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Comparison of direct steam injection and steam-jacketed heating in squid protein hydrolysis for energy consumption and hydrolysis performance.

机译:鱿鱼蛋白水解中直接蒸汽注入和夹套加热的能耗和水解性能的比较。

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Direct steam injection (DSI) and conventional steam-jacketed (SJ) heating systems were compared for energy consumption and hydrolysis performance in producing squid hydrolysates (SH). Hydrolysis was carried out with endogenous enzymes at 55 degrees C for 90 min and native pH (6.5 +or- 0.2), followed by pasteurization at 75 degrees C for 30 min. Hydrolysis performance was evaluated by monitoring the changes in viscosity, degree of hydrolysis (DH), and protein profile during the course of hydrolysis. The DSI heating process was more energy efficient than SJ heating with significantly less energy usage (~30% energy reduction), shorter come-up times, and total processing time. While considerable fouling was evident with SJ heating, no fouling was observed with DSI heating. No appreciable differences in hydrolysis performance were observed between DSI and SJ heating, although the DSI-treated hydrolysate exhibited slightly lower values in viscosity and DH, as well as weaker protein band intensities due to dilution caused by steam condensation. The use of a steam filtration unit in DSI not only filtered the incoming steam, but also reduced condensation. Results suggest that DSI heating with steam filtration is an energy efficient and fouling-free process for preparing SH and potentially for other type of enzymatic protein hydrolysates. All rights reserved, Elsevier.
机译:比较了直接蒸汽喷射(DSI)和常规蒸汽夹套(SJ)加热系统在生产鱿鱼水解产物(SH)方面的能耗和水解性能。用内源酶在55摄氏度和自然pH(6.5 +或0.2)下进行水解,然后在75摄氏度进行巴氏杀菌30分钟。通过监测水解过程中粘度,水解度(DH)和蛋白质分布的变化来评估水解性能。与SJ加热相比,DSI加热过程具有更高的能源效率,并且能源使用量显着减少(约30%的能耗降低),产生的时间更短,总处理时间更短。尽管在SJ加热下明显结垢,但在DSI加热下未观察到结垢。在DSI和SJ加热之间,未观察到水解性能的明显差异,尽管DSI处理的水解产物的粘度和DH值略低,并且由于蒸汽冷凝引起的稀释而导致的蛋白带强度较弱。在DSI中使用蒸汽过滤单元不仅可以过滤进入的蒸汽,还可以减少冷凝。结果表明,采用蒸汽过滤的DSI加热是制备SH以及可能用于其他类型的酶蛋白水解产物的一种节能高效且无污染的方法。保留所有权利,Elsevier。

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