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Synthesis and Performance of Iron Oxide-Coated Ceramsite in a Biotrickling Filter for Nitric Oxide Removal under Thermophilic Conditions

机译:高温条件下生物滴滤滤池中氧化铁包覆陶粒的合成及性能

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摘要

A novel medium consisting of iron oxide-coated porous ceramsite (modified ceramsite) was investigated for NO removal under thermophilic conditions in this study. We used a surface coating method with FeCl3·6H2O as the modifier. When ceramsite was calcined for 4 h at 500 °C, the surface pH value decreased to 3.46, which is much lower than the isoelectric point of ceramsite, ensuring its surface was electropositive. The surface of modified ceramsite changed from two- to three-dimensional and exhibited excellent adsorption behavior to assist microbial growth; the maximum dry weight of the biofilm was 1.28 mg/g. It only took 8 days for the biofilter constructed from the modified ceramsite to start up, whereas that packed with commercial ceramsite took 22 days. The NO removal efficiency of the biofilter did not decrease apparently at high NO inlet concentration of above 1600 mg/m3 and maintained an average value of above 90% during the whole operation period. Additionally, the morphological observation showed that the loss of the surface coating was not obvious, and the coating properties remained stable during long-term operation. The maximum NO inlet loading of the biotrickling filter was 80 g/(m3·h) with an average removal efficiency of 91.1% along with a quick start-up when using the modified ceramsite filler. Thus, modified ceramsite can be considered a very effective medium in biotrickling filters for NO removal.
机译:在本研究中,研究了一种由氧化铁涂层多孔陶粒(改性陶粒)组成的新型介质在高温条件下的NO去除效果。我们使用了以FeCl3·6H2O为改性剂的表面涂覆方法。当将陶粒在500°C下煅烧4 h时,其表面pH值降至3.46,远低于陶粒的等电点,从而确保其表面为正电。改性陶粒的表面从二维变为三维,并表现出优异的吸附性能,有助于微生物的生长。生物膜的最大干重为1.28mg / g。用改性的陶粒构建的生物滤池启动仅需8天,而装有商用陶粒的生物滤池仅需22天。在NO入口浓度高于1600 mg / m 3 的情况下,生物滤池的NO去除效率没有明显降低,在整个操作期间均保持在90%以上的平均值。另外,形态观察表明,表面涂层的损失不明显,并且在长期操作下涂层性能保持稳定。当使用改良的陶粒填料时,生物滴滤滤池的最大NO入口负荷为80 g /(m 3 ·h),平均去除效率为91.1%,并且启动迅速。因此,改性的陶粒可以被认为是生物滴滤池中用于去除NO的非常有效的介质。

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