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A Novel Reactor for Exploring the Effect of Water Content on Biofilter Degradation Rates

机译:探索水分对生物滤池降解率影响的新型反应器

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A novel batch recycle reactor was developed to investigate the effect of water content changes on the biological degradation rate of gas phase contaminants in low water content systems, such as biofilters. The reactor tightly controlled the water content of the unsaturated packing material using the principle of a suction cell. Matric potential in the compost was controlled between -6 and -36 cm H_2O. A soil water retention curve relating matric potential to gravimetric water content was generated for the compost. Periodic dry weight analyses of reactor samples, together with the water retention curve, verified moisture content control. Runs were performed with toluene as the contaminant using una-mended compost at a constant temperature of 30℃. Degradation results indicated a linear, biologically limited degradation region, followed by a non-linear region at lower concentrations. Elimination capacities were calculated for the linear region for different matric potentials along both the wetting and drying curves, and both changes in the water content and direction of approach affected the removal rates in the linear region. The elimination capacity ranged from 155g/m 3 hr to 24 g/m~3 hr for toluene over the matric potential range investigated. Repeatability studies indicated that moisture content was most likely the parameter that influenced changes in performance.
机译:开发了一种新型的间歇循环反应器,以研究含水量变化对低含水量系统(如生物滤池)中气相污染物的生物降解率的影响。反应器利用吸气池原理严格控制不饱和填充材料的水含量。堆肥中的基质势控制在-6至-36 cm H_2O之间。产生了用于堆肥的将基质势与重量水含量相关的土壤保水曲线。定期对反应堆样品进行干重分析,以及保水曲线,验证了水分含量的控制。使用未经处理的堆肥,以甲苯为污染物,在30℃的恒定温度下运行。降解结果表明,存在一个线性的,生物学上有限的降解区域,随后是浓度较低的非线性区域。计算沿润湿和干燥曲线的不同基质势的线性区域的消除能力,水分含量和进场方向的变化都会影响线性区域的去除率。在所研究的基质势范围内,甲苯的消除能力为155g / m 3 hr至24 g / m〜3 hr。重复性研究表明,水分含量很可能是影响性能变化的参数。

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