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Modelling aerobic granular SBR at variable COD/N ratios including accurate description of total solids concentration

机译:以可变的COD / N比建模好氧颗粒SBR,包括对总固体浓度的准确描述

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The operation of a sequencing batch reactor (SBR) with aerobic granular biomass was successfully simulated using a one-dimensional biofilm model. The biological processes considered were described based on the activated sludge model (ASM) platform with two main modifications: (i) simultaneous growth and storage of organic substrates by heterotrophic bacteria; and (ii) inclusion of nitrite as intermediate compound in the nitrification and denitrification processes. Three different operational conditions were evaluated, characterized by different chemical oxygen demand to nitrogen (COD/N) ratios in the influent of: 0,1.25 and 5.5 kg kg~(-1), representing a purely autotrophic media and two heterotrophic media, respectively. An accurate description of the experimental concentrations of COD, ammonium, nitrite, nitrate, dissolved oxygen (DO) and alkalinity along the cycles was obtained. Total solids concentration inside the reactor (5.0,2.0 and 1.0 kg VSS m~(-3) for (COD/N) ratio of 5.5,1.25 and 0 kg kg~(-1), respectively) and biofilm density (23kg m_(granule)~(-3)) were correctly described with the model. To obtain an accurate description of both solids concentration and biofilm density different densities were defined for the particulate compounds and a porosity profile along the granule was imposed. Oxygen penetration depths obtained with the model were 0.35 x 10~(-3), 0.30 x 10~(-3) and 0.12 x 10~(-3) m for (COD/N) ratio of 5.5,1.25 and Okg kg~(-1), respectively. The values were in agreement with those used in the description of the porosity profiles.
机译:使用一维生物膜模型成功模拟了带有好氧颗粒生物质的测序间歇反应器(SBR)的操作。基于活化污泥模型(ASM)平台进行了两个主要修改,描述了所考虑的生物学过程:(i)异养细菌同时生长和存储有机底物; (ii)在硝化和反硝化过程中包含亚硝酸盐作为中间化合物。评估了三种不同的操作条件,其特征是进水中的化学需氧量与氮(COD / N)比率分别为:0,1.25和5.5 kg kg〜(-1),分别代表纯自养培养基和两种异养培养基。获得了沿循环的化学需氧量,铵,亚硝酸盐,硝酸盐,溶解氧(DO)和碱度的实验浓度的准确描述。反应器内的总固体浓度(COD / N比分别为5.5、1.25和0 kg kg〜(-1)的5.0、2.0和1.0 kg V​​SS m〜(-3))和生物膜密度(23kg m_(用该模型正确地描述了颗粒)〜(-3))。为了获得对固体浓度和生物膜密度的准确描述,为颗粒化合物定义了不同的密度,并沿颗粒施加了孔隙率分布。对于(COD / N)为5.5、1.25和Okg kg〜的模型,通过该模型获得的氧气渗透深度为0.35 x 10〜(-3),0.30 x 10〜(-3)和0.12 x 10〜(-3)m (-1)。该值与孔隙率描述中所使用的值一致。

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