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Protein-rich fungal biomass production on sugarcane vinasse for animal feed applications with concomitant water reclamation.

机译:在甘蔗酒渣上生产富含蛋白质的真菌生物质,用于动物饲料,同时进行水回收。

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摘要

The sugar-to-ethanol production process generates a significant amount of low-value residue known as vinasse. Vinasse has a high organic content measured as chemical oxygen demand (COD) of over 100 g/L, and its direct disposal has a negative impact on the environment. This research investigated the feasibility of fungal technology as a cost effective and environment-friendly approach in utilizing the vinasse as a sole substrate for producing a protein-rich edible fungus, Rhizopus microsporus (var. oligosporus ) with concomitant wastewater reclamation. Optimization studies showed prolific fungal growth at pH 5.0 on vinasse with nutrient (nitrogen and phosphorus) supplementation. The fungus grew exponentially during the first 24 hours using reducing sugar as a major constituent to support its growth. Ethanol at concentrations greater than 5.0% (v/v) adversely affected the fungal growth through change in mycelial morphology.;Fungal fermentation in an airlift bioreactor (2.5-L working volume) under various aeration rates (0.5, 1.0, 1.5, and 2.0 volumeair/volume liquid/min (vvm)) was investigated for the potential large-scale fungal biomass production. The fungal biomass yield was found to depend on the aeration rate, and the aeration rate of 1.5 vvm resulted in the highest fungal biomass yield of 8.04 ± 0.80 (gbiomass increase/ginitial biomass ) with significant reduction in organic content ∼ 80% (or 26 g/L) measured as soluble chemical oxygen demand (SCOD). Vinasse-derived fungal biomass contained approximately 50% crude protein with 84% in vitro protein digestibility. Essential amino acids contents of the fungal biomass were comparable to commercial protein sources (fishmeal and soybean meal) for animal feeds, with the exception of methionine and phenylalanine. Importantly, the fungal biomass contained high lysine (∼ 8% on protein basis), which is the most critical amino acid required in animal feed. Moreover, fungal biomass had essential fatty acids including linoleic, linolenic, eicosapentaenoic (EPA), and docosahexaenoic (DHA), which could further benefit fungal biomass as an aquatic feed. The integration of innovative fungal technology with sugar-based ethanol production could provide an opportunity for producing food-grade fungal protein for animal feed application with simultaneous wastewater reclamation for in-plant use or for land applications.
机译:糖到乙醇的生产过程会产生大量的低价值残留物,称为酒糟。以化学需氧量(COD)衡量,Vinasse具有较高的有机物含量,超过100 g / L,直接处置会对环境造成负面影响。这项研究调查了真菌技术作为一种经济高效且环境友好的方法的可行性,该技术利用酒糟作为唯一的底物来生产富含蛋白质的食用菌,小孢霉根霉菌(var。oligosporus)并伴有废水回收。优化研究表明,在添加了营养素(氮和磷)的酒糟中,pH值为5.0时,真菌生长良好。真菌在最初的24小时内呈指数增长,使用还原糖作为主要成分来支持其生长。浓度大于5.0%(v / v)的乙醇会通过改变菌丝体形态而对真菌的生长产生不利影响;在气浮式生物反应器(2.5-L工作体积)中,在各种曝气速率(0.5、1.0、1.5和2.0)下进行真菌发酵研究了体积空气/体积液体/分钟(vvm))潜在的大规模真菌生物量生产。发现真菌的生物量产量取决于曝气速率,而1.5 vvm的曝气速率导致最高的真菌生物量产量为8.04±0.80(生物量增加/初始生物量),有机物含量显着降低了80%(或26) (g / L)表示为可溶性化学需氧量(SCOD)。酒渣油衍生的真菌生物质包含约50%的粗蛋白和84%的体外蛋白消化率。除蛋氨酸和苯丙氨酸外,真菌生物质的必需氨基酸含量与动物饲料的商业蛋白质来源(鱼粉和豆粕)相当。重要的是,真菌生物质中含有高赖氨酸(以蛋白质计约为8%),这是动物饲料中所需的最关键的氨基酸。此外,真菌生物质具有必需脂肪酸,包括亚油酸,亚麻酸,二十碳五烯酸(EPA)和二十二碳六烯酸(DHA),这些脂肪酸可以进一步有益于作为水生饲料的真菌生物质。将创新的真菌技术与糖基乙醇生产相结合,可以为生产用于动物饲料的食品级真菌蛋白提供机会,同时在工厂内或土地上进行废水回收。

著录项

  • 作者

    Nitayavardhana, Saoharit.;

  • 作者单位

    University of Hawai'i at Manoa.;

  • 授予单位 University of Hawai'i at Manoa.;
  • 学科 Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:48

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