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高甲氧基果胶中钙果胶凝胶的优化生产。

Optimization of calcium pectinate gel production from high methoxyl pectin.

机构信息

State key Laboratory of Food Science and Technology, Nanchang University, Nanchang, China.

Department of Food Science and Technology, Jinan University, Guangzhou, China.

出版信息

J Sci Food Agric. 2022 Jan 30;102(2):757-763. doi: 10.1002/jsfa.11409. Epub 2021 Jul 18.

Abstract

BACKGROUND

Calcium pectinate (CaP) gel is traditionally prepared by de-esterifying high methoxyl pectin (HMP) to low methoxyl pectin (LMP), followed by gelation with calcium. To save both time and cost in the production of CaP gel, an alternative method was developed by the addition of CaCl to HMP at alkaline pH. To optimize the production, response surface methodology (RSM) was used to investigate the effects of temperature (30-50 °C), time (20-40 min) and pH (8-10) on yield, calcium content of the CaP gel and the degree of esterification (DE) of pectin following decalcification of CaP (DC-pectin).

RESULTS

The linear term for pH had a significant effect (P < 0.01) on all three responses, whereas interaction effects were not significant (P > 0.01), except on the calcium content (P < 0.01). The optimized process conditions (temperature, time and pH) to obtain maximum CaP-HMP gel yield (88.83%) were 50 °C, 40 min and pH 9.6, and for the highest calcium content (97.23 mg g ) they were 40 °C, 30 min and pH 9.7. DC-pectin was a typical LMP with DE varying from 26.92% to 50.33%. The DE of DC-pectin could be predicted by a model that proved significant (R  = 0.9888).

CONCLUSION

The optimum conditions were established to produce CaP gels from HMP with high yield and calcium content. Also, LMP with predictable DE can be produced following a significant model. This study provides new insights into the production and application of CaP gel. © 2021 Society of Chemical Industry.

摘要

背景

传统上,通过将高甲氧基果胶(HMP)去酯化制备钙果胶(CaP)凝胶,得到低甲氧基果胶(LMP),然后用钙离子凝胶化。为了在 CaP 凝胶的生产中节省时间和成本,通过在碱性 pH 下向 HMP 中添加 CaCl2 开发了一种替代方法。为了优化生产,使用响应面法(RSM)研究了温度(30-50°C)、时间(20-40 分钟)和 pH(8-10)对产率、CaP 凝胶的钙含量以及脱钙后果胶的酯化度(DE)的影响。

结果

pH 的线性项对所有三个响应均有显著影响(P<0.01),而交互作用不显著(P>0.01),除了钙含量(P<0.01)。获得最大 CaP-HMP 凝胶产率(88.83%)的最佳工艺条件(温度、时间和 pH)为 50°C、40 分钟和 pH9.6,获得最高钙含量(97.23mg g)的最佳工艺条件为 40°C、30 分钟和 pH9.7。脱钙果胶(DC-pectin)是典型的 LMP,DE 从 26.92%变化到 50.33%。可以通过一个显著的模型来预测 DC-pectin 的 DE(R2=0.9888)。

结论

建立了从 HMP 高产率和高钙含量生产 CaP 凝胶的最佳条件。此外,还可以根据显著模型生产具有可预测 DE 的 LMP。本研究为 CaP 凝胶的生产和应用提供了新的见解。 © 2021 化学工业协会。

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