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Synthesis of Feather Concentrate from Broiler Feather Waste using Different Chemical Hydrolysis Process and Effect on Its Properties

机译:使用不同的化学水解过程从肉鸡羽毛废物的合成羽毛浓缩物,对其性能影响

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摘要

Feather waste, a resultant of livestock industry, has annually increased, but its existence has not been optimally utilized. Production of feather concentrate (Fc) is regarded a beneficial application to minimze the waste. The objective of the study was to evaluate the use of NaOH and HC1 as a hydrolyzing agent in Fc preparation. The results showed that microstructural changes occurred in filament molecules in keratin protein as exhibited in T_0 and T_1 treatments. Keratin molecules underwent denaturation and degradation, resulting in molecular changes of their structure. After hydrolysis reaction, in-vitro protein digestibility was increased and the highest digestibility value was achieved at T_1, treatment (21.76%). The treatments showed no significant effects on Fc yield compared to the control, with exception of T_3 treatment. Yield could indicate the preparation efficiency, in which the value seemed to decrease a result of denaturation. The relative protein content was not different from the control (T_0) especially on the T_1 and T_2 treatments showed no significant effects on relative protein content compared to control T_0. The highest pH of product (9.76) was attributed to T_1 treatment using NaOH, while the lowest pH was found at HC1. Different types of hydrolysis process showed significant effects (p<0.05) on in-vitro digestibility of protein, yield and protein content. Application of NaOH (T[) is the best treatment compared to T_2, T_3 and T_0.
机译:羽毛废物是牲畜行业的结果,每年都有增加,但其存在尚未得到最佳利用。羽毛浓缩物(FC)的生产被认为是最小化废物的有益应用。该研究的目的是评估使用NaOH和HC1作为Fc制备中的水解剂。结果表明,在特定和T_1治疗中表现出角质蛋白蛋白质中的长丝分子中的微观结构变化。角蛋白分子接受了变性和降解,导致其结构的分子变化。在水解反应后,增加体外蛋白质消化率,并且在T_1,处理(21.76%)中实现了最高的消化率值。与对照相比,该治疗对Fc产量没有显着影响,除了T_3处理。产量可以表明制备效率,其中该值似乎降低了变性的结果。与对照T_0相比,相对蛋白质含量与尤其是在T_1和T_2处理中对相对蛋白质含量没有显着影响,与对照T_0相比,对照蛋白质含量与对照(T_0)不同。产品(9.76)的最高pH归因于使用NaOH的T_1治疗,而在HCl下发现最低pH。不同类型的水解过程显示出显着的影响(P <0.05)蛋白质,产率和蛋白质含量的体外消化率。与T_2,T_3和T_0相比,NaOH(T [)的应用是最佳处理。

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