Effect of wet oxidation on the fingerprints of polymeric substances from an activated sludge

被引:19
作者
Luis Urrea, Jose [1 ]
Collado, Sergio [1 ]
Oulego, Paula [1 ]
Diaz, Mario [1 ]
机构
[1] Univ Oviedo, Dept Chem & Environm Engn, C Julian Claveria S-N, E-33071 Oviedo, Spain
关键词
Activated sludge; EPS; Fingerprints; Molecular size; Size exclusion chromatography; Wet oxidation; SIZE-EXCLUSION CHROMATOGRAPHY; AIR OXIDATION; EXTRACELLULAR POLYMERS; EPS; EXTRACTION; FLOCCULATION; DEWATERABILITY; PHENYLALANINE; SEPARATION; PROTEINS;
D O I
10.1016/j.watres.2016.09.004
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Thermal pre-treatments of activated sludge involve the release of a high amount of polymeric substances into the bulk medium. The molecular size of these polymers will largely define the subsequent biological treatment of the liquid effluent generated. In this work, the effects of wet oxidation treatment (WO) on the fingerprints of the polymeric substances which compose the activated sludge, were analysed. For a better understanding of these transformations, the sludge was separated into its main fractions: soluble microbial products (SMP), loosely bound extracellular polymeric substances (LB-EPS), tightly bound extracellular polymeric substances (TB-EPS) and naked cells, and then each one was subjected to WO separately (190 degrees C and 65 bar), determining the fingerprints evolution by size exclusion technique. Results revealed a fast degradation of larger molecules (over 500 kDa) during the first minutes of treatment (40 min). WO also increases the absorptive properties of proteins (especially for 30 kDa), which is possibly due to the hydroxylation of phenylalanine amino acids in their structure. WO of naked cells involved the formation of molecules between 23 and 190 kDa, which are related to the release of cytoplasmic polymers, and more hydrophobic polymers, probably from the cell membrane. The results allowed to establish a relationship between the location of polymeric material and its facility to become oxidised; thus, the more internal the polymeric material in the cell, the easier its oxidation. When working directly with the raw sludge, hydrolysis mechanisms played a key role during the starting period. Once a high degree of solubilisation was reached, the molecules were rapidly oxidised into other compounds with refractory characteristics. The final effluent after WO showed almost 90% of low molecular weight solubilised substances (0-35 kDa). (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:282 / 290
页数:9
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