...
首页> 外文期刊>Environmental Progress & Sustainable Energy >Continuous Co-biodegradation of Linear and Cyclic Naphthenic Acids in Circulating Packed-Bed Bioreactors
【24h】

Continuous Co-biodegradation of Linear and Cyclic Naphthenic Acids in Circulating Packed-Bed Bioreactors

机译:持续Co-biodegradation线性和循环环烷酸循环填充床生物反应器

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Continuous co-biodegradation of a linear and three cyclic surrogate naphthenic acids namely octanoic acid, trans-4-methyl-1-cyclohexane carboxylic acid (trans-4MCHCA), and cis- and trans-4-methyl-1-cyclohexane-acetic acids (cis-4MCHAA and trans-4MCHAA) at concentrations of 100, 50, and 50 tng/L, respectively, was investigated in two circulating packed-bed bioreactors. Using different combinations of naphthenic acids in the bioreactor influent effects of loading rate on biodegradation of each compound was evaluated. In all tested mixtures biodegradation of octanoic acid proceeded with the fastest rate, followed by trans-4MCHCA, trans-4MCHAA, and cis-4MCHAA. Biodegradation of the linear compound (octanoic acid) was not influenced by the presence of any cyclic compound, even the most recalcitrant naphthenic acid with the highest removal rate of 372.8 mg/L-h observed at a loading rate of 666.7 mg/L-h. Presence of octanoic acid negatively impacted the biodegradation of trans-4MCHCA, with the removal rates of trans-4MCHCA in the presence and absence of octanoic acid being 74.6 and 208.8 mg/L-h, respectively. With cis- and tran-4MCHAA, presence of octanoic acid improved the biodegradation of these compounds. In a mixture containing all three cyclic compounds, the maximum removal rates for cis- and trans-4MCHAA were 0.5 and 1.3 mg/L-h, respectively, which improved to 1.7 and 2.4 mg/L-h when octanoic acid was included in the mixture.
机译:连续co-biodegradation线性和三个循环代孕环烷酸即octanoic酸,trans-4-methyl-1-cyclohexane羧基酸(trans-4MCHCA),顺式trans-4-methyl-1-cyclohexane-acetic酸(cis-4MCHAA和trans-4MCHAA)浓度100年,50岁和50 tng / L,分别调查在两个循环填充床生物反应器。在生物反应器影响环烷酸加载速率对生物降解的影响化合物被评估。辛酸进行生物降解最快的速度,其次是trans-4MCHCA,trans-4MCHAA, cis-4MCHAA。线性复合(辛酸)不是受到任何循环的存在化合物,即使是最顽固的环酸去除率最高的372.8毫克/ L-h观察加载速率为666.7毫克/ L-h。trans-4MCHCA生物降解的影响trans-4MCHCA移除率的存在和没有辛酸的74.6和208.8毫克/ L-h分别。辛酸的存在改善了这些化合物的生物降解。包含所有三个环化合物,最大的去除率为独联体和trans-4MCHAA分别是0.5和1.3毫克/ L-h哪个提高到1.7和2.4毫克/ L-h辛酸是包含在混合物中。

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