1985Journal of the American Society for Horticultural ScienceOpen access

Metabolism of Sulfur Dioxide in ‘Thompson Seedless’ Grape Berries

Galen Peiser, Shang Fa Yang

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Abstract

Abstract ‘Thompson Seedless’ grapes ( Vitis vinifera L.) were fumigated with 0.5% SO 2 at 0°C, and the amount of residual sulfite in the berries was followed over time. To prevent autooxidation during analysis, sulfite was stabilized using a solution of tetrachloromercurate-glycine, pH 10. After 72 hr, over 90% of the sulfite was oxidized to sulfate. Kinetics of sulfite loss indicate 2 different rates of loss, giving half-lives for sulfite of about 4 hr (70% of the total sulfite) and 20 hr (30% of the total sulfite). Presumably this reflects 2 forms, free and bound sulfite.

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Abstract ‘Thompson Seedless’ grapes ( Vitis vinifera L.) were fumigated with 0.5% SO 2 at 0°C, and the amount of residual sulfite in the berries was followed over time. To prevent autooxidation during analysis, sulfite was stabilized using a solution of tetrachloromercurate-glycine, pH 10. After 72 hr, over 90% of the sulfite was oxidized to sulfate. Kinetics of sulfite loss indicate 2 different rates of loss, giving half-lives for sulfite of about 4 hr (70% of the total sulfite) and 20 hr (30% of the total sulfite). Presumably this reflects 2 forms, free and bound sulfite.

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Available abstract

Abstract ‘Thompson Seedless’ grapes ( Vitis vinifera L.) were fumigated with 0.5% SO 2 at 0°C, and the amount of residual sulfite in the berries was followed over time. To prevent autooxidation during analysis, sulfite was stabilized using a solution of tetrachloromercurate-glycine, pH 10. After 72 hr, over 90% of the sulfite was oxidized to sulfate. Kinetics of sulfite loss indicate 2 different rates of loss, giving half-lives for sulfite of about 4 hr (70% of the total sulfite) and 20 hr (30% of the total sulfite). Presumably this reflects 2 forms, free and bound sulfite.

Key concepts: Sulfite, Sulfur dioxide, Chemistry, Sulfur, Sulfate, Autoxidation, Sulfite oxidase, Sodium sulfite

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