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Immobilization of Bacillus sp. SLII-1 on Chitosan-Alginate Hybrid Material for Promising Feedstock Supplement

机译:芽孢杆菌的固定化。 壳聚糖 - 藻酸盐杂交材料的SLII-1用于有前途的原料补充剂

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The increase in poultry meat production led to an increase in feed demand. On the other hand, poultry industry produces feather waste which composes 5-7 wt% of the total body weight. Feed diversification by utilizing feather waste can be an alternative to overcome the problem of the high price of feed and to reduce environmental waste. The use of feather as a feed has a disadvantage because of the low digestibility of feather waste. The strategy to increase the digestibility of feather waste is to deliver keratinolytic bacteria to poultry intestine using immobilization technique. The purpose of this study was to determine the sodium alginate and chitosan concentration of immobilant with the highest number of released cell in poultry digestive system simulation. Bacillus sp. SLII-I as keratinolytic bacteria was able to increase soluble protein in feather meal liquid medium by 117.69% (wt/v). The composition of sodium alginate (2% w/v) and chitosan (0,8% w/v) was the most effective in delivering bacteria to poultry intestine as much as 2.54xl0~7 CFU per gram bead in digestive system simulation.
机译:家禽生产的增加导致饲料需求增加。另一方面,家禽行业生产羽毛废料,组成5-7重量%的总体重。利用羽毛浪费的饲料多样化可以是克服饲料价格高的问题和减少环境废物的替代品。由于羽毛废物的消化率低,使用羽毛作为饲料的缺点。提高羽毛废物消化率的策略是使用固定技术将角蛋白溶解细菌提供给家禽肠道。本研究的目的是测定具有禽类消化系统模拟中最多释放的细胞数量的藻酸钠和壳聚糖浓度。 Bacillus sp。 SLII-I作为角质石溶解的细菌能够将羽毛液中液体中的可溶性蛋白质增加117.69%(wt / v)。藻酸钠(2%w / v)和壳聚糖(0,8%w / v)的组成是最有效的,在消化系统模拟中每克胎圈的2.54xl0〜7 cfu递送细菌。

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