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厌氧序批式生物膜反应器处理甘油基废水的生物制氢:有机负荷、进水浓度和循环时间的影响

Biohydrogen production in an AnSBBR treating glycerin-based wastewater: effects of organic loading, influent concentration, and cycle time.

作者信息

Bravo I S Moncayo, Lovato G, Rodrigues J A D, Ratusznei S M, Zaiat M

机构信息

Escola de Engenharia de São Carlos, Universidade de São Paulo (USP), Av. Trabalhador São-Carlense 400, São Carlos, SP, 13566-590, Brazil.

出版信息

Appl Biochem Biotechnol. 2015 Feb;175(4):1892-914. doi: 10.1007/s12010-014-1421-1. Epub 2014 Nov 27.

Abstract

This study evaluated the influence of the applied volumetric organic load on biohydrogen production in an anaerobic sequencing batch biofilm reactor (AnSBBR) with 3.5 L of liquid medium and treating 1.5 L of glycerin-based wastewater per cycle at 30 °C. Six applied volumetric organic loads (AVOLCT) were generated from the combination of cycle periods (3 and 4 h) and influent concentrations (3000, 4000, and 5000 mg chemical oxygen demand (COD) L(-1)), with values ranging from 7565 to 16,216 mg COD L(-1) day(-1). No clear relationship was found between the applied volumetric organic load and the hydrogen production. However, the highest hydrogen molar production (MPr 67.5 mol H2 m(-3) day(-1)) was reached when the reactor was operated with a cycle period of 4 h and an influent concentration of 5000 mg COD L(-1) (AVOLCT 12,911 mg COD L(-1) day(-1)). This condition also reached the highest molar yield per applied load based on the organic matter (MYALC,m 21.1 mol H2 kg COD(-1)). In addition, the pretreatment of the sludge/inoculum was found to not influence the productivity/yield of the process, and the use of crude glycerol as a sole source of carbon exhibited a clear disadvantage for hydrogen production compared to pure glycerol. The AnSBBR used for the hydrogen production experiments operated with pure glycerol as a sole carbon source exhibited important practical potential.

摘要

本研究评估了在30℃下,应用的容积有机负荷对厌氧序批式生物膜反应器(AnSBBR)中生物制氢的影响,该反应器装有3.5L液体培养基,每个循环处理1.5L甘油基废水。通过循环周期(3小时和4小时)和进水浓度(3000、4000和5000mg化学需氧量(COD)L⁻¹)的组合产生了六种应用的容积有机负荷(AVOLCT),其值范围为7565至16216mg COD L⁻¹天⁻¹。在所应用的容积有机负荷与氢气产量之间未发现明显关系。然而,当反应器在4小时的循环周期和5000mg COD L⁻¹的进水浓度(AVOLCT 12911mg COD L⁻¹天⁻¹)下运行时,达到了最高的氢气摩尔产量(MPr 67.5mol H₂ m⁻³天⁻¹)。基于有机物,此条件下每应用负荷的摩尔产率(MYALC,m 21.1mol H₂ kg COD⁻¹)也达到最高。此外,发现污泥/接种物的预处理不影响该过程的生产率/产率,并且与纯甘油相比,使用粗甘油作为唯一碳源对氢气生产具有明显劣势。用于氢气生产实验的以纯甘油作为唯一碳源运行的AnSBBR具有重要的实际潜力。

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