This study introduces a novel approach to aerobic granular sludge technology that minimizes the start-up time and guarantees the formation of stable granules. This is achieved by seeding the reactor with a cationic polymer without using inoculated sludge. Three cationic polymers (Hydrofloc C4400SA, C8896, and polyelectrolyte emulsion) were tested to determine the most appropriate polymer for aerobic granular sludge (AGS) startup based on the optimal dose and formation of aerobic granules. Hydrofloc cationic polymer C4400SA has excellent granule-forming properties in the AGS reactor compared to their counterparts. The formation of granules was boosted by adding 15 ppm of polymer, resulting in densely packed aerobic granules after 10 days. This improvement can be due to the more cationic properties of hydrofloc, which play a key role in bridging between cells and particles because the cationic charges of hydrofloc attract negatively charged bacteria in wastewater, thereby promoting aggre...

Cationic Polymer-Mediated Interbacterial Aggregation: A Novel Approach for Rapid Aerobic Granules Development / Hussain, Sajid; Muhammad Brohi, Khan; Gallina, Umberto; Andreottola, Gianni. - In: CHEMOSPHERE. - ISSN 0045-6535. - ELETTRONICO. - 2024, 367:(2024), pp. 1-9. [10.1016/j.chemosphere.2024.143597]

Cationic Polymer-Mediated Interbacterial Aggregation: A Novel Approach for Rapid Aerobic Granules Development

Sajid Hussain
Primo
;
Gianni Andreottola
Secondo
2024-01-01

Abstract

This study introduces a novel approach to aerobic granular sludge technology that minimizes the start-up time and guarantees the formation of stable granules. This is achieved by seeding the reactor with a cationic polymer without using inoculated sludge. Three cationic polymers (Hydrofloc C4400SA, C8896, and polyelectrolyte emulsion) were tested to determine the most appropriate polymer for aerobic granular sludge (AGS) startup based on the optimal dose and formation of aerobic granules. Hydrofloc cationic polymer C4400SA has excellent granule-forming properties in the AGS reactor compared to their counterparts. The formation of granules was boosted by adding 15 ppm of polymer, resulting in densely packed aerobic granules after 10 days. This improvement can be due to the more cationic properties of hydrofloc, which play a key role in bridging between cells and particles because the cationic charges of hydrofloc attract negatively charged bacteria in wastewater, thereby promoting aggre...
2024
Hussain, Sajid; Muhammad Brohi, Khan; Gallina, Umberto; Andreottola, Gianni
Cationic Polymer-Mediated Interbacterial Aggregation: A Novel Approach for Rapid Aerobic Granules Development / Hussain, Sajid; Muhammad Brohi, Khan; Gallina, Umberto; Andreottola, Gianni. - In: CHEMOSPHERE. - ISSN 0045-6535. - ELETTRONICO. - 2024, 367:(2024), pp. 1-9. [10.1016/j.chemosphere.2024.143597]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/436910
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