Literature DB >> 31493732

Pretreatment-promoted sludge fermentation liquor improves biological nitrogen removal: Molecular insight into the role of dissolved organic matter.

Rongxue Yuan1, Yanwen Shen1, Nanwen Zhu2, Changkai Yin1, Haiping Yuan1, Xiaohu Dai3.   

Abstract

Waste activated sludge (WAS) can be used as carbon sources to support biological nutrient removal (BNR). In this study, thermal-alkaline (THALK), ozonation (OZN), electrolysis (EC) and NaClO-promoted electrolysis (EC-AOP) were investigated to facilitate WAS solubilization and production of volatile fatty acids (VFAs). EEMF-PARAFAC and FT-ICR-MS were employed to characterize the transformation of dissolved organic matter (DOM) in WAS fermentation liquors at molecular level. THALK achieved the highest fluorescence intensity of C1 protein after pretreatment. Proteins and lipids were the dominant DOM in the pretreated WAS, while the DOM shifted towards substances with higher H/C and lower O/C after fermentation. The BNR results showed that THALK (100%) and EC-AOP (96.9%) outperformed other groups (78.9-90.3%) in terms of NO3-N removal, indicating the significant impact of DOM compositions. Overall, these results demonstrated that THALK and EC-AOP effectively enhanced release of VFAs and DOM, which subsequently improved NO3-N removal efficiency.
Copyright © 2019 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Denitrification; Dissolved organic matter; EEMF-PARAFAC; FT-ICR-MS; Pretreatment; Waste activated sludge

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Year:  2019        PMID: 31493732     DOI: 10.1016/j.biortech.2019.122082

Source DB:  PubMed          Journal:  Bioresour Technol        ISSN: 0960-8524            Impact factor:   9.642


  2 in total

1.  Effect of magnetic powder on denitrification using the sludge alkaline fermentation liquid as a carbon source.

Authors:  Haiqing Xu; Liang Guo; Shiliang Guo; Yi Wang; Zonglian She; Mengchun Gao; Yangguo Zhao; Chunji Jin
Journal:  Environ Sci Pollut Res Int       Date:  2019-12-26       Impact factor: 5.190

2.  A proof-of-concept experimental study for vacuum-driven anaerobic biosolids fermentation using the IntensiCarb technology.

Authors:  Frances Okoye; Farokh Laqa Kakar; Elsayed Elbeshbishy; Kati Bell; Christopher Muller; Jose Jimenez; Ahmed Al-Omari; Domenico Santoro; Eunkyung Jang; John Walton; Gholamreza Bahreini; Masuduz Zaman; George Nakhla; Ferenc Hazi; Imre Takacs; Sudhir Murthy; Diego Rosso
Journal:  Water Environ Res       Date:  2022-02-11       Impact factor: 3.306

  2 in total

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