1 |
Functional sustainability of periphytic biofilms in organic matter and Cu2+ removal during prolonged exposure to TiO2 nanoparticles Liu JZ, Tang J, Wan JJ, Wu CX, Graham B, Kerr PG, Wu YH Journal of Hazardous Materials, 370, 4, 2019 |
2 |
Evaluating role of immobilized periphyton in bioremediation of azo dye amaranth Shabbir S, Faheem M, Ali N, Kerr PG, Wu YH Bioresource Technology, 225, 395, 2017 |
3 |
Bioremediation of agricultural solid waste leachates with diverse species of Cu (II) and Cd (II) by periphyton Yang JL, Liu JZ, Wu CX, Kerr PG, Wong PK, Wu YH Bioresource Technology, 221, 214, 2016 |
4 |
In situ bioremediation of surface waters by periphytons Wu YH, Xia LZ, Yu ZQ, Shabbir S, Kerr PG Bioresource Technology, 151, 367, 2014 |
5 |
A multi-level bioreactor to remove organic matter and metals, together with its associated bacterial diversity Wu YH, Hu ZY, Kerr PG, Yang LZ Bioresource Technology, 102(2), 736, 2011 |
6 |
The removal of nutrients from non-point source wastewater by a hybrid bioreactor Wu YH, Hu ZY, Yang LZ, Graham B, Kerr PG Bioresource Technology, 102(3), 2419, 2011 |
7 |
Basic dye adsorption onto an agro-based waste material - Sesame hull (Sesamum indicum L.) Feng YF, Yang F, Wang YQ, Ma L, Wu YH, Kerr PG, Yang LZ Bioresource Technology, 102(22), 10280, 2011 |
8 |
Removal of cyanobacterial bloom from a biopond-wetland system and the associated response of zoobenthic diversity Wu YH, Kerr PG, Hu ZY, Yang LZ Bioresource Technology, 101(11), 3903, 2010 |