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1.
Waste Manag ; 34(2): 411-20, 2014 Feb.
Article in English | MEDLINE | ID: mdl-24290971

ABSTRACT

For a sustainable municipal sewage sludge management, not only the available technology, but also other parameters, such as policy regulations and socio-economic issues should be taken in account. In this study, the current status of both European and Greek Legislation on waste management, with a special insight in municipal sewage sludge, is presented. A SWOT analysis was further developed for comparison of pyrolysis with incineration and gasification and results are presented. Pyrolysis seems to be the optimal thermochemical treatment option compared to incineration and gasification. Sewage sludge pyrolysis is favorable for energy savings, material recovery and high added materials production, providing a 'zero waste' solution. Finally, identification of challenges and barriers for sewage sludge pyrolysis deployment in Greece was investigated.


Subject(s)
Incineration/methods , Sewage/chemistry , Waste Disposal, Fluid/methods , Waste Management/methods , Cities , Energy-Generating Resources/statistics & numerical data , Gases , Greece , Temperature
2.
Bioresour Technol ; 99(8): 3174-81, 2008 May.
Article in English | MEDLINE | ID: mdl-17651967

ABSTRACT

Sunflower is a traditional crop which can be used for the production of bioenergy and liquid biofuels. A study of the pyrolytic behaviour of sunflower residues at temperatures from 300 to 600 degrees C has been carried out. The experiments were performed in a captive sample reactor under atmospheric pressure and helium as sweeping gas. The yields of the derived pyrolysis products were determined in relation to temperature, with constant sweeping gas flow of 50 cm3 min(-1) and heating rate of 40 degrees Cs(-1). The maximum gas yield of around 53 wt.% was obtained at 500 degrees C, whereas maximum oil yield of about 21 wt.% was obtained at 400 degrees C. A simple first order kinetic model has been applied for the devolatilization of biomass. Kinetic constants have been estimated: E=78.15 kJ mol(-1); k(0)=1.03 x 10(3)s(-1).


Subject(s)
Crops, Agricultural/metabolism , Gasoline , Helianthus/metabolism , Seeds/metabolism , Bioreactors , Energy Metabolism , Equipment Design , Greece , Helianthus/growth & development , Kinetics , Temperature
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