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有机负荷率和填充时间对机械搅拌式厌氧序批式生物膜反应器处理合成蔗糖基废水产氢的影响。

Effect of organic loading rate and fill time on the biohydrogen production in a mechanically stirred AnSBBR treating synthetic sucrose-based wastewater.

作者信息

Inoue R K, Lima D M F, 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, 13.566-590, São Carlos, SP, Brazil.

出版信息

Appl Biochem Biotechnol. 2014 Nov;174(6):2326-49. doi: 10.1007/s12010-014-1205-7. Epub 2014 Sep 2.

Abstract

This study investigated the feasibility to produce biohydrogen of a mechanically stirred anaerobic sequencing batch biofilm reactor (AnSBBR) treating sucrose-based synthetic wastewater. The bioreactor performance (30 °C) was evaluated as to the combined effect of fill time (2, 1.5, and 1 h), cycle length (4, 3, and 2 h), influent concentration (3,500 and 5,250 mg chemical oxygen demand (COD) L(-1)) and applied volumetric organic load (AVOLCT from 9.0 to 27.0 g COD L(-1) d(-1)). AVOLs were varied according to influent concentration and cycle length (t C). The results showed that increasing AVOLCT resulted in a decrease in sucrose removal from 99 to 86 % and in improvement of molar yield per removed load (MYRLS.n) from 1.02 mol H2 mol carbohydrate(-1) at AVOLCT of 9.0 g COD L(-1) d(-1) to maximum value of 1.48 mol H2 mol carbohydrate(-1), at AVOLCT of 18.0 g COD L(-1) d(-1), with subsequent decrease. Increasing AVOLCT improved the daily molar productivity of hydrogen (MPr) from 15.28 to 49.22 mol H2 m(-3) d(-1). The highest daily specific molar productivity of hydrogen (SMPr) obtained was 8.71 mol H2 kg TVS(-1) d(-1) at an AVOLCT of 18.0 g COD L(-1) d(-1). Decreasing t C from 4 to 3 h decreased sucrose removal, increased MPr, and improved SMPr. Increasing influent concentration decreased sucrose removal only at t C of 2 h, improved MYRLS,n and MPr at all t C, and also improved SMPr at t C of 4 and 3 h. Feeding strategy had a significant effect on biohydrogen production; increasing fill time improved sucrose removal, MPr, SMPr, and MYRLS,n for all investigated AVOLCT. At all operational conditions, the main intermediate metabolic was acetic acid followed by ethanol, butyric, and propionic acids. Increasing fill time resulted in a decrease in ethanol concentration.

摘要

本研究考察了采用机械搅拌厌氧序批式生物膜反应器(AnSBBR)处理蔗糖基合成废水生产生物氢的可行性。评估了生物反应器在30℃时填充时间(2、1.5和1小时)、周期长度(4、3和2小时)、进水浓度(3500和5250 mg化学需氧量(COD)·L⁻¹)以及施加的容积有机负荷(AVOLCT从9.0至27.0 g COD·L⁻¹·d⁻¹)的综合影响。AVOL根据进水浓度和周期长度(tC)而变化。结果表明,增加AVOLCT导致蔗糖去除率从99%降至86%,每去除负荷的摩尔产率(MYRLS.n)从AVOLCT为9.0 g COD·L⁻¹·d⁻¹时的1.02 mol H₂·mol碳水化合物⁻¹提高至AVOLCT为18.0 g COD·L⁻¹·d⁻¹时的最大值1.48 mol H₂·mol碳水化合物⁻¹,随后又下降。增加AVOLCT使氢气的日摩尔生产率(MPr)从15.28提高至49.22 mol H₂·m⁻³·d⁻¹。在AVOLCT为18.0 g COD·L⁻¹·d⁻¹时获得的最高日比摩尔氢气生产率(SMPr)为8.71 mol H₂·kg TVS⁻¹·d⁻¹。将tC从4小时降至3小时会降低蔗糖去除率、提高MPr并改善SMPr。增加进水浓度仅在tC为2小时时降低蔗糖去除率,在所有tC下均提高MYRLS.n和MPr,并且在tC为4小时和3小时时也提高SMPr。进料策略对生物氢生产有显著影响;增加填充时间可提高所有研究的AVOLCT下的蔗糖去除率、MPr、SMPr和MYRLS.n。在所有运行条件下,主要的中间代谢产物是乙酸,其次是乙醇、丁酸和丙酸。增加填充时间会导致乙醇浓度降低。

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