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Optimizing contaminant desorption and bioavailability in dense slurry systems. 2. PAH bioavailability and rates of degradation

机译:优化致密浆液系统中的污染物解吸和生物利用度。 2. PAH的生物利用度和降解速率

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The effects of mechanical mixing on rates of polycyclic aromatic hydrocarbon (PAH) biodegradation in dense geosorbent slurry (67% solids content, w/w) systems were evaluated using laboratory-scale intermittently mixed batch bioreactors. A PAH-contaminated soil and a phenanthrene-sorbed mineral sorbent (alpha-Al2O3) were respectively employed as slurry solids in aerobic and anaerobic biodegradation studies. Both slurries exhibited a characteristic behavior of pseudoplastic non-Newtonian fluids, and the impeller revolution rate and its diameter had dramatic impacts on power and torque requirements in their laminar flow mixing. Rates of phenanthrene biodegradation were markedly enhanced by relatively low-level auger mixing under both aerobic and anaerobic (denitrifying) conditions. Parameters for empirical models correlating biodegradation rate coefficient (k(b)) values to the degree of mixing were similar to those for correlations between mass transfer (desorption) rate coefficient (k(r)) values for rapidly desorbing fractions of soil organic matter and degree of mixing reported in a companion study, supporting a conclusion that performance-efficient and cost-effective enhancements of PAH mass transfer (desorption) and its biodegradation processes can be achieved by the introduction of optimal levels of reactor-scale mechanical mixing.
机译:使用实验室规模的间歇混合间歇式生物反应器评估了机械混合对稠密地吸附剂浆料(固体含量67%,w / w)中多环芳烃(PAH)生物降解速率的影响。在需氧和厌氧生物降解研究中,分别将受PAH污染的土壤和菲吸附的矿物吸附剂(α-Al2O3)用作浆料固体。两种浆液均表现出假塑性非牛顿流体的特征,叶轮转速和其直径对它们的层流混合中的功率和扭矩要求产生了显着影响。在好氧和厌氧(反硝化)条件下,通过相对较低水平的螺旋混合可以显着提高菲生物降解的速率。用于将生物降解率系数(k(b))值与混合度相关联的经验模型的参数类似于用于土壤有机质快速解吸组分的传质(解吸)速率系数(k(r))值与伴随研究中报道的混合度,支持以下结论:可以通过引入最佳水平的反应器规模的机械混合来实现PAH传质(解吸)及其生物降解过程的性能有效和成本有效的增强。

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