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Development of a new high-rate anaerobic process for the treatment of industrial and domestic wastewaters: The anaerobic migrating blanket reactor (AMBR).

机译:开发用于处理工业和生活废水的新型高速率厌氧工艺:厌氧迁移毯式反应器(AMBR)。

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摘要

The anaerobic migrating blanket reactor (AMBR) was developed as a new high-rate system for the treatment of industrial and domestic wastewaters, at Iowa State University. The AMBR, a continuously fed, compartmentalized reactor, required mechanical mixing to obtain a sufficient biomass/substrate contact. The formation of granular biomass was not dependent on a hydraulic upflow pattern in the reactor, but was dependent on biomass migration over the horizontal plane of the reactor and the settling characteristics of the final compartment. To prevent acclimation of biomass in the final compartment, the flow was reversed in a horizontal matter. Keeping the pH sufficiently high in the initial compartment without recycling effluent was another advantage of reversing the flow. This also prevented total phase separation of acidogenesis and methanogenesis in the AMBR.;Laboratory-scale AMBR systems have achieved high organic removal efficiencies when fed with non-acidified sucrose as a substrate at chemical oxygen demand (COD) loading rates up to 30 g/L/d. Furthermore, the AMBR was able to retain high levels of granular biomass at these loading rates. Due to moderate shear forces by mechanical mixing, the laboratory-scale AMBR was able to treat non-acidified sucrose at food to microorganism (FIM) ratios higher than found for other high rate systems. The AMBR out-competed the upflow anaerobic sludge blanket (UASB) and anaerobic sequencing batch reactor (ASBR) in a laboratory-scale comparison in terms of reactor performances and maximum organic loading rates.;A mature granular blanket was formed after four months of operating a 54-liter AMBR, seeded with flocculent primary digester sludge. This was accomplished with moderate hydraulic selection pressures at the start of the run, in which reactor performances were sufficient to build up an active biomass, without losing the selection mechanism for better settling biomass.;A 20-liter AMBR was able to effectively remove organic material from dilute non-fat dry milk (NFDM) solution at a concentration of 600 mg/L under psychrophilic conditions. Moreover, this reactor was able to retain its granular biomass after the hydraulic retention time (HRT) was decreased from four to one hour during hydraulic shock load studies. Finally, staging or partial phase separation was found in the AMBR in which relatively more methanogens were present in the inside compartments.
机译:厌氧迁移毯式反应器(AMBR)是爱荷华州立大学开发的一种新型高速率系统,用于处理工业和家庭废水。 AMBR是一种连续进料的分区反应器,需要机械混合以获得足够的生物质/底物接触。颗粒状生物质的形成不依赖于反应器中的水力上升模式,而是依赖于生物质在反应器水平面上的迁移以及最终隔室的沉降特性。为了防止最终隔室中的生物质适应,在水平物质中逆向流动。在初始隔室中保持足够高的pH值而又不回收废水是逆流的另一个优点。这也阻止了AMBR中产酸和产甲烷的全相分离。实验室规模的AMBR系统以化学需氧量(COD)上载量高达30 g / g的非酸化蔗糖作为底物进料时,实现了高有机去除效率。升/天此外,AMBR能够在这些加载速率下保留高水平的颗粒状生物质。由于通过机械混合产生适度的剪切力,因此实验室规模的AMBR能够以高于其他高速率系统所发现的食物与微生物(FIM)的比率处理非酸化蔗糖。在反应器性能和最大有机负载率方面,在实验室规模的比较中,AMBR胜过了上流厌氧污泥层(UASB)和厌氧顺序分批反应器(ASBR).;运行四个月后形成了成熟的颗粒状层54升AMBR,接种了絮凝的一级消化池污泥。这是通过在运行开始时采用适度的液压选择压力来完成的,在该压力下,反应堆的性能足以构建活性生物质,而不会失去选择机制,从而更好地沉降生物质。20升AMBR能够有效去除有机物。在低温条件下以600 mg / L的浓度从稀释的脱脂干奶(NFDM)溶液中提取的原料。此外,在水力冲击载荷研究期间,水力停留时间(HRT)从4小时减少到一小时后,该反应器能够保留其颗粒状生物质。最后,在AMBR中发现了阶段或部分相分离,其中内部隔室中存在相对更多的产甲烷菌。

著录项

  • 作者

    Angenent, Largus Theodora.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Biology Microbiology.;Engineering Sanitary and Municipal.;Environmental Sciences.;Engineering Environmental.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 103 p.
  • 总页数 103
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:48:36

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