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1.
Waste Manag ; 67: 51-58, 2017 Sep.
Article in English | MEDLINE | ID: mdl-28578858

ABSTRACT

A detailed study of a solid slaughterhouse waste (SHW) anaerobic treatment is presented. The waste used in this study is rich in lipids and proteins residue. Long chain fatty acids (LCFA), coming from the hydrolysis of lipids were inhibitory to anaerobic processes at different degrees. Acetogenesis and methanogenesis processes were mainly affected by inhibition whereas disintegration and hydrolysis processes did not seem to be affected by high LCFA concentrations. Nevertheless, because of the high energy content, this kind of waste is very suitable for anaerobic digestion but strict control of operating conditions is required to prevent inhibition. For that, two inhibition indicators were identified in this study. Those two indicators, LCFA dynamics and LCFA/VSbiomass ratio proved to be useful to predict and to estimate the process inhibition degree.


Subject(s)
Abattoirs , Fatty Acids , Animals , Bacteria, Anaerobic , Cattle , Lipids , Methane , Milk , Refuse Disposal
2.
Bioresour Technol ; 226: 99-107, 2017 Feb.
Article in English | MEDLINE | ID: mdl-27992797

ABSTRACT

Models for anaerobic digestion of lipid-rich waste taking inhibition into account were reviewed and, if necessary, adjusted to the ADM1 model framework in order to compare them. Experimental data from anaerobic digestion of slaughterhouse waste at an organic loading rate (OLR) ranging from 0.3 to 1.9kgVSm-3d-1 were used to compare and evaluate models. Experimental data obtained at low OLRs were accurately modeled whatever the model thereby validating the stoichiometric parameters used and influent fractionation. However, at higher OLRs, although inhibition parameters were optimized to reduce differences between experimental and simulated data, no model was able to accurately simulate accumulation of substrates and intermediates, mainly due to the wrong simulation of pH. A simulation using pH based on experimental data showed that acetogenesis and methanogenesis were the most sensitive steps to LCFA inhibition and enabled identification of the inhibition parameters of both steps.


Subject(s)
Biotechnology/methods , Lipids , Models, Theoretical , Waste Management/methods , Abattoirs , Anaerobiosis , Biotechnology/instrumentation , Hydrogen-Ion Concentration , Methane/biosynthesis , Reproducibility of Results , Waste Management/instrumentation , Waste Products
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