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Biological Cr(VI) removal coupled with biomass growth, biomass decay, and multiple substrate limitation

机译:生物六价铬的去除以及生物量的增长,生物量的衰减和多种底物的限制

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摘要

In this work, a mathematical model for the biological reduction of Cr(VI), carbon and nitrogen sources consumption, and biomass growth under fully aerobic conditions was developed. The model comprises three types of aerobic heterotrophic cells (non-growing cells, growing cells with chromate reductase activity, and growing cells that have lost the chromate reductase activity), and five soluble compounds (organic substrate, ammonia nitrogen, non-metabolizable soluble products, dissolved oxygen, and hexavalent chromium). Two processes are considered responsible for the reduction of Cr(VI). The first one is the reduction of Cr(VI) coupled with growth, the second process is coupled with the endogenous decay of the biomass. The model was calibrated using the results obtained in batch cultures in the absence of carbon and nitrogen sources, using different initial Cr(VI) concentrations (0-100 mgCr L~(-1)), two carbon sources (cheese whey and lactose), and different initial nitrogen to carbon ratio (0-50 mgN gCOD~(-1)). The calibrated model was used to calculate steady-state values of TSS, soluble COD, TAN and Cr(VI) in continuous systems, obtaining a good agreement with the experimental data. The model also accurately predicted the transient concentration of Cr(VI) as a function of time in response to step changes of the inlet Cr(VI) concentration in continuous systems.
机译:在这项工作中,建立了在完全有氧条件下生物还原六价铬,碳和氮源消耗以及生物量增长的数学模型。该模型包含三种类型的好氧异养细胞(非生长细胞,具有铬酸还原酶活性的生长细胞和失去铬酸还原酶活性的生长细胞)和五种可溶性化合物(有机底物,氨氮,不可代谢的可溶性产物) ,溶解氧和六价铬)。 Cr(VI)的还原被认为是两个过程。第一个过程是与生长相关的Cr(VI)还原,第二个过程是与生物质的内源性腐烂相结合。使用在不存在碳和氮源的情况下分批培养获得的结果,使用不同的初始Cr(VI)浓度(0-100 mgCr L〜(-1)),两个碳源(奶酪乳清和乳糖)对模型进行校准。 ,以及不同的初始氮碳比(0-50 mgN gCOD〜(-1))。该校准模型用于计算连续系统中TSS,可溶性COD,TAN和Cr(VI)的稳态值,与实验数据吻合良好。该模型还响应连续系统中入口Cr(VI)浓度的阶跃变化,准确地预测了Cr(VI)的瞬时浓度随时间的变化。

著录项

  • 来源
    《Water Research》 |2011年第10期|p.3034-3046|共13页
  • 作者单位

    Centro de Inuestigacidn y Desarrollo en Criotecnologia de Alimentos (CIDCA), CCT La Plata CONICET, Fac. de Cs. Exactas,UNLP. 47 y 116, B19OOAJJ La Plata, Argentina,Fac. de Ingenieria, UNLP. 47 y 1, B1900A/J La Plata, Argentina;

    Centro de Inuestigacidn y Desarrollo en Criotecnologia de Alimentos (CIDCA), CCT La Plata CONICET, Fac. de Cs. Exactas,UNLP. 47 y 116, B19OOAJJ La Plata, Argentina;

    Centro de Inuestigacidn y Desarrollo en Criotecnologia de Alimentos (CIDCA), CCT La Plata CONICET, Fac. de Cs. Exactas,UNLP. 47 y 116, B19OOAJJ La Plata, Argentina,Fac. de Ingenieria, UNLP. 47 y 1, B1900A/J La Plata, Argentina;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cr(vi) reduction; chromium toxicity; kinetic parameter; activated sludge; nitrogen to carbon ratio; mathematical modeling;

    机译:铬(六价)还原;铬毒性;动力学参数;活性污泥;氮碳比;数学模型;
  • 入库时间 2022-08-17 13:48:25

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