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Microbial infestation triggered quality depreciation in stored wheat: Assessment for animal consumption and bioethanol production

机译:微生物侵袭触发储存小麦的质量折旧:动物消费和生物乙醇生产的评估

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摘要

Five samples of microbially spoilt wheat (SW) grains were investigated for their suitability as food, feed or feed supplement using various biochemical analyses. Microbial infestation had visibly deteriorated grains' appearance that manifested the most in sample SW6 with diminished test weight (15.20g) and starch content (29.16%) against corresponding values of 38.86 g and 60.59%, in reference wheat (NW1). The other spoiled samples however contained reasonable levels of starch ranging from 51.20 to 57.26%. While the contents of nitrogen (1.90-2.24%) and protein (10.83-12.77%) were almost similar in various samples regardless of spoilage, the phosphorus content increased with spoilage from 4400 ppm in sample NW1 to 7200 ppm in SW6. Although the chemical composition testifies the suitability of wheat samples as food but the increased loads of bacteria (6.954-9.204 log cfu/g) and molds (5.477-7.477 log cfu/g), like Aspergillus, Rhhopus, Mucor and Penicillium restrict their suitability for human consumption. Further the presence of aflatoxins and ochratoxin 'A' in SW5 (26.7 ppb) and SW6 (213.7 ppb) and the higher concentrations of heavy metal viz. Lead, simply questions their use, even as feed or its supplement. Availability of starch and other essential nutrients in spoilt wheat pointed towards the possibility of its conversion into bioethanol. A hydrolyzed 30% slurry of flour samples SW2-SW5, produced 9.6-11.3% (v/v) ethanol in 24h against 8.3% by NW1, in the absence of any externally added yeast nutrients. This is the first report showing that the microbially deteriorated grains paradoxically resulted in added rate of ethanol production on wheat.
机译:使用各种生化分析研究了五种微生物损坏小麦(SW)晶粒的微生物损坏小麦(SW)颗粒样品作为食物,饲料或饲料补充剂。微生物侵扰具有明显恶化的晶粒外观,其在参考小麦(NW1)中具有减少的试验重量(15.20g)和淀粉含量(29.16%)的样品SW6中最低的样品SW6。然而,其他腐败的样品含有合理水平的淀粉,范围为51.20至57.26%。无论腐败,氮气的含量(1.90-2.24%)和蛋白质(1.90-2.24%)和蛋白质(10.83-12.77%)几乎相似,磷含量在SW6中的样品NW1至7200ppm中的4400ppm腐败增加。虽然化学成分证明了小麦样品作为食物的适用性,但细菌的增加(6.954-9.204 log Cfu / g)和霉菌(5.477-7.477 log cfu / g),如曲霉,Rhhopus,mucor和青霉素限制了它们的适用性用于人类消费。此外,在SW5(26.7ppb)和SW6(213.7ppb)和较高浓度的重金属viz中,进一步存在黄曲霉毒素和赭曲蛋白'a'。领先,即使是饲料或其补充,也是如此。淀粉和其他必需营养成分的可腐败小麦的可用性指向其转化为生物乙醇的可能性。在没有任何外部添加的酵母营养物质的情况下,在24小时内产生9.6-11.3%(v / v)乙醇,在24小时内产生9.6-11.3%(v / v)乙醇,以8.3%。这是第一个报道,显示微生物劣化的谷物矛盾导致小麦上的乙醇生产速率。

著录项

  • 来源
    《Biomass & bioenergy》 |2020年第12期|105837.1-105837.7|共7页
  • 作者单位

    Department of Microbiology CCS Haryana Agricultural University Hisar Haryana 125004 India;

    Additional Director Research (retd.) CCS Haryana Agricultural University Hisar Haryana 125004 India;

    Department of Chemistry CCS Haryana Agricultural University Hisar Haryana 125004 India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CAP storage; Mycotoxin; Nutritional quality; Spoilt wheat; Bioethanol;

    机译:盖帽;霉菌毒素;营养品质;被宠坏的小麦;生物乙醇;

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