首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Elucidating enzyme-based cleaning of protein soils (gelatine and egg yolk) using a scanning iuid dynamic gauge
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Elucidating enzyme-based cleaning of protein soils (gelatine and egg yolk) using a scanning iuid dynamic gauge

机译:使用扫描式iuid动态量规阐明基于酶的蛋白质污垢(明胶和蛋黄)的清洁

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The enzyme-based cleaning of two model protein soils was investigated using a scanningfluid dynamic gauge (sFDG). The sFDG device allows data to be collected from more than one sample or location during a single experiment and therefore makes a range of comparative studies feasible. The sFDG was modified to allow the forces imposed on the surface to be controlled during a test. Gelatine films on stainless steel swelled in the presence of alkali at 20 C but were not removed. Enzymes from a commercial dishwasher product interrupted swelling when the mean water volume fraction of the film reached ~0.9 and promoted removal. The enzyme effectiveness decreased over time. Egg yolk deposits (spray dried on mica) were studied in a protease/buffer solution at 40 °C. The deposits swelled on contact with alkali, and removal started after ~40 min. Some flow over the deposit was required to achieve complete cleaning, but the time taken to clean exhibited a weak dependence on the shear stress imposed by the flow for shear stresses above 10 Pa. The cleaning behaviour was strongly influenced by the nature of the deposit. Baking the deposit at 150 °C reduced the rate and extent of swelling as well as the rate of removal, and could result in the formation of a residual film that exhibited yield stress characteristics.
机译:使用扫描流体动力学仪(sFDG)研究了两种模型蛋白土壤的基于酶的清洁。 sFDG设备允许在单个实验中从一个以上的样本或位置收集数据,因此使一系列比较研究成为可能。修改了sFDG,以在测试过程中控制施加在表面上的力。不锈钢上的明胶薄膜在碱存在下于20°C溶胀,但未被除去。当薄膜的平均水体积分数达到〜0.9并促进去除时,来自商用洗碗机产品的酶会中断溶胀。酶效力随时间降低。在40°C的蛋白酶/缓冲液中研究了蛋黄沉积物(在云母上喷雾干燥)。与碱接触后,沉积物膨胀,约40分钟后开始清除。沉积物上需要一些流动才能实现完全清洁,但是对于10 Pa以上的剪切应力,清洁所花费的时间对流动所施加的剪切应力表现出较弱的依赖性。清洁行为受沉积物性质的强烈影响。在150°C下烘烤沉积物会降低溶胀的速率和程度以及去除速率,并且可能导致形成具有屈服应力特性的残留膜。

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