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A new type of poly(vinyl alcohol)itrocellulose/granular activated carbon/KNO _3 composite bead used as a biofilter material

机译:一种新型的聚乙烯醇/硝化纤维/颗粒活性炭/ KNO_3复合珠用作生物滤料

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A new type of poly(vinyl alcohol)itrocellulose/granular activated carbon/KNO _3 composite bead was prepared and shown to be suitable for use as a filter material in the biofiltration process. This composite bead was a porous spherical particle with a diameter of 2.4-6.0 mm and a density of 1.125 g/cm ~3. The amount of water-soluble nitrogen dissolved out of this composite bead was 145.5 mg N/g dry composite bead. The biochemical kinetic behaviors of n-butyl acetate in a spherical poly(vinyl alcohol) (PVA)itrocellulose (NC)/granular activated carbon (GAC)/KNO _3 composite bead biofilter (NC biofilter) and a spherical PVA/peat/GAC/KNO _3 composite bead biofilter (peat biofilter) were investigated. The values of the half-saturation constant K _s for the NC biofilter and the peat biofilter were 33.55 and 35.54 ppm, respectively. The values of the maximum reaction rate V _m for the NC biofilter and the peat biofilter were 23.83 and 22.46 ppm/s, respectively. Diffusion-limited zero-order kinetics were regarded as the most adequate biochemical reaction model for the two biofilters. The microbial growth rates and biochemical reaction rates for the two biofilters were inhibited at higher inlet concentrations. The biochemical kinetic behaviors of the two biofilters were similar. The maximum elimination capacities of the NC biofilter and the peat biofilter were 170.72 and 174.51 g∈C/h m ~3 bed volume, respectively. The PVAitrocellulose/GAC/ KNO _3 composite bead made it easier for the microbes to adjust to their new environment and secrete exocellular enzymes to break down the substrate.
机译:制备了一种新型的聚乙烯醇/硝酸纤维素/颗粒活性炭/ KNO_3复合珠,并证明适合用作生物过滤过程中的过滤材料。该复合珠是具有2.4-6.0mm的直径和1.125g / cm〜3的密度的多孔球形颗粒。从该复合珠粒中溶解出的水溶性氮的量为145.5mg N / g干复合珠粒。乙酸正丁酯在球形聚乙烯醇(PVA)/硝酸纤维素(NC)/颗粒活性炭(GAC)/ KNO _3复合珠生物滤池(NC生物滤池)和球形PVA /豌豆/ GAC中的生化动力学行为研究了/ KNO_3复合珠生物滤池(豌豆生物滤池)。 NC生物滤池和泥炭生物滤池的半饱和常数K _s的值分别为33.55 ppm和35.54 ppm。 NC生物滤池和泥炭生物滤池的最大反应速率V_m的值分别为23.83和22.46 ppm / s。扩散受限的零阶动力学被认为是两个生物滤池最合适的生化反应模型。在较高的入口浓度下,两个生物滤池的微生物生长速率和生化反应速率均受到抑制。两种生物滤池的生化动力学行为相似。 NC生物滤池和泥炭生物滤池的最大去除能力分别为170.72和174.51gεC/ h m〜3床体积。 PVA /硝酸纤维素/ GAC / KNO_3复合珠使微生物更容易适应新环境,并分泌胞外酶分解底物。

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