccessibility Through Simultaneous Encapsulation Using Coaxial 3d Food Printing, Safoura Ahmadzadeh, Sorour Barekat, Ali Ubeyitogullari Jun 2025

Enhancing Lutein And Anthocyanins Stability And Bioaccessibility Through Simultaneous Encapsulation Using Coaxial 3d Food Printing, Safoura Ahmadzadeh, Sorour Barekat, Ali Ubeyitogullari

Food Science Faculty Publications and Presentations

This study investigated the use of 3D printing to co-encapsulate, protect, and enhance the bioaccessibility of lutein and anthocyanins. Coaxial extrusion 3D printing in a spiral-cube geometry was utilized with lutein-loaded zein as the core material and anthocyanins-loaded corn starch paste as the shell material. The research examined various printing conditions, including starch concentrations of 10% and 11%, and printing temperatures ranging from 45 °C to 85 °C. A comprehensive analysis of the inks’ properties, such as printability, viscosity, microstructural characteristics, storage stability, and bioaccessibility of the encapsulated compounds, was conducted. Encapsulated lutein showed only a 29-55% degradation rate after …


Impact Of Harvest Date And Year On The Volatile And Physicochemical Properties Of Fresh-Market Blackberry Cultivars, Rahul Sen, Andrea Myers, Alyssa Finocchiaro, Gracie Howard, Luke Norman, Renee Threlfall, Amanda Mcwhirt, Margaret Worthington, Scott Robert Lafontaine Jun 2025

Impact Of Harvest Date And Year On The Volatile And Physicochemical Properties Of Fresh-Market Blackberry Cultivars, Rahul Sen, Andrea Myers, Alyssa Finocchiaro, Gracie Howard, Luke Norman, Renee Threlfall, Amanda Mcwhirt, Margaret Worthington, Scott Robert Lafontaine

Food Science Faculty Publications and Presentations

Fresh-market blackberries face challenges with inconsistent flavor, limiting consumer demand. This study examines how harvest date and environmental conditions impact the physicochemical and volatile profiles of three cultivars (Sweet-Ark (R) Ponca, Sweet-Ark (R) Caddo, and Ouachita) grown in Fayetteville, AR, during the 2022-2023 seasons. Using targeted and untargeted GC-MS/MS approach, 262 volatile compounds across 12 classes were identified. Increased rainfall and cooler temperatures in 2023 positively affected Ouachita and Sweet-Ark (R) Caddo's physical attributes but reduced Sweet-Ark (R) Ponca's firmness and weight. Sweet-Ark (R) Caddo exhibited the highest volatile content in 2022 (2991 mu g/kg), driven by terpenes (1018.03 mu …


Recent Advances In The Utilization Of Cellulose From Food Processing Byproducts For The Generation Of Aerogels, Jaspreet Kaur, Ali Ubeyitogullari May 2025

Recent Advances In The Utilization Of Cellulose From Food Processing Byproducts For The Generation Of Aerogels, Jaspreet Kaur, Ali Ubeyitogullari

Food Science Faculty Publications and Presentations

Aerogels have garnered significant attention from the scientific community due to their extraordinary properties, including low density, high porosity, low thermal conductivity, and large surface area. These properties make them interesting candidates for diverse applications such as thermal insulation, drug delivery, catalysis, fillers, tissue engineering, and biosensors. However, the production of conventional aerogels is often constrained by environmental issues, the high cost of raw materials, and energy-intensive fabrication methods. In contrast, cellulose aerogels have emerged as promising sustainable materials with the potential to transform various low-cost waste products into high-value biomaterials. Food-processing byproducts provide numerous untapped opportunities for the generation …


Variations In Sensory And Emotional Responses To Gluten-Containing And Gluten-Free Cookie Products Under Blind And Labeled Conditions, Eniola Ola, Han-Seok Seo May 2025

Variations In Sensory And Emotional Responses To Gluten-Containing And Gluten-Free Cookie Products Under Blind And Labeled Conditions, Eniola Ola, Han-Seok Seo

Food Science Faculty Publications and Presentations

The gluten-free food market is expanding rapidly. However, consumer acceptance and emotional responses to gluten-free food, especially commercially available products, have received relatively underexplored. This study aimed to determine how consumer perceptions, acceptance, and emotional responses differ between gluten-containing (C) and gluten-free (F) chocolate chip cookies from three brands under both blind and labeled conditions. In the labeled condition, 84 participants without celiac disease evaluated 3 F cookies labeled "gluten-free" and 3 C cookies presented without claims on a plain white card. In the blind condition, they tested the six cookies without labels. Participants provided hedonic ratings, Just-About-Right (JAR) ratings, …


Comparison Analyses Of Consumer Acceptance, Evoked Emotions, And Purchase Intent Between Gluten-Containing Versus Gluten-Free Chocolate Chip Cookie Products, Shaelyn Frauenhoffer, Eniola Ola, Suzanne Jervis, Susan E. Gauch, Han-Seok Seo May 2025

Comparison Analyses Of Consumer Acceptance, Evoked Emotions, And Purchase Intent Between Gluten-Containing Versus Gluten-Free Chocolate Chip Cookie Products, Shaelyn Frauenhoffer, Eniola Ola, Suzanne Jervis, Susan E. Gauch, Han-Seok Seo

Food Science Faculty Publications and Presentations

The demand for gluten-free products has increased significantly over the past few decades. This study aimed to determine differences in consumer acceptance, emotional responses, and purchase intent between gluten-containing versus gluten-free chocolate chip cookies. Twelve commercially available chocolate chip cookie products from 11 brands were evaluated, including 7 gluten-free and 5 gluten-containing options. Eighty-nine participants without celiac disease took part in this 2-day study, evaluating six cookies per day. Participants rated sensory acceptance (appearance, flavor, texture, and overall liking) using a 9-point hedonic scale and evaluated specific sensory attributes (chocolate flavor, sweetness, chewiness, and hardness) using a 5-point just-about-right (JAR) …


A Systematic Review And Meta-Analysis Of Chemical Sanitizer Efficacy Against Biofilms Of Listeria Monocytogenes, Salmonella Enterica, And Stec On Food Processing Surfaces, Allyson N. Hamilton, Sarah L. Jones, Christopher A. Baker, Xinya Liang, Adam Siepielski, Ashlynn Robinson, Gayatri R. Dhulappanavar, Kristen E. Gibson Apr 2025

A Systematic Review And Meta-Analysis Of Chemical Sanitizer Efficacy Against Biofilms Of Listeria Monocytogenes, Salmonella Enterica, And Stec On Food Processing Surfaces, Allyson N. Hamilton, Sarah L. Jones, Christopher A. Baker, Xinya Liang, Adam Siepielski, Ashlynn Robinson, Gayatri R. Dhulappanavar, Kristen E. Gibson

Food Science Faculty Publications and Presentations

Chemical sanitizers are applied to food processing surfaces to inactivate bacterial pathogens. Pathogen type, surface type along with sanitizer type, concentration, and contact time are important factors potentially impacting sanitation efficacy. Numerous studies on chemical agents and lab-generated biofilms have been published; however, cross-study comparisons can be difficult. A systematic literature review (SLR) and meta-analysis were conducted to evaluate chemical sanitizer efficacy against Listeria monocytogenes, Salmonella spp., and Shiga toxin-producing Escherichia coli (STEC) within lab-generated biofilms on food contact surfaces (FCSs). The SLR included 13 peer-reviewed articles published between 2000 and 2020. Sanitizer concentration, type, contact time, surface type, and …


Exploring Non-Traditional Yeast For Flavor Innovation In Non-Alcoholic Beer, Andrew Maust, Rahul Sen, Scott Lafontaine Apr 2025

Exploring Non-Traditional Yeast For Flavor Innovation In Non-Alcoholic Beer, Andrew Maust, Rahul Sen, Scott Lafontaine

Food Science Faculty Publications and Presentations

The demand for nonalcoholic beer (NAB) is growing, with nontraditional yeast strains emerging as valuable tools for brewers to craft distinct NABs. However, independent information about the performance of these commercially available yeasts remains limited. In this study, 11 nontraditional yeast strains were evaluated at two wort nutrient levels to assess their impact on beer chemistry, sensory attributes, and volatile profiles. Basic fermentation metrics were monitored, followed by descriptive sensory analysis and GC-MS/MS quantification of volatile compounds. Results revealed significant differentiation among yeast strains with unique aroma and flavor profiles driven by variations in ester production, fusel alcohol synthesis, and …


Evaluating The Costs Of Alternative Malting Grains For Market Adaptation: A Case Study On Rice Malt Production In The U.S, Bernardo P. Guimaraes, Lawton L. Nalley, Scott Robert Lafontaine Apr 2025

Evaluating The Costs Of Alternative Malting Grains For Market Adaptation: A Case Study On Rice Malt Production In The U.S, Bernardo P. Guimaraes, Lawton L. Nalley, Scott Robert Lafontaine

Food Science Faculty Publications and Presentations

Climate change, import restrictions, and global conflicts are significantly impacting brewing raw material supply and costs. To shield the malting and brewing industries from these disruptions, alternative crops to barley must be explored. Rice presents a promising option, yielding twice as much per hectare as barley and showing greater climate resilience. Monte Carlo simulations estimated the economic and agronomic impact of using rice for malting. While rice malt is more expensive to produce, it remains an attractive gluten-free alternative. Beer brewed from 100% rice malt costs 33% more than barley-based beer but reduces acreage requirements by 50-67%. Using rice malt …


Optimizing Ethanol-Water Cosolvent Systems For Green Supercritical Carbon Dioxide Extraction Of Muscadine Grape Pomace Polyphenols, Arda Tuhanioglu, Sumanjot Kaur, Gabriel Laquete De Barros, Safoura Ahmadzadeh, Renee Threlfall, Ali Ubeyitogullari Jan 2025

Optimizing Ethanol-Water Cosolvent Systems For Green Supercritical Carbon Dioxide Extraction Of Muscadine Grape Pomace Polyphenols, Arda Tuhanioglu, Sumanjot Kaur, Gabriel Laquete De Barros, Safoura Ahmadzadeh, Renee Threlfall, Ali Ubeyitogullari

Food Science Faculty Publications and Presentations

This study evaluated the ethanol-water modified (50%, v/v) supercritical carbon dioxide (SC-CO2) for the extraction of polyphenols from muscadine grape (Vitis rotundifolia Michgx.) pomace and compared with conventional solvent extractions (ethanol-water and HCl-methanol). The process was optimized with a central composite response surface design consisting of three levels of three independent variables: pressure (20-40 MPa), temperature (40-60 degrees C), and cosolvent concentration (5-15%) to maximize three responses: total phenolic content (TPC), total flavonoid content (TFC), and resveratrol yields. The optimal conditions were determined as 20 MPa, 60 degrees C, and 15% cosolvent concentration with TPC, TFC, and resveratrol yields of …