首页> 外文期刊>Biotechnology for Biofuels >A comparative study of anaerobic fixed film baffled reactor and up-flow anaerobic fixed film fixed bed reactor for biological removal of diethyl phthalate from wastewater: a performance, kinetic, biogas, and metabolic pathway study
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A comparative study of anaerobic fixed film baffled reactor and up-flow anaerobic fixed film fixed bed reactor for biological removal of diethyl phthalate from wastewater: a performance, kinetic, biogas, and metabolic pathway study

机译:厌氧固定膜折流板反应器与上流式厌氧固定膜固定床反应器从废水中生物去除邻苯二甲酸二乙酯的比较研究:性能,动力学,沼气和代谢途径研究

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BackgroundPhthalic acid esters, including diethyl phthalate (DEP), which are considered as top-priority and hazardous pollutants, have received significant attention over the last decades. It is vital for industries to select the best treatment technology, especially when the DEP concentration in wastewater is high. Meanwhile, anaerobic biofilm-based reactors are considered as a promising option. Therefore, in the present study, for the biological removal of DEP from synthetic wastewater, two different anaerobic biofilm-based reactors, including anaerobic fixed film baffled reactor (AnFFBR) and up-flow anaerobic fixed film fixed bed reactor (UAnFFFBR), were compared from kinetic and performance standpoints. As in the previous studies, only the kinetic coefficients have been calculated and the relationship between kinetic coefficients and their interpretation has not been evaluated, the other aim of the present study was to fill this research gap. ResultsIn optimum conditions, 90.31 and 86.91% of COD as well as 91.11 and 88.72% of DEP removal were achieved for the AnFFBR and UAnFFFBR, respectively. According to kinetic coefficients (except biomass yield), the AnFFBR had better performance as it provided a more favorable condition for microbial growth. The Grau model was selected as the best mathematical model for designing and predicting the bioreactors’ performance due to its high coefficients of determination (0.97 R 2). With regard to the insignificant variations of the calculated Grau kinetic coefficients ( K G) when the organic loading rate (with constant HRT) increased, it can be concluded that both of the bioreactors can tolerate high organic loading rate and their performance is not affected by the applied DEP concentrations. ConclusionsBoth the bioreactors were capable of treating low-to-high strength DEP wastewater; however, according to the experimental results and obtained kinetic coefficients, the AnFFBR indicated higher performance. Although the AnFFBR can be considered as a safer treatment option than the UAnFFFBR due to its lower DEP concentrations in sludge, the UAnFFFBR had lower VSS/TSS ratio and sludge yield, which could make it more practical for digestion. Finally, both the bioreactors showed considerable methane yield; however, compared to the UAnFFFBR, the AnFFBR had more potential for bioenergy production. Although both the selected bioreactors achieved nearly 90% of DEP removal, they can only be considered as pre-treatment methods according to the standard regulations and should be coupled with further technology.
机译:背景技术邻苯二甲酸二乙酯(DEP)等邻苯二甲酸酯被认为是最重要的有害污染物,在过去的几十年中受到了广泛的关注。选择最佳的处理技术对行业至关重要,尤其是当废水中的DEP浓度很高时。同时,基于厌氧生物膜的反应器被认为是有前途的选择。因此,在本研究中,为了从合成废水中生物去除DEP,比较了两种不同的基于厌氧生物膜的反应器,包括厌氧固定膜折流板反应器(AnFFBR)和上流厌氧固定膜固定床反应器(UAnFFFBR)。从动力学和性能的角度来看。与以前的研究一样,仅计算了动力学系数,还没有评估动力学系数及其解释之间的关系,本研究的另一个目的是填补这一研究空白。结果在最佳条件下,AnFFBR和UAnFFFBR分别达到90.31%和86.91%的COD以及91.11%和88.72%的DEP去除率。根据动力学系数(生物量产量除外),AnFFBR性能更好,因为它为微生物生长提供了更有利的条件。由于Grau模型具有较高的确定系数(0.97 R 2 ),因此被选为设计和预测生物反应器性能的最佳数学模型。关于当有机负荷率(恒定的HRT)增加时,计算的Grau动力学系数(K G )的微小变化,可以得出结论,两个生物反应器都可以耐受较高的有机负荷率并且它们的性能不受施加的DEP浓度的影响。结论两种生物反应器均能处理低至高浓度DEP废水。然而,根据实验结果和获得的动力学系数,AnFFBR表现出更高的性能。尽管由于AnFFBR污泥中的DEP浓度较低,可以认为它是比UAnFFFBR更安全的处理方法,但UAnFFFBR的VSS / TSS比和污泥产率较低,这使其更易于消化。最后,两个生物反应器均显示出可观的甲烷产率。但是,与UAnFFFBR相比,AnFFBR具有更大的生物能源生产潜力。尽管两个选定的生物反应器均实现了近90%的DEP去除率,但根据标准规定,它们只能被视为预处理方法,应与其他技术结合使用。

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