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Properties affecting the solids processing of sludges from the submerged membrane bioreactor and activated sludge process.

机译:影响浸没膜生物反应器污泥和活性污泥工艺中固体处理的特性。

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摘要

Physical, chemical and biological properties were determined for sludges from a pilot-scale submerged membrane bioreactor (SMBR) and two bench-scale complete-mix activated sludge (CMAS) reactors treating municipal primary effluent wastewater at mean cell residence times (MCRT) from 2 to 10 d. One CMAS reactor (CMAS Hi) was operated at high shear, and the other (CMAS Lo) was operated at low shear. Sludge properties were compared using laboratory methods for predicting solid-liquid separation. In general, SMBR sludge had higher colloidal material content, lower extracellular polymeric substance (EPS) content, and higher levels of filamentous microorganisms than either CMAS sludge. Higher colloidal material content was due to the more efficient solids retention by the membrane. The EPS, necessary for bioflocculation, was lower because there was no selective pressure for sludge to settle. The higher filamentous microorganism content was due to high levels of nocardioform bacteria resulting from the "trapping environment" created by the membrane. The CMAS Hi and SMBR sludges had similar particle size distributions (PSD) with a majority of particles in the 2--4 mum range due to the higher shearing conditions. The CMAS Lo sludge PSD was distinctly bimodal with peaks in the 2--4 mum and 10--20 mum ranges. Lower settling rates of SMBR sludge were attributed to higher filamentous microorganism content and possibly to smaller particles. Lower solids recovery and float concentration in batch flotation tests for SMBR sludge was related to higher levels of colloidal material and nocardioform bacteria. Low compaction of SMBR sludge in centrifuge tests corresponded to higher levels of filamentous microorganisms. Normalized capillary suction time values for SMBR sludge were lower than for CMAS sludges, likely caused by lower EPS content. There was no significant difference in normalized time to filter values between reactors at each MCRT because of the offsetting effects of EPS and colloidal material; SMBR sludge had high colloidal material content and low EPS, and CMAS sludge had high EPS and low colloidal material content. Chemical conditioning of SMBR sludge improved settling, flotation and filterability but not compaction. Results were used to assess the performance of SMBR sludge type in full-scale thickening and dewatering processes.
机译:测定了中试规模浸没膜生物反应器(SMBR)和两个台式规模完全混合活性污泥(CMAS)反应器处理污泥的物理,化学和生物学特性,这些污泥以平均细胞停留时间(MCRT)从2开始处理市政一级废水至10 d。一个CMAS反应器(CMAS Hi)在高剪切下运行,另一个(CMAS Lo)在低剪切下运行。使用实验室方法比较污泥特性,以预测固液分离。通常,与两种CMAS污泥相比,SMBR污泥具有更高的胶体物质含量,更低的细胞外聚合物质(EPS)含量和更高的丝状微生物含量。较高的胶体材料含量是由于膜对固体的保留更有效。生物絮凝所需的EPS较低,因为没有选择压力使污泥沉降。较高的丝状微生物含量是由于膜产生的“诱捕环境”导致的高浓度的诺卡曲菌。 CMAS Hi和SMBR污泥具有相似的粒度分布(PSD),由于较高的剪切条件,大部分颗粒在2--4微米范围内。 CMAS Lo污泥PSD明显是双峰的,峰在2--4和10--20范围内。 SMBR污泥的沉降速度较低归因于较高的丝状微生物含量,并且可能归因于较小的颗粒。分批浮选SMBR污泥的固体回收率和浮选浓度较低与胶体物质和诺卡氏菌的含量较高有关。离心试验中SMBR污泥的低压实度对应于较高水平的丝状微生物。 SMBR污泥的归一化毛细抽吸时间值低于CMAS污泥,这可能是由于EPS含量降低所致。由于EPS和胶体材料的抵消作用,每个MCRT的反应器之间的过滤时间标准化时间没有显着差异。 SMBR污泥的胶态物质含量高,EPS低; CMAS污泥的EPS,胶态物质含量低。化学处理SMBR污泥可改善沉降,浮选和过滤性,但不能压实。结果用于评估SMBR污泥类型在全面浓缩和脱水过程中的性能。

著录项

  • 作者

    Merlo, Rion Paul.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Engineering Environmental.; Engineering Sanitary and Municipal.; Engineering Civil.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;建筑科学;建筑科学;
  • 关键词

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