光合菌发酵啤酒糟制鱼饲料工艺优化

    Process optimization of brewers’ grains fermentation using photosynthetic bacteria to make fish feed

    • 摘要: 为把啤酒糟加工成优质鱼饲料,从啤酒厂啤酒糟排水沟中以厌氧法分离出一株光合菌为菌种,对原料啤酒糟进行预处理,自组装厌氧发酵装置,采用单因素与正交试验法,对啤酒糟半固态培养光合菌的条件进行了研究。结果表明,当料水比1∶9(干糟∶水,g/g)、接种量9%、光照强度1 100 Lx、发酵时间5 d、发酵温度30℃、料层厚度3 cm时,发酵效果较好。发酵后啤酒干糟真蛋白质量分数可从17.0%上升至41.6%、粗纤维素从15.3%下降至7.0%、粗脂肪从5.9%上升至6.6%、粗灰分从3.8%上升至4.1%、总磷从0.6%上升至1.3%、发酵干糟含水率为9.8%,这6项指标达到了“中华人民共和国水产行业标准”的草鱼鱼种配合饲料化学成分标准(SC/T 1024—2002),为进一步制作出活性光合菌啤酒糟饲料提供参考。

       

      Abstract: In order to get high-quality fish feed from brewers’ spent grains, an anaerobic fermentation installation was set up, and the brewers’ grains as raw material were pretreated by anaerobic photosynthetic bacteria separated from drainage ditch of brewers’ grains in a beer factory. The orthogonal experiments were conducted based on single factors to study the semisolid fermentation technique for anaerobic photosynthetic bacteria culture. The results showed that the satisfied fermentation effect was attained under the technical conditions of dry brewers’ grains/water 1:9 (mass fraction), inoculation amount 9%, illumination intensity 1100 Lx, fermentation time 5 d, fermentation temperature 30℃, and material thickness 3 cm. After fermentation, the real protein concentration of brewers’ grains increased from 17.0% to 41.6%, the cellulose concentration decreased from 15.3% to 7.0%, the crude fat concentration increased from 5.9% to 6.6%, the crude ash concentration increased from 3.8% to 4.1%, the total phosphorus concentration increased from 0.6% to 1.3%, and the water concentration of dried brewers’ grains was 9.8%. All the six indices satisfied the China standard of Grass Carp’s fingerling (SC/T 1024-2002). The results can provide references for making active photosynthetic bacteria fish feed from brewers’ grains.

       

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