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A membrane bioreactor for the removal of dimethyl sulphide and toluene from waste air

机译:用于从废气中除去二甲基硫化物和甲苯的膜生物反应器

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In biotrickling filters, mass transfer of hydrophobic compounds is the limiting factor. Biofilters are static systems, and so control and regulation of operational parameters such as pH and nutrient supply can be a problem. In membrane bioreactors, these drawbacks can be avoided. The hydrophobic membrane separates the waste air from the aqueous phase, thus avoiding mass-transfer limitation, while pH and nutrient supply can be directly controlled. In this contribution, an overview will be given of results obtained during a four-year project. First, the physical chemical characteristics (solubility, permeability, diffusivity) and microbial adhesion of different membranes were tested. This led to the selection of a composite membrane consisting of a porous polyvinylidenefluoride (PVDF) support layer coated with a thin (1 or 2.5 μm) dense polydimethylsiloxane (PDMS) top layer. This membrane was mounted into a module provided with four parallel rectangular channels for gas flow (in contact with the porous layer) and nutrient solution (in contact with the dense layer) respectively. After inoculation, a biofilm developed on the dense layer. Experiments were performed with dimethyl sulphide and toluene as target VOCs. Operational characteristics such as elimination capacity as a function of the volumetric load and residence time, effect of nutrient supply, long-term performance) were determined. Mass transfer was studied by measuring concentration profiles along the channels of the module in different conditions.
机译:在生物折磨过滤器中,疏水化合物的传质转移是限制因子。生物过滤器是静态系统,因此控制和调节操作参数如pH和营养供应可能是一个问题。在膜生物反应器中,可以避免这些缺点。疏水膜将废气从水相分离,从而避免质量转移限制,而pH和营养供应可以直接控制。在这一贡献中,将概述在为期四年项目中获得的结果。首先,测试不同膜的物理化学特性(溶解度,渗透率,扩散性)和微生物粘附。这导致了由涂覆有薄(1或2.5μm)致密聚二甲基硅氧烷(PDMS)顶层的多孔聚偏偏氟化(PVDF)支撑层组成的复合膜。将该膜安装在设置有四个平行矩形通道的模块中,用于气体流(与多孔层接触)和营养液(与致密层接触)。接种后,在致密层上形成的生物膜。用二甲基硫化物和甲苯作为靶VOC进行实验。确定了作为变量负荷和停留时间的函数的消除容量的操作特性,确定了营养供应,长期性能的效果。通过在不同条件下测量模块通道的浓度曲线来研究传质。

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