Process model economics of xanthan production from confectionery industry wastewaters

In this research a process and cost model for a xanthan production facility was developed using process simulation software (SuperPro Designer®). This work represents a novelty in the field for two reasons. One is that xanthan gum has been produced from several wastes but never from wastewaters from...

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Veröffentlicht in:Journal of environmental management 2017-12, Vol.203 (Pt 3), p.999-1004
Hauptverfasser: Bajić, Bojana Ž., Vučurović, Damjan G., Dodić, Siniša N., Grahovac, Jovana A., Dodić, Jelena M.
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Sprache:eng
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Zusammenfassung:In this research a process and cost model for a xanthan production facility was developed using process simulation software (SuperPro Designer®). This work represents a novelty in the field for two reasons. One is that xanthan gum has been produced from several wastes but never from wastewaters from confectionery industries. The other more important is that the aforementioned software, which in intended exclusively for bioprocesses, is used for generating a base case, i.e. starting point for transferring the technology to industrial scales. Previously acquired experimental knowledge about using confectionery wastewaters from five different factories as substitutes for commercially used cultivation medium have been incorporated into the process model in order to obtain an economic viability of implementing such substrates. A lower initial sugar content in the medium based on wastewater (28.41 g/L) compared to the synthetic medium (30.00 g/L) gave a lower xanthan content at the end of cultivation (23.98 and 26.27 g/L, respectively). Although this resulted in somewhat poorer economic parameters, they were still in the range of being an investment of interest. Also the possibility of utilizing a cheap resource (waste) and reducing pollution that would result from its disposal has a positive effect on the environment. •A process model was developed for xanthan production from confectionery effluents.•Analysis of the process shows that it is economically viable.•A detailed economic breakdown of the model has completed.•The model can be further used for developing novel xanthan production technologies.
ISSN:0301-4797
1095-8630
DOI:10.1016/j.jenvman.2017.08.055