International Journals

[1]
B.Ketheesan, PM.Thanh, and D.C.Stuckey, “Iron deficiency and bioavailability in anaerobic batch and submerged membrane bioreactors (SAMBR) during organic shock loads,” Bioresource Technology, pp. 136–145, 2016.
[2]
B.Ketheesan, PM.Thanh, D.C.Stuckey, and Z.Yan, “Trace metal speciation and bio availability in anaerobic digestion,” Biotechnology Advances 34, pp. 122–136, 2015.
[3]
B.Ketheesan and D.C.Stuckey, “Effects of hydraulic/organic shock/transient loads in anaerobic wastewater treatment,” Critical reviews in Environmental science & Technology, pp. 2693–2727, 2015.
[4]
B.Ketheesan and N.Nirmalakhandan, “Modeling microalgal growth in an airlift driven raceway reactor,” Bioresource Technology, pp. 689–696, 2013.
[5]
B.Ketheesan and N.Nirmalakhandan, “Feasibility of microalgal cultivation in a pilot-scale airlift-driven raceway reactor,” Bioresource Technology, pp. 196–202, 2012.
[6]
K.R.J.Perera, B.Ketheesan, Y.Arudchelvam, and N.Nirmalakhandan, “Fermentative Biohydrogen Production II,” Net Energy Gain from Organic Wastes. Int J Hydrogen Energy, 2012.
[7]
B.Ketheesan and N.Nirmalakhandan, “Improving net energy gain in fermentative biohydrogen production from glucose,” Int J Hydrogen Energy, pp. 11693–11701, 2011.
[8]
B.Ketheesan and N.Nirmalakhandan, “Development of a new airlift-driven raceway reactor for algal cultivation,” Applied Energy, pp. 3370–3376, 2011.
[9]
K.R.J.Perera, B.Ketheesan, V.Gadhamshetty, and N.Nirmalakhandan, “Fermentative biohydrogen production,” Evaluation of net energy gain. Int J Hydrogen Energy, pp. 12224–12233, 2010.
[10]
P.M.Thanh, B.Ketheesan, Z.Yan, and D.C.Stuckey, “Effects of trace metal deficiency and supplementation on a submerged anaerobic membrane bioreactor,” Bioresource Technology, vol. 241, pp. 161–170, 2017.
[11]
P.M.Thanh, B.Ketheesan, Z.Yan, and D.C.Stuckey, “Effect of Ethylenediamine-N,N’-disuccinic acid (EDDS) on the speciation and bioavailability of Fe2+ in the presence of sulfide in anaerobic digestion,” Bioresource Technology, vol. 229, pp. 169–179, 2017.
[12]
L. et al. and B.Ketheesan, “Review of the cultivation program within the National Alliance for Advanced Biofuels and Bioproducts,” Algal Research, vol. 22, pp. 166–186, 2017.
[13]
T. PM, B.Ketheesan, S. D.C, and Y. Z., “Dosing of Ethylenediamine-N,N′-disuccinic acid (EDDS) to improve the bioavailability of Fe2+ in the presence of sulfide in a submerged anaerobic membrane bioreactor,” Chemical Engineering Journal, vol. 330, pp. 175–182, 2017.
[14]
T. PM, B.Ketheesan, S. D.C, and Y. Z., “Effects of operating conditions on speciation and bioavailability of trace metals in submerged anaerobic membrane bioreactor,” Bioresource Technology, vol. 243, pp. 810–819, 2017.
[15]
K. B. Shanthamareen MJ., “Microalgae based wastewater treatment for the removal of emerging contaminants. A review of challenges and opportunities.,” Case studies in chemical and Environmental Engineering, 100046., 2020.
[16]
H. GBB. Thinojah T. Ketheesan B., “Design of up-flow aerated filters for the removal of iron from groundwater,” Water Supply. Article in press, 2020.

National Journals

[1]
Sandamali PSN., “Effect of reverse osmosis wastewater on seed germination and seedling performance of four different crops,” Journal of dry zone agriculture. 5(1): 28-40, Faculty of Agriculture, University of Jaffna., 2019.

International Conference

[1]
B.Ketheesan, PM.Thanh, and D.C.Stuckey, “The effects of Iron supplementation and bioavailability in anaerobic batch and submerged anaerobic membrane bioreactor,” Jul. 2016.
[2]
B.Ketheesan, PM.Thanh, and D.C.Stuckey, “Transient organic overloading in a submerged anaerobic membrane reactor,” Nov. 2015.
[3]
B.Ketheesan, PM.Thanh, and D.C.Stuckey, “Effects of Iron supplementation on degradation of VFAs in a submerged anaerobic membrane bioreactor,” Nov. 2015.
[4]
B.Ketheesan, PM.Thanh, and D.C.Stuckey, “Effect of organic shock loading in a submerged anaerobic membrane bioreactor (SAMBR),” Oct. 2014.
[5]
B.Ketheesan, PM.Thanh, and D.C.Stuckey, “Effect of metal deficiency during shock loading in a submerged anaerobic membrane bioreactor,” May 2014.
[6]
B.Ketheesan and N.Khandan, “Airlift driven raceway reactor for microalgae cultivation,” Apr. 2012.
[7]
B.Ketheesan and N.Khandan, “Evaluation of microalgal productivity in an Airlift-raceway reactor,” Mar. 2012.
[8]
B.Ketheesan and N.Khandan, “Airlift driven raceway bioreactor for microalgae production,” Aug. 2010.
[9]
B.Ketheesan, K.R.J.Perera, and N.Khandan, “Biohydrogen production from cattle manure leachate in semi-batch and semi-continuous Reactors,” Jan. 2010.
[10]
B.Ketheesan, K.R.J.Perera, V.Gadhamshetty, and N.Khandan, “Biohydrogen production from cattle manure,” Jan. 2009.
[11]
T. PM. Ketheesan B. and S. D.C, “Submerged anaerobic membrane bioreactor for wastewater treatment,” Aug. 2017.