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Bacterial composting of animal fleshing generated from tannery industries

机译:制革业产生的动物肉的细菌堆肥

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摘要

Animal fleshing (ANFL) is the major proteinaceous solid waste generated during the manufacture of leather, which requires to be disposed of by environmentally sound manner. This study reports about the treatment of ANFL into an organic compost and its effects on physiological parameters of different crops in a laboratory study. The ANFL was hydrolysed using Selenomonas ruminantium HM000123 and then the hydrolysed ANFL was mixed with cow dung and leaf litter for producing composted organic fertilizer (COF). The COF was characterized for pH, electrical conductivity (EC), total Kjeldhal nitrogen (TKN), and total organic carbon (TOC). The composting resulted in a significant reduction in pH, TOC and C:N ratio and an increase in TKN after 49 days in a compost reactor. Scanning electron microscope and FT-IR were used to analyse the hydrolysis of intra structural ANFL matrix and changes in the functional groups, respectively, in initial and final day COF. Thermogravimetry (TC) analysis was carried out for the raw mixture and COF samples to identify the weight loss under the nitrogen environment. The relative seed germination was found to be 94% in tomato (Lycopersicon esculentum), 92% in green gram (Vigna radiata), 86% in bottle gourd (Lagenaria siceraria (Mol.) Standl.) and 84% in cucumber (Cucumis sativus L) using the extracts of COF. The results indicate that the combination of both hydrolysis and bacterial composting reduced the overall time required for composting and producing a nutrient-enriched compost product.
机译:动物皮肉(ANFL)是皮革制造过程中产生的主要蛋白质固体废物,需要通过无害环境的方式进行处理。这项研究在实验室研究中报道了将ANFL处理为有机堆肥及其对不同农作物生理参数的影响。使用反刍硒虫HM000123水解ANFL,然后将水解后的ANFL与牛粪和枯枝落叶混合以生产有机肥料(COF)。 COF的特征在于pH值,电导率(EC),总凯氏氮(TKN)和总有机碳(TOC)。在堆肥反应器中放置49天后,堆肥导致pH值,TOC和C:N比值​​显着降低,并且TKN升高。扫描电子显微镜和FT-IR分别用于分析COF起始和终止日内结构ANFL基质的水解和官能团的变化。对原始混合物和COF样品进行了热重分析(TC),以确定在氮气环境下的重量损失。发现相对种子萌发在番茄(番茄)中为94%,在绿克(Vigna radiata)中为92%,在葫芦(Lagenaria siceraria(Mol。)Standl。)中为86%,在黄瓜(Cucumis sativus)中为84%。 L)使用COF提取物。结果表明,水解和细菌堆肥的结合减少了堆肥和生产营养丰富的堆肥产品所需的总时间。

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  • 来源
    《Waste Management》 |2010年第12期|p.2622-2630|共9页
  • 作者

    B. Ravindran; G. Sekaran;

  • 作者单位

    Environmental Technology Division, Central Leather Research Institute, Adyar, Chennai 600 020, India;

    Environmental Technology Division, Central Leather Research Institute, Adyar, Chennai 600 020, India;

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