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Optimization of the degumming process for camellia oil by the use of phospholipase C in pilot-scale system

机译:通过在中试规模系统中使用磷脂酶C优化山茶油的脱胶工艺

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摘要

In present study, phospholipase C (PLC) was applied in camellia oil degumming and the response surface method (RSM) was used to determine the optimum degumming conditions (reaction time, reaction temperature and enzyme dosage) for this enzyme. The optimum conditions for the minimum residual phosphorus content (15.14 mg/kg) and maximum yield of camellia oil (98.2 %) were obtained at reaction temperature 53 ºC, reaction time 2.2 h, PLC dosage 400 mg/kg and pH 5.4. The application of phospholipase A (PLA) - assisted degumming process could further reduce the residual phosphorus content of camellia oil (6.84 mg/kg) to make the oil suitable for physical refining while maintaining the maximal oil yield (98.2 %). These results indicate that PLC degumming process in combination with PLA treatment can be a commercially viable alternative for traditional degumming process. Study on the quality changes of degummed oils showed that the oxidative stability of camellia oil was slightly deceased after the enzymatic treatment, thus more attention should be paid to the oxidative stability in the further application.
机译:在本研究中,磷脂酶C(PLC)用于山茶油脱胶,并使用响应面法(RSM)确定该酶的最佳脱胶条件(反应时间,反应温度和酶用量)。在反应温度53°C,反应时间2.2小时,PLC剂量400 mg / kg和pH值5.4的条件下,获得了最低残留磷含量(15.14 mg / kg)和山茶油最大产率(98.2%)的最佳条件。磷脂酶A(PLA)辅助脱胶工艺的应用可以进一步降低山茶油的残留磷含量(6.84 mg / kg),使其适合物理精炼,同时保持最高的产油率(98.2%)。这些结果表明,PLC脱胶工艺与PLA处理相结合可以成为传统脱胶工艺的商业可行替代方案。对脱胶油品质变化的研究表明,经酶处理后,山茶油的氧化稳定性略有下降,因此在进一步应用中应更加注意其氧化稳定性。

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