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Biofiltration of Air/Styrene and Air/Styrene/Acetone mixtures in a bubble column reactor

机译:鼓泡塔反应器中空气/苯乙烯和空气/苯乙烯/丙酮混合物的生物过滤

摘要

The goal of this work was the treatment of polluted waste gases in a bubble column reactor (BCR), in order to determinate the maximum value of reactor’s efficiency (RE), varying the inlet concentration (C in) of the pollutants.The gaseous mixtures studied were: (i) air with styrene and (ii) air with styrene and acetone. The liquid phase used to contain the biomass in the reactor was a basal salt medium (BSM), fundamental for the microorganisms’ development.The reactor used in this project consists of a glass column of 620mm height and inside diameter 75mm. In all essays there were continually measured: pH, dissolved oxygen and liquid’s temperature. Temperature and pH were controlled (T=24ºC, 7.0 ≤ pH ≤ 7.7). In all experiments the liquid volume (including the biomass) used in the reactor was kept constant (1.5L) as well as the total gas flowrate (1 L/min).Concerning the goal of the work, some parameters were calculated: the organic load (OL), removal efficiency (RE), elimination capacity (EC), biomass concentration (xf) and dry biomass concentration (Xdw).In a first series of experiments, the gas mixture used was air with styrene, varying its concentration from 191 mg.m-3 to 6500 mg.m-3.It was concluded that the RE maximum value (97%) was obtained for C in Sty = 4200 mg.m-3. For the maximum tested value of C in Sty, RE obtained was 20%. In a second step, the gaseous mixture included acetone, varying C in Sty between 225 mg.m-3 and 2659 mg.m-3 and C in Ac between 153mg.m-3 and 1389 mg.m-3. The aim of these tests was the determination of C in Ac for which RE was maximum, obtaining C in Ac = 750 mg.m-3. A third series of experiments was performed, in which C in Ac was maintained equal to that value and C in Sty was varied until higher values (5422 mg.m-3). RE maximum values obtained in this last series were 100% for styrene and 40% for acetone.One important conclusion is the fact that the microorganisms available degrade better styrene than acetone.On the ambit of this study, it was possible to identify the species available in biomass: Xanthobacter antotrophicus py2, Enterobacter aerogenes, Nocardia, Corynebacterium Spp., Rhodococcus rhodochrous e Pseudomonas Sp.
机译:这项工作的目标是在鼓泡塔反应器(BCR)中处理受污染的废气,以便确定反应器效率(RE)的最大值,从而改变污染物的进口浓度(C in)。研究的对象是:(i)含苯乙烯的空气和(ii)含苯乙烯和丙酮的空气。反应器中用于容纳生物质的液相是基础盐培养基(BSM),它是微生物发育的基础。该项目中使用的反应器由620mm高的玻璃柱和75mm的内径组成。在所有论文中都不断进行测量:pH,溶解氧和液体温度。控制温度和pH(T =24ºC,7.0≤pH≤7.7)。在所有实验中,反应器中使用的液体量(包括生物质)保持恒定(1.5L),总气体流量保持恒定(1 L / min)。关于工作目标,计算了一些参数:负荷(OL),去除效率(RE),消除能力(EC),生物质浓度(xf)和干生物质浓度(Xdw)。在第一个系列实验中,使用的气体混合物是空气与苯乙烯,其浓度从191 mg.m-3至6500 mg.m-3。得出结论,对于Sty = 4200 mg.m-3的C,获得了RE最大值(97%)。对于Sty中C的最大测试值,获得的RE为20%。在第二步骤中,气态混合物包含丙酮,Sty的C在225mg.m-3和2659mg.m-3之间,并且Ac中的C在153mg.m-3和1389mg.m-3之间。这些测试的目的是确定RE中最大的Ac中的C,获得Ac中的C = 750 mg.m-3。进行第三系列实验,其中Ac中的C保持等于该值,并且Sty中的C变化直到更高的值(5422mg.m-3)。在最后一个系列中获得的RE最大值对于苯乙烯是100%,对于丙酮是40%。一个重要的结论是,可用微生物降解的苯乙烯比丙酮更好地降解了这一事实。在这项研究的范围内,有可能确定可用的物种生物质中的表达:枯草芽孢杆菌py2,产气肠杆菌,诺卡氏菌,棒状杆菌属,杜鹃红球菌和假单胞菌。

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    Vieira Ana;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 eng
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