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机械搅拌 AnSBBR 处理蔗糖基废水时有机负荷、进水浓度和进料时间对生物制氢的影响。

Effects of organic loading, influent concentration, and feed time on biohydrogen production in a mechanically stirred AnSBBR treating sucrose-based wastewater.

机构信息

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

出版信息

Appl Biochem Biotechnol. 2013 Dec;171(7):1832-54. doi: 10.1007/s12010-013-0457-y. Epub 2013 Sep 3.

Abstract

An anaerobic sequencing batch biofilm reactor (AnSBBR-total volume 7.5 L; liquid volume 3.6 L; treated volume per cycle 1.5 L) treated sucrose-based wastewater to produce biohydrogen (at 30 °C). Different applied volumetric organic loads (AVOL of 9.0, 12.0, 13.5, 18.0, and 27.0 kg COD m(-3) day(-1)), which were varied according to the influent concentration (3,600 and 5,400 mg COD L(-1)) and cycle length (4, 3, and 2 h), have been used to assess the following parameters: productivity and yield of biohydrogen per applied and removed load, reactor stability, and efficiency. The removed organic matter (COD) remained stable and close to 18 % and carbohydrates (sucrose) uptake rate remained between 83 and 97 % during operation. The decrease in removal performance of the reactor with increasing AVOL, by increasing the influent concentration (at constant cycle length) and decreasing the cycle lengths (at constant influent concentrations), resulted in lower conversion efficiencies. Under all conditions, when organic load increased there was a predominance of acetic, propionic, and butyric acid as well as ethanol. The highest concentration of biohydrogen in the biogas (24-25 %) was achieved at conditions with AVOL of 12.0 and 13.5 kg COD m(-3) day(-1), the highest daily production rate (0.139 mol H2 day(-1)) was achieved at AVOL of 18.0 kg COD m(-3) day(-1), and the highest production yields per removed and applied load were 2.83 and 3.04 mol H2 kg SUC(-1), respectively, at AVOL of 13.5 kg COD m(-3) day(-1). The results indicated that the best productivity tends to occur at higher organic loads, as this parameter involves the "biochemical generation" of biogas, and the best yield tends to occur at lower and/or intermediate organic loads, as this parameter involves "biochemical consumption" of the substrate.

摘要

一种厌氧序批式生物膜反应器(AnSBBR-总容积 7.5 L;液体容积 3.6 L;每个循环处理体积 1.5 L)处理基于蔗糖的废水以生产生物氢(在 30°C 下)。不同的应用体积有机负荷(AVOL 为 9.0、12.0、13.5、18.0 和 27.0 kg COD m(-3) day(-1)),根据进水浓度(3600 和 5400 mg COD L(-1))和周期长度(4、3 和 2 h)进行变化,用于评估以下参数:应用和去除负荷的生物氢生产率和产率、反应器稳定性和效率。在运行过程中,去除的有机物(COD)保持稳定,接近 18%,碳水化合物(蔗糖)的摄取率保持在 83%至 97%之间。随着有机负荷的增加(通过增加进水浓度和降低周期长度),反应器的去除性能下降,导致转化率降低。在所有条件下,当有机负荷增加时,乙酸、丙酸和丁酸以及乙醇占优势。在有机负荷为 12.0 和 13.5 kg COD m(-3) day(-1)时,沼气中生物氢的浓度最高(24-25%),在有机负荷为 18.0 kg COD m(-3) day(-1)时,日最高产量(0.139 mol H2 day(-1)),在有机负荷为 13.5 kg COD m(-3) day(-1)时,去除和应用负荷的产率最高,分别为 2.83 和 3.04 mol H2 kg SUC(-1)。结果表明,最佳生产力倾向于在较高的有机负荷下发生,因为该参数涉及沼气的“生化生成”,而最佳产量倾向于在较低和/或中等有机负荷下发生,因为该参数涉及底物的“生化消耗”。

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