Respirometric screening of several types of manure and mixtures intended for composting
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Data de publicació
2011ISSN
0960-8524
Resum
The viability of mixtures from manure and agricultural wastes as composting sources were systematically
studied using a physicochemical and biological characterization. The combination of different
parameters such as C:N ratio, free air space (FAS) and moisture content can help in the formulation of
the mixtures. Nevertheless, the composting process may be challenging, particularly at industrial scales.
The results of this study suggest that if the respirometric potential is known, it is possible to predict the
behaviour of a full scale composting process. Respiration indices can be used as a tool for determining the
suitability of composting as applied to manure and complementary wastes. Accordingly, manure and
agricultural wastes with a high potential for composting and some proposed mixtures have been characterized
in terms of respiration activity. Specifically, the potential of samples to be composted has been
determined by means of the oxygen uptake rate (OUR) and the dynamic respirometric index (DRI). During
this study, four of these mixtures were composted at full scale in a system consisting of a confined
pile with forced aeration. The biological activity was monitored by means of the oxygen uptake rate
inside the material (OURinsitu). This new parameter represents the real activity of the process. The comparison
between the potential respirometric activities at laboratory scale with the in situ respirometric
activity observed at full scale may be a useful tool in the design and optimization of composting systems
for manure and other organic agricultural wastes.
Tipus de document
Article
Llengua
Anglès
Paraules clau
Compostatge
Fems
Respirometria
Pàgines
11 p.
Publicat per
Elsevier
Citació
Barrena, R., Turet Capellas, J., Busquets, A., Farres, M., Font, X., & Sanchez, A. (2011). Respirometric screening of several types of manure and mixtures intended for composting. Bioresource technology, 102(2), 1367-1377. doi:10.1016/j.biortech.2010.09.011
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(c) 2011 Elsevier. Published article is available at: http://dx.doi.org/10.1016/j.biortech.2010.09.011