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Evaluation of bioaugmentation and biostimulation effects on the treatment of refinery oily sludge using 2(n) full factorial design

机译:使用2(n)全因子设计评估生物强化和生物刺激作用对炼油厂油泥的处理

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摘要

Bioremediation approaches for the treatment of oily sludge from a refinery were evaluated using a 2(3) factorial design. The three strategies tested were bioaugmentation with indigenous microbial consortia (MO) isolated from oily sludge, biostimulation with nutrients (NP) and biostimulation with the surfactant Triton X-100 (TX). Eight experimental runs were conducted in triplicate with factor settings +/- (high/low) as per the 2(3) design. The main effects and the effects of various interactions of the factors on oil degradation and microbial growth in suspension were evaluated during a 30 day study. Multifactor ANOVA could reveal the significant effects while the normal order score approach failed in this scenario. The main effect of biostimulation with nutrients in the form of nitrate and phosphate, as well as biostimulation with Triton X-100, was positive and significant when both oil degradation and microbial growth in suspension were chosen as the response variables. However, the main effect of bioaugmentation was only significant for oil degradation but was insignificant for microbial growth at a 90% confidence level. The MO-NP binary interaction and the MO-NP-TX ternary interactions were positive and significant indicating the synergistic effect of these strategies on oil degradation and microbial growth. All other binary interactions were found to be insignificant.
机译:使用2(3)析因设计评估了用于处理炼油厂油污的生物修复方法。测试的三种策略是从油性污泥中分离出的原生微生物聚生体(MO)进行生物强化,营养物(NP)进行生物刺激以及表面活性剂Triton X-100(TX)进行生物刺激。按照2(3)设计,一式三份进行了八次实验运行,参数设置为+/-(高/低)。在为期30天的研究中,评估了悬浮液中油的降解和微生物生长的主要影响以及各种因素之间的相互作用。在这种情况下,当正常订单评分方法失败时,多因素ANOVA可能会显示出显着影响。当选择油降解和悬浮液中的微生物生长作为响应变量时,用硝酸盐和磷酸盐形式的营养物进行生物刺激以及使用Triton X-100进行生物刺激的主要效果是积极的,并且是显着的。但是,生物强化的主要作用仅对油降解显着,而对微生物生长(在90%置信度水平下)微不足道。 MO-NP二元相互作用和MO-NP-TX三元相互作用是正向和显着的,表明这些策略对油的降解和微生物的生长具有协同作用。发现所有其他二进制交互作用都不重要。

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    JASMINE, J; MUKHERJI, S;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 English
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