1 |
An environmental assessment of electricity production from slaughterhouse residues. Linking urban, industrial and waste management systems Santagata R, Ripa M, Ulgiati S Applied Energy, 186, 175, 2017 |
2 |
"Wealth from metal waste": Translating global knowledge on industrial ecology to metals recycling in Australia Corder GD, Golev A, Giurco D Minerals Engineering, 76, 2, 2015 |
3 |
Bio-Oil Separation from Potential Non-Edible Urban Waste Source Putranjiva roxburghii Subramanian N, Mahendradas DK, Kasirajan R, Sahadevan R Separation Science and Technology, 50(13), 2066, 2015 |
4 |
Barium uptake by maize plants as affected by sewage sludge in a long-term field study Nogueira TAR, deMelo WJ, Fonseca IM, Marques MO, He ZL Journal of Hazardous Materials, 181(1-3), 1148, 2010 |
5 |
Woody biomass availability for bioethanol conversion in Mississippi Perez-Verdin G, Grebner DL, Sun C, Munn IA, Schultz EB, Matney TG Biomass & Bioenergy, 33(3), 492, 2009 |
6 |
Application of sludge from urban wastewater treatment plants in road's embankments De Ona J, Osorio F Journal of Hazardous Materials, 131(1-3), 37, 2006 |
7 |
The fuel properties of pyrolysis liquid derived from urban solid wastes in Bangladesh Islam MN, Islam MN, Beg MRA Bioresource Technology, 92(2), 181, 2004 |
8 |
Sorbent behavior in urban waste incineration: acid gas removal and thermogravimetric characterization Garea A, Marques JA, Irabien A, Kavouras A, Krammer G Thermochimica Acta, 397(1-2), 227, 2003 |
9 |
VOLATILE FATTY-ACIDS PRODUCTION BY MESOPHILIC FERMENTATION OF MECHANICALLY-SORTED URBAN ORGANIC WASTES IN A PLUG-FLOW REACTOR SANS C, MATAALVAREZ J, CECCHI F, PAVAN P, BASSETTI A Bioresource Technology, 51(1), 89, 1995 |
10 |
Acidogenic fermentation of organic urban wastes in a plug-flow reactor under thermophilic conditions Sans C, MataAlvarez J, Cecchi F, Pavan P, Bassetti A Bioresource Technology, 54(2), 105, 1995 |