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May 6, 2026Cereal Chemistry2 citations

Effect of Physical and Chemical Properties of Kombucha‐Fermented Soy Whey on the Quality of Tofu

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GBGhada Said BaghdadyJWJiyuan WangYDYiqiang Dai

Key Points

  • This research aims to evaluate how fermented soy whey properties affect tofu production quality.
  • Evaluated effects of FSW pH (3.78–4.50), addition amount (17.5%–30% v/v), and temperature (35°C–85°C) on tofu.
  • Analyzed tofu yield, moisture content, water-holding capacity, textural and sensory profiles, and protein composition via SDS-PAGE.
  • Conducted experiments under controlled conditions to determine optimal coagulation parameters.
  • Protein aggregation efficiency peaked at FSW pH 4.02.
  • Tofu yield and water retention increased with FSW concentration up to 22.5% (v/v).
  • Optimal coagulation achieved at FSW temperature of 65°C, resulting in a cohesive gel with the best texture.

Abstract

ABSTRACT Background and Objectives This study investigated the coagulation of soymilk using fermented soy whey (FSW), a traditional natural coagulant for tofu production. We comprehensively evaluated the effects of key parameters of FSW pH, FSW addition amount, and FSW temperature on the physicochemical properties of the resulting tofu. Analyses included tofu yield, moisture content, water‐holding capacity, textural, sensory profile, and protein subunit composition via SDS‐PAGE. Experiments were conducted under controlled conditions, varying the FSW pH (3.78–4.50; 25% addition, 75°C), the FSW addition amount (17.5%–30% v/v; pH 4.0, 75°C), and the FSW temperature (35°C–85°C; pH 4.0, 25%). Findings Protein aggregation efficiency increased markedly as FSW pH decreased, reaching a maximum at pH 4.02. Increasing the FSW concentration enhanced tofu yield and water retention up to 22.5% (v/v), while higher levels caused slight declines. Similarly, coagulation improved with rising FSW temperature, peaking at 65°C, where a cohesive gel with optimal texture was formed. Conclusions Therefore, the optimal parameters were identified as an FSW pH of 4.02, a concentration of 22.5% (v/v), and an FSW addition temperature of 65°C. Significance and Novelty These parameters provide a scientific foundation for standardizing the traditional FSW tofu‐making process, offering crucial benchmarks for quality control and future product development.

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Cite This Study

Baghdady et al. (2026) studied this question.

synapsesocial.com/papers/69fa8e8904f884e66b530ddahttps://doi.org/10.1002/cche.70067
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