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Biodegradation of phenol in a draft-tube spouted bed bioreactor with biomass attached to hydrogel particles

机译:用生物量附着在水凝胶颗粒中的生物量的苯酚中的生物降解

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The performance of a draft-tube spouted bed bioreactor (DT-SBB) packed with hydrogel particles for biomass immobilization has been used to treat a phenolic wastewater in continuous mode. The biomass support particles were made of a cyclodextrin-based polymer and then seeded with an acclimated mixed culture. Due to the low density of such particles and also the bioreactor design, the pumping energy required to maintain a moving bed of the resulting bioparticles was very low and a recirculation flow was not necessary. The inlet phenol concentration and the phenol inlet loading rate were the operating variables studied. Phenol removal efficiency was used to monitor the process. The DT-SBB showed a high removal capacity (up to 2.8 kg-phenol/m~3d) with a high efficiency (>99%). The removal capacity of the DT-SBB was found to be limited by the availability of dissolved oxygen in periods with high phenol elimination rate. The removal efficiency decreased significantly for higher loading rates (>3.1 kg/m~3d) because of phenol inhibition. The evolution of the distribution of microbial populations was also investigated. A predominance of gram-negative bacteria (especially the genera Pseudomonas and Acinetobacter) was observed during the periods of maximum degradation.
机译:一个导流管的性能喷出填充有用于生物质固定化的水凝胶粒子已被用于治疗以连续模式酚废水床生物反应器(DT-SBB)。生物质的载体颗粒是由基于环糊精的聚合物,然后用驯化混合培养物接种。由于这样的颗粒,并且还生物反应器设计的密度低,所需的泵浦能量,以保持所产生的生物颗粒的移动床是非常低的和再循环流是没有必要的。入口苯酚浓度和苯酚入口装载率的影响的运行变量。苯酚的去除效率来监测该过程。的DT-SBB显示出高的除去能力(高达2.8公斤苯酚/米〜3d)的高效率(> 99%)。被发现的DT-SBB的去除能力,通过溶解氧在具有高苯酚消除速率周期的可用性的限制。去除效率,因为苯酚抑制的较高加载率(>3.1公斤/米〜3d)的显著降低。微生物种群的分布的演变也进行了研究。期间最大降解的周期中观察到革兰氏阴性细菌的优势(特别是假单胞菌属和不动杆菌)。

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