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首页> 外文期刊>Cereal Chemistry >Treating thin stillage and condensed distillers solubles with phytase for production of low-phytate coproducts.
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Treating thin stillage and condensed distillers solubles with phytase for production of low-phytate coproducts.

机译:用肌醇六磷酸酶处理稀釜馏物和浓缩蒸馏酒可溶物以生产低肌醇六磷酸的副产物。

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摘要

Fuel ethanol production from grains is mainly based on dry-grind processing, during which phytate is concentrated about threefold in distillers dried grains with solubles (DDGS), a major coproduct. To reduce phytate in DDGS, Natuphos and Ronozyme industrial phytase preparations were used to treat commercially made thin stillage (TS). Changes in phosphorous (P) profile were monitored, and effects of reaction temperature, time, and enzyme concentration were investigated. Results showed that at a temperature <=60 degrees C for Natuphos phytase (<=70 degrees C for Ronozyme phytase) and a concentration <=4.8 FTU/mL of TS for Natuphos phytase (<=48 FYT/mL for Ronozyme phytase), a complete phytate hydrolysis (phytate P decreased to 0) could be achieved within 5-60 min of enzymatic treatment. Reduction in phytate P was generally accompanied by increase in inorganic P, whereas total P remained relatively unchanged. When condensed distillers solubles (CDS), the concentrated form of TS, was used as the substrate, phytate hydrolysis by each of the two enzyme preparations was as effective as on TS. Because a previous study from the author's laboratory showed that all types of P are mostly concentrated in TS and CDS but much less in distillers wet grains, phytase treatments of TS and CDS described in the present study can be an effective means in producing low-phytate DDGS.
机译:从谷物中生产燃料乙醇主要基于干磨过程,在此过程中,植酸在浓缩的干粮中以主要副产物可溶物(DDGS)浓缩约三倍。为了减少DDGS中的肌醇六磷酸,将Natuphos和Ronozyme工业肌醇六磷酸酶制剂用于处理商业化的稀釜馏物(TS)。监测磷(P)曲线的变化,并研究反应温度,时间和酶浓度的影响。结果表明,在温度下,对于Natuphos植酸酶而言<= 60摄氏度(对于Ronozyme植酸酶而言是<= 70摄氏度),对于Natuphos植酸酶而言,TS的浓度应≤= 4.8 FTU / mL(对于Ronozyme植酸酶而言是<= 48 FYT / mL),在酶处理的5-60分钟内可以实现完全的植酸盐水解(植酸盐P降至0)。植酸盐磷的减少通常伴随着无机磷的增加,而总磷保持相对不变。当浓缩蒸馏酒可溶物(CDS)(TS的浓缩形式)用作底物时,两种酶制剂中每一种的植酸水解均与TS一样有效。由于作者实验室的先前研究表明,所有类型的P大多集中在TS和CDS中,而在蒸馏酒湿粮中却少得多,因此本研究中描述的TS和CDS植酸酶处理可以有效地生产低植酸DDGS。

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