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Rheological and Microbiological Characteristics of Hops and Hot Trub Particles Formed during Beer Production

机译:啤酒生产中形成的啤酒花和热带颗粒的流变和微生物特征

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摘要

During the production of beer, and especially beer wort, the main wastes are spent grain and hot trub, i.e., the so-called “hot break.” Combined with yeast after fermentation, they represent the most valuable wastes. Hot trub is also one of the most valuable by-products. Studies on the chemical composition of these sediments and their rheological properties as waste products will contribute to their effective disposal and even further use as valuable pharmaceutical and cosmetic raw materials. So far, hot trub has been studied for morphology and particle distribution depending on the raw material composition and beer wort extract. However, there are no preliminary studies on the rheological properties of hot trub and hops. In particular, no attention has yet been paid to the dependence of these properties on the hop variety or different protein sources used. The aim of this study was to examine the effect of different hopping methods on hot trub viscosity and beer wort physicochemical parameters. Additionally, the hop solutions were measured at different temperatures. A microbiological analysis of hop sediments was also performed to determine the post-process survival of selected microorganisms in these wastes. For manufacturers of pumps used in the brewing industry, the most convenient material is that of the lowest viscosity. Low viscosity hot trub can be removed at lower velocities, which reduces costs and simplifies washing and transport. The sediments also had similar equilibrium viscosity values at high shear rates.
机译:在生产啤酒和尤其是啤酒麦芽汁期间,主要废物花了谷物和热Trub,即所谓的“热休息”。结合发酵后酵母,它们代表最有价值的废物。热Trub也是最有价值的副产品之一。对这些沉积物的化学成分及其流变性能作为废品的研究将有助于其有效处理,甚至进一步用作有价值的药物和化妆品原料。到目前为止,已经研究了热带的形态和颗粒分布,这取决于原料组合物和啤酒麦芽汁提取物。然而,没有关于热Trub和啤酒花的流变性质的初步研究。特别是,尚未注意到这些性质对使用的疗法或不同蛋白质来源的依赖性。本研究的目的是研究不同跳跃方法对热TRUB粘度和啤酒麦芽汁物理化学参数的影响。另外,在不同的温度下测量啤酒花溶液。还进行了跳沉积物的微生物分析,以确定这些废物中所选微生物的后工艺存活。对于在酿造行业中使用的泵制造商,最方便的材料是最低粘度的材料。低粘度热Trub可以在较低的速度下除去,这降低了成本并简化了洗涤和运输。沉积物在高剪切速率下也具有类似的平衡粘度值。

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