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Feed quaility for improved survival and robustness of cleaner fish

机译:饲料质量提高清洁鱼的存活率和健壮性

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摘要

The aim of study was to improve the quality of moist feed for Ballan wrasse with use of different binders and inclusion level of the binders, as well as optimizing the immersion bath to improve gelling of alginate. Quality of moist feed was evaluated as water stability and texture. Experimental diets were formulated mainly based on a commercial brood stock feed mixed with minced shrimps and a binder. Gelatinized starch was tested at three inclusion levels 10%, 15%, 20%. Gelatin was tested at 2.5%, 5% and 7.5% inclusion level. Sodium alginate was tested at 1.5% and 3% level in the diet. The gelling of alginate was tested with use of 2% and 4% CaCO3 and with immersion of pellets in two solutions, either CaCl2 5% or a mix of CaCl2 3% + formic acid 3%. The alginate pellets were also produced with or without CaCO3 added in the dough, followed by immersion in a solution of CaCl2 5% or mix of CaCl2 3% + formic acid 3%. A combination of all three binders was also tested in different immersion solutions.The results showed that water stability was not affected by binder type or inclusion level. Among the pellets with sodium alginate, alginate level and CaCO3 level did not improve water stability. Improved water stability was found for pellets immersed in CaCl2 5% compared to a mix of CaCl2 3% + formic acid 3%.The pellet texture was affected by binder type and inclusion level. Gelatinized potato starch gave highest texture, followed by alginate and gelatin. Texture was significant improved with increasing binder level. Texture on moist feed produced with alginate was also improved with use of CaCO3 in the dough. Recommended inclusion level is 2%. Immersing alginate pellets in a mix of CaCl2 3% + formic acid 3% improved texture compared to CaCl2 5% .The overall conclusion from the experiment was that water stability was unaffected or even impaired by immersing pellets in formic acid or CaCl2. Texture of the pellet was easier to manipulate by the inclusion level of binder and immersion solution.
机译:研究的目的是通过使用不同的粘合剂和粘合剂的掺入量来提高Ballan濑鱼的湿饲料质量,以及优化浸浴以改善藻酸盐的胶凝性。湿饲料的质量被评估为水的稳定性和质地。实验日粮的配制主要基于混合了虾末和黏合剂的商业亲鱼饲料。测试了糊化淀粉在10%,15%,20%三个夹杂物中的含量。明胶的含量为2.5%,5%和7.5%。海藻酸钠在日粮中的含量为1.5%和3%。使用2%和4%的CaCO3以及将沉淀浸入两种溶液(5%的CaCl2或3%的CaCl2 +甲酸的混合物)中测试藻酸盐的胶凝性。还可在面团中添加或不添加CaCO3的情况下生产藻酸盐颗粒,然后将其浸入5%的CaCl2溶液或3%的CaCl2 + 3%甲酸的混合物中。还在不同的浸入溶液中测试了所有三种粘合剂的组合,结果表明水稳定性不受粘合剂类型或夹杂物含量的影响。在含有海藻酸钠的颗粒中,海藻酸钠含量和CaCO3含量不能改善水稳定性。与3%CaCl2 +甲酸3%的混合物相比,浸入5%CaCl2中的颗粒的水稳定性有所改善,颗粒质地受粘合剂类型和夹杂物含量的影响。糊化的马铃薯淀粉具有最高的质地,其次是藻酸盐和明胶。随着粘合剂含量的增加,质地得到明显改善。通过在面团中使用CaCO3,由藻酸盐生产的潮湿饲料的质地也得到了改善。推荐的夹杂物含量为2%。与5%的CaCl2相比,将藻酸盐颗粒浸泡在3%的CaCl2 +甲酸3%的混合物中可以改善质地。实验的总体结论是,将颗粒浸入甲酸或CaCl2中不会影响甚至损害水稳定性。颗粒的质地更容易通过粘合剂和浸入溶液的夹杂物含量来控制。

著录项

  • 作者

    Vu Van Phu;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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