Beyond water activity: Recent advances based on an alternative approach to the assessment of food quality and safety
За пределами активности воды: недавние достижения на основе альтернативного подхода к оценке качества и безопасности пищевых продуктов
1991-01-01
SCID: 54.1/uvcqmuzb
Discuss with AI
food polymer scienceglass dynamicsmoisture managementwater activitywater dynamics
Figures from the paper
Abstract (AI)
Water, the most abundant constituent of natural foods, is a ubiquitous plasticizer of most natural and fabricated food ingredients and products. Many of the new concepts and developments in modern food science and technology revolve around the role of water, and its manipulation, in food manufacturing, processing, and preservation. This article reviews the effects of water, as a near-universal solvent and plasticizer, on the behavior of polymeric (as well as oligomeric and monomeric) food materials and systems, with emphasis on the impact of water content (in terms of increasing system mobility and eventual water "availability") on food quality, safety, stability, and technological performance. This review describes a new perspective on moisture management, an old and established discipline now evolving to a theoretical basis of fundamental structure-property principles from the field of synthetic polymer science, including the innovative concepts of "water dynamics" and "glass dynamics". These integrated concepts focus on the non-equilibrium nature of all "real world" food products and processes, and stress the importance to successful moisture management of the maintenance of food systems in kinetically metastable, dynamically constrained glassy states rather than equilibrium thermodynamic phases. The understanding derived from this "food polymer science" approach to water relationships in foods has led to new insights and advances beyond the limited applicability of traditional concepts involving water activity. This article is neither a conventional nor comprehensive review of water activity, but rather a critical overview that presents and discusses current, usable information on moisture management theory, research, and practice applicable to food systems covering the broadest ranges of moisture content and processing/storage temperature conditions.
Key Findings
1
A 'food polymer science' perspective—applying structure-property principles from synthetic polymer science—provides novel insights for moisture management in foods.
2
Food quality, safety, stability, and technological performance are governed more by water-driven increases in system mobility and water dynamics than by equilibrium water activity alone.
3
Maintaining food systems in kinetically metastable, dynamically constrained glassy states is emphasized as critical for effective moisture management and product stability.
4
Traditional water activity concepts have limited applicability; integrating water dynamics and glass dynamics extends moisture management across broad moisture and temperature conditions.
5
Water acts as a universal plasticizer and solvent in foods, strongly affecting polymeric, oligomeric, and monomeric food material behavior.
Research Object
Food materials and systems (polymeric, oligomeric and monomeric food constituents and products) in relation to moisture content and water interactions
Research Subject
Impact of water content and water-related dynamics (water availability, water dynamics, glass dynamics) on quality, safety, stability, technological performance, and moisture management of food systems, emphasizing kinetically metastable glassy states over equilibrium water-activity concepts
Publication Details
Publication Date
1991-01-01
Journal
Publisher
ISSN
Access Type
Author Information
Download PDF
Subscribe to digest