1 |
Enhanced production of compost from Andean wetland biomass using a bioreactor and photovoltaic system Mesa F, Torres J, Sierra O, Escobedo FJ Biomass & Bioenergy, 106, 21, 2017 |
2 |
Pyrolysis, kinetics analysis, thermodynamics parameters and reaction mechanism of Typha latifolia to evaluate its bioenergy potential Ahmad MS, Mehmooda MA, Taqvi STH, Elkamel A, Liu CG, Xu JR, Rahimuddin SA, Gull M Bioresource Technology, 245, 491, 2017 |
3 |
Bioaugmentation with an anaerobic fungus in a two-stage process for biohydrogen and biogas production using corn silage and cattail Nkemka VN, Gilroyed B, Yanke J, Gruninger R, Vedres D, McAllister T, Hao XY Bioresource Technology, 185, 79, 2015 |
4 |
Energy characterisation of herbaceous biomasses irrigated with marginal waters Molari G, Milani M, Toscano A, Borin M, Taglioli G, Villani G, Zema DA Biomass & Bioenergy, 70, 392, 2014 |
5 |
Effects of plant biomass on denitrifying genes in subsurface-flow constructed wetlands Chen Y, Wen Y, Zhou Q, Vymazal J Bioresource Technology, 157, 341, 2014 |
6 |
Mechanisms of microwave irradiation pretreatment for enhancing anaerobic digestion of cattail by rumen microorganisms Hu ZH, Yue ZB, Yu HQ, Liu SY, Harada H, Li YY Applied Energy, 93, 229, 2012 |
7 |
Liquefaction of Typha latifolia by supercritical fluid extraction Aysu T, Turhan M, Kucuk MM Bioresource Technology, 107, 464, 2012 |
8 |
Plants for waste water treatment - Effects of heavy metals on the detoxification system of Typha latifolia Lyubenova L, Schroder P Bioresource Technology, 102(2), 996, 2011 |
9 |
Performance evaluation on the treatment of olive mill waste water in vertical subsurface flow constructed wetlands Yalcuk A, Pakdil NB, Turan SY Desalination, 262(1-3), 209, 2010 |
10 |
Treatment of industrial wastewater with two-stage constructed wetlands planted with Typha latifolia and Phragmites australis Calheiros CSC, Rangel AOSS, Castro PML Bioresource Technology, 100(13), 3205, 2009 |