首页> 外文期刊>Environmental Technology >Rapid degradation of FOG discharged from food industry wastewater by lipolytic fungi as a bioaugmentation application
【24h】

Rapid degradation of FOG discharged from food industry wastewater by lipolytic fungi as a bioaugmentation application

机译:脂解真菌作为生物强化剂可快速降解食品工业废水中释放的FOG

获取原文
获取原文并翻译 | 示例
       

摘要

Fats, oils and grease (FOG) congregate in grease traps and are a slowly biodegradable particulate organic matter, which may require enzymatic or hydrolytic conversion to form readily biodegradable soluble organic matter. The existing treatment methods employ water-based hydrolysis of FOG to form long-chain fatty acids (LCFAs). The LCFAs discharged into wastewater treatment system create functional difficulties, especially the inhibitory effect caused by accumulation of LCFAs. This study aims to find an effective treatment method for this persistent problem encountered in conventional wastewater treatment system. Solid-state degradation by lipolytic fungi was performed in a tray-type reactor as a novel approach of bioaugmentation. Grease trap waste samples were dried to have moisture content of 25-35% and mixed with coir fiber (1% w/v) for proper aeration. Each 10mg/g dry weight of substrate was inoculated with 1mL of spore suspension (1x107 spores/mL) of lipolytic fungi. Thereafter, moisture content in the reactor was increased to 65%, and incubated at 30 degrees C. Within 72h of post incubation, degradation efficiency of about 50% was recorded by fungal isolates. The feasibility of using developed protocol for FOG degradation was tested with a laboratory-scale prototype reactor.
机译:脂肪,油脂和油脂(FOG)聚集在油脂捕集器中,是一种可缓慢生物降解的颗粒有机物,可能需要进行酶或水解转化以形成易于生物降解的可溶性有机物。现有的处理方法采用FOG的水基水解形成长链脂肪酸(LCFA)。排放到废水处理系统中的LCFA会产生功能上的困难,尤其是由于LCFA的积累而引起的抑制作用。这项研究旨在找到一种有效的处理方法,以解决常规废水处理系统中遇到的这一持续性问题。作为一种新的生物强化方法,在托盘型反应器中通过脂解真菌进行固态降解。将油脂捕集器废料样品干燥至水分含量为25-35%,并与椰壳纤维(1%w / v)混合以进行适当的充气。每干重10 mg / g的底物接种1 mL脂解性真菌孢子悬浮液(1x107孢子/ mL)。此后,将反应器中的水分含量增加至65%,并在30℃下温育。温育后72小时内,通过真菌分离物记录了约50%的降解效率。使用实验室规模的原型反应器测试了使用开发的协议进行FOG降解的可行性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号