David I. Verrelli;

“Degradation of epoxy pipe coatings due to diffusion of chemicals”

Read more: J4. Degradation of epoxy pipe coatings due to diffusion of chemicals

David I. Verrelli, Warren J. Bruckard, Peter T. L. Koh, M. Philip Schwarz, and Bart Follink;

“Influence of particle shape and roughness on the induction period for particle–bubble attachment”

Read more: C4. Influence of particle shape and roughness on the induction period for particle–bubble...

David I. Verrelli;

“Effects of polymer flocculation upon sludge dewatering in potable water treatment”

Read more: C2. Effects of polymer flocculation upon sludge dewatering in potable water treatment

David I. Verrelli and Boris Albijanic;

“Measuring the induction time for particle–bubble attachment in flotation”

Read more: C7. Measuring the induction time for particle–bubble attachment in flotation

David I. Verrelli and Peter T. L. Koh;

“Understanding particle–bubble attachment: experiments to improve flotation modelling”

Read more: C3. Understanding particle–bubble attachment: experiments to improve flotation modelling

Joel M. Rahman, Shane P. Seaton, Jean-Michel Perraud, Harold Hotham, David I. Verrelli and John R. Coleman;

“It’s TIME for a new environmental modelling framework”

Read more: C1. It’s TIME for a new environmental modelling framework

David I. Verrelli, Warren J. Bruckard, Peter T. L. Koh, M. Philip Schwarz, and Bart Follink;

“Towards the perfect anastomosis — quantitative assessment of simulated anastomoses”

Read more: O15. Towards the perfect anastomosis — quantitative assessment of simulated anastomoses

David I. Verrelli *;
* In collaboration with other group members: Ho Hai Huynh, Sasha Trandafilovic, Rachel Weldon, Michael Whiteman & Saiful Zainal Abidin.  

Formaldehyde from Methanol

Read more: D1. Formaldehyde from Methanol

David I. Verrelli *;
* Under supervision of Peter J. Scales (primary supervisor) and David R. Dixon (secondary supervisor), and with additional support as acknowledged. 

Drinking Water Treatment Sludge Production and Dewaterability

Read more: D2. Drinking Water Treatment Sludge Production and Dewaterability