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    Modulation of functional properties, oxidative stability, and aroma evolution in cream-style salad dressing by Wolffia globosa powder incorporation
    (2026-08-01)
    Sinthusamran, Sirima
    ;
    Techavuthiporn, Chairat
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    Supapvanich, Suriyan
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    Syukri, Daimon
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    Atika, Yusti
    Wolffia globosa is a novel plant-derived protein rich in bioactive compounds with potential functionality in food products. This study evaluated dried Wolffia globosa powder (WP) as a partial egg yolk substitute (0–20%) in cream-style salad dressing, focusing on physicochemical properties, oxidative stability, and volatile compounds during storage. WP exhibited high protein content (32.31%), abundant chlorophylls and phenolics, and strong antioxidant capacity. Sensory evaluation identified 15% WP as the most acceptable formulation. WP incorporation altered color, reduced viscosity, increased droplet size, and enhanced electrostatic stability through a more negative ζ-potential. Nutritional quality improved via higher protein, fiber, and antioxidant levels. During 28 days at 30 °C, WP significantly suppressed lipid oxidation. GC–MS chemometric analysis revealed reduced oxidation-derived volatiles and preservation of freshness-related monoterpenes. These results demonstrate WP's effectiveness in regulating emulsion structure and oxidative pathways, highlighting its potential as a functional, plant-based ingredient for stable salad dressings.
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    Effect of Calcium carbide and Ethephon on flavor profile of ‘Kluai Hom Thong’
    (2026-06-01)
    Laryea, Damian
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    Pinsirodom, Praphan
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    Wattanachaisaereekul, Songsak
    ;
    Supapvanich, Suriyan
    ;
    Arsa, Supeeraya
    Banana is a nutritious dessert with its rising demand resulting in the use of ripening agents to increase the ripening rate of bananas. There is, however, limited information on the effect these ripening agents may have on banana quality, including the flavor of bananas. This study determined the effect of CaC<inf>2</inf> and ethephon on the flavor profile of ‘Kluai Hom Thong’ (Musa AAA) banana at the ripe and overripe stages of ripening. Bananas were harvested at the green matured stage and treated with 1000 ppm ethephon and 3.07g/kg CaC<inf>2</inf>. Samples were taken at the fully ripe and overripe stages and analyzed using GC–MS. The Relative Odor Activity Value (ROAV) was also calculated. Esters were the most dominant volatile compounds in both the ripe and overripe stages. Ethephon and CaC<inf>2</inf> reduced the amount of esters in the bananas. Detection and relative content of alcohol and aldehyde volatile compounds varied among treatments. Isoamyl acetate (1-Butanol, 3-methyl-, acetate), an ester, was dominant in both stages of ripening with the control sample having a significantly higher amount among samples. Isoamyl acetate was established as the key volatile compound contributing to the overall aroma and flavor of Musa AAA. Ripening stage and treatments were observed to affect this key volatile compound and could contribute to significant changes in the perception of untreated and treated bananas. Therefore, care has to be taken when using ripening agents as they may affect the flavor of bananas. CaC<inf>2</inf>, however, may contain toxic chemicals; therefore, should be used with caution.
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    Volatile profiles and aroma-active components of Northern Thai fermented soybean (thua nao) produced from controlled and uncontrolled fermentations
    (2023-09-01)
    Mathatheeranan, Pakavit
    ;
    Wongprasert, Thanakorn
    ;
    Na Nan, Tansiphorn
    ;
    Suwannakul, Ekkarat
    ;
    Wang, Yi
    Thua nao is a fermented soybean product that is widely consumed, especially in the northern part of Thailand. Thua nao can be used as a condiment to enhance the aroma and flavor of foods. In general, commercial thua nao is traditionally made by indigenous microbial, especially Bacillus spp. fermentation under ambient conditions, leading to inconsistencies in product aroma quality. To solve this problem, inoculation of selected microorganisms can help control thua nao consistency. The objective of this research was to characterize and compare volatile aroma-active compounds in three samples, including thua nao made by commercial Bacillus subtilis inoculation fermented under controlled conditions (YSB) and two thua nao products made by indigenous fermentation in commercial production sites in Lumpoon (LPN) and Chiang-Mai (CMI) provinces, Thailand. It was found that 2-methyl butanoic acid, phenylethyl alcohol, benzaldehyde, 2,5-dimethylpyrazine, 2,6-dimethylpyrazine and 2-methoxy phenol were dominant compounds in the YSB samples. These compounds contributed to fermented/sour, floral, almond-like and nutty aromas, which were related to positive attributes perceived by consumers. In contrast, several aldehydes and ketones related to off-aroma as oxidized, fatty, green, and earthy attributes derived from lipid oxidations were dominantly detected in samples from uncontrolled fermentations (LPN and CMI). From the study, it can be implied that inoculation of B. subtilis in thua nao fermentation could enhance aroma compounds with positive attributes and thus improve the organoleptic property of the product. These findings could benefit fermented soybean manufacturers to improve their aroma quality and to control products’ consistency by controlling fermentation conditions.