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Advances in controlled atmosphere storage of horticultural produce

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This chapter highlights advances in controlled atmosphere (CA) storage science of horticultural crops (mainly apples and pears) over the last two decade, emphasizing the connection between technica...
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  • 20 January 2020
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This chapter highlights advances in controlled atmosphere (CA) storage science of horticultural crops (mainly apples and pears) over the last two decade, emphasizing the connection between technical/managerial aspects of the CA regime and retention of product quality during and after the storage period. The chapter particularly focuses on: initial low O2 stress (ILOS); delayed CA storage; anti-ethylene compounds (e.g. 1-MCP); dynamic controlled atmosphere (DCA) systems based on chlorophyll fluorescence (CF), ethanol detection and respiratory quotient (RQ) determination for identifying the lower oxygen limit (LOL); and strategies for reducing the electrical energy demands of the storage room. The chapter concludes with a reflection upon likely future advancements in CA storage science over the next 10-20 years, including: refining and broadening DCA system and 1-MCP application (singly and together), more metabolomic research to understand the biochemical and molecular effects of hypoxic stress, and new protocols for reducing storage room-related electricity consumption.
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Price: £25.00
Publisher: Burleigh Dodds Science Publishing
Imprint: Burleigh Dodds Science Publishing
Series: Burleigh Dodds Series in Agricultural Science
Publication Date: 20 January 2020
ISBN: 9781838799861
Format: eBook
BISACs:

TECHNOLOGY & ENGINEERING / Agriculture / Sustainable Agriculture, Commercial horticulture, TECHNOLOGY & ENGINEERING / Agriculture / Agronomy / Crop Science, Sustainable agriculture, Agronomy and crop production

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1 Introduction 2 Initial low oxygen stress (ILOS) 3 Anti-ethylene compounds 4 Delayed controlled atmosphere storage 5 Dynamic controlled atmosphere (DCA) storage 6 1-Methylcyclopropene (1-MCP) and DCA technologies 7 Storage energy reduction strategies 8 Case study: DCA-chlorophyll fluorescence (CF) 9 Conclusion and future trends 10 Where to look for further information 11 References