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首页> 外文期刊>International Biodeterioration & Biodegradation >Isolation and identification of microorganisms and their aerobic biodegradation of fish-meal wastewater for liquid-fertilization.
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Isolation and identification of microorganisms and their aerobic biodegradation of fish-meal wastewater for liquid-fertilization.

机译:鱼粉废水中液体微生物的分离鉴定及其需氧生物降解

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摘要

To reutilize the wastewater generated during the process of fish-meal production (FMW), seven thermophilic microorganisms were newly isolated and their characteristics of aerobic biodegradation of FMW were examined in a 5 l-bioreactor. It clearly showed that the amino-acid composition (12.54 g 100 g sample-1) in the final broth of the biodegradation using 8-folds diluted FMW was almost twice that of non-biodegraded FMW. The levels of amino acids in the final broth were also comparable to those in a commercial fertilizer. When more (32-folds) diluted FMW was used as a substrate, phytotoxicity of biodegraded final broth was further reduced with disappearance of a strong unpleasant smell in the end. The final broth of biodegradation using 32-folds diluted FMW required only 2-folds dilution to meet the minimum GI criterion of a phytotoxin-free fertilizer. All the results suggest the promising potential of biodegraded FMW for the production of fertilizer, which is expected to yield high economic value..
机译:为了重新利用鱼粉生产过程中产生的废水,新分离了7种嗜热微生物,并在5升生物反应器中检查了它们的有氧生物降解性。清楚地表明,使用8倍稀释FMW进行生物降解的最终发酵液中的氨基酸组成(12.54 g 100 g样品-1)几乎是非生物降解FMW的氨基酸组成的两倍。最终肉汤中的氨基酸水平也与商业肥料中的氨基酸水平相当。当使用更多(32倍)稀释的FMW作为底物时,生物降解的最终发酵液的植物毒性进一步降低,最终消失了强烈的难闻气味。使用32倍稀释的FMW进行生物降解的最终发酵液仅需稀释2倍即可满足无植物毒素肥料的最低GI标准。所有结果都表明,生物降解的FMW在生产肥料方面具有广阔的发展前景,有望产生很高的经济价值。

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