4.4 Article

The impact of peroxydisulphate and peroxymonosulphate on disintegration and settleability of activated sludge

Journal

ENVIRONMENTAL TECHNOLOGY
Volume 37, Issue 10, Pages 1296-1304

Publisher

TAYLOR & FRANCIS LTD
DOI: 10.1080/09593330.2015.1112434

Keywords

peroxymonosulphate; Chemical disintegration; waste activated sludge (WAS); soluble chemical oxygen demand (SCOD); peroxydisulphate

Funding

  1. Ministry of Education of the Czech Republic within SGS project [21066/115, LO 1201]
  2. OPR&DI project 'Centre for Nanomaterials, Advanced Technologies and Innovation' [CZ.1.05/2.1.00/01.0005]

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Chemical treatment processes have mostly been considered as an efficient way for biosolid minimization. The improvement of sludge dewatering was more a welcome side-effect of these sequential processes. In this study, heat-activated sodium peroxydisulphate (PDS) and potassium peroxymonosulphate (MPS) were applied in order to disintegrate waste activated sludge (WAS). PDS and MPS treatment of WAS results in the polymer transfer of organic matter from the solid phase to the liquid phase. Our research work was done for chemical disintegration of WAS by PDS and MPS in doses of 0.2%, 0.4%, 0.6%, 0.8% and 1% (169.5, 339.0, 508.5, 678.0 and 847.5 mg [GRAPHICS] ) activated at temperatures of 60 degrees C and 90 degrees C for 30 min. The application of these methods causes the soluble chemical oxygen demand value to increase in the supernatant. In addition, there was a positive influence on the sludge volume index which decreased for the highest doses of PDS of over 63% and 77% and MPS of over 78% and 82% through heat activation at temperatures of 60 degrees C and 90 degrees C, respectively. Furthermore, MPS was more successful in the floc particle destruction, therefore it caused a higher sludge settlement acceleration (sedimentation/compaction speed) than PDS. The experimental results demonstrated that the application of heat-activated PDS and MPS may become a novel effective way of processing sewage sludge.

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