首页> 外文会议>2014 IEEE Conference on Biomedical Engineering and Sciences >Biodegradation of xylene in a biofilter- effect of process variables, shock loads and kinetic modeling
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Biodegradation of xylene in a biofilter- effect of process variables, shock loads and kinetic modeling

机译:生物滤池中二甲苯的生物降解-过程变量,冲击负荷和动力学建模的影响

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The performance of a laboratory scale biofilter using date palm tree barks as packing material was studied to remove xylene. Experiments were performed by subjecting the biofilter to different xylene inlet loading rates(3.0-214.0 g/m h) and flow rates (0.06, 0.09 and 0.012 m/h). Removal efficiencies greater than 90% were achieved in the inlet xylene concentration range of 0.1-3.2 g/m. The elimination capacity was found to vary linearly with inlet loading rates. The concentration profiles were studied axially during the biofiltration experiments and the lower parts of the biofilter removed a significant part of inlet xylene. The temperature and pH variations were recorded during the entire biofiltration studies. The carbon dioxide production rate was related to elimination capacity by the equation CPR = 1.81 EC + 14.12. The Michaelis-Menten type model kinetic constants for the biofiltration of xylene were evaluated as maximum elimination capacity, EC = 178.57g/mh and saturation constant K =1.232 g/m. The stability of the biomass inside the biofilter was found to be good by subjecting the biofilter to shock load conditions.
机译:研究了使用枣椰子树皮作为包装材料的实验室规模生物滤池去除二甲苯的性能。通过对生物滤池进行不同的二甲苯进口加载速度(3.0-214.0 g / m h)和流速(0.06、0.09和0.012 m / h)进行实验。在入口二甲苯浓度范围为0.1-3.2 g / m时,去除效率大于90%。发现消除能力随进口负荷率线性变化。在生物过滤实验过程中轴向研究了浓度曲线,生物过滤器的下部去除了大部分进口二甲苯。在整个生物过滤研究期间记录温度和pH值变化。二氧化碳的产生速率与消除能力有关,公式为CPR = 1.81 EC + 14.12。二甲苯生物过滤的Michaelis-Menten型模型动力学常数被评估为最大消除容量,EC = 178.57g / mh和饱和常数K = 1.232 g / m。通过使生物过滤器经受冲击负荷条件,发现生物过滤器内部的生物质的稳定性良好。

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