Author:
Mikucka Wioleta,Zielińska Magdalena
Abstract
AbstractDistilleries are among the most polluting industries because ethanol fermentation results in the discharge of large quantities of high-strength liquid effluents with high concentrations of organic matter and nitrogen compounds, low pH, high temperature, dark brown color, and high salinity. The most common method of managing this wastewater (distillery stillage) is to use it for soil conditioning, but this requires thickening the wastewater and may cause soil pollution due to its high nitrogen content. Therefore, treatment of distillery stillage is preferable. This review discusses individual biological and physico-chemical treatment methods and combined technologies. In addition, special attention is paid to valorization of distillery stillage, which is a valuable source of polysaccharides and volatile fatty acids (VFAs), as well as natural antioxidants, including polyphenols and other bioactive compounds of interest to the pharmaceutical, cosmetic, and food industries. New directions in improvement of valorization technologies are highlighted, including the search for new eutectic solvents for extracting these compounds. Such technologies are essential for sustainable development, which requires the use of management and valorization strategies for recovery of valuable compounds with minimal disposal of waste streams.
Funder
Ministerstwo Nauki i Szkolnictwa Wyższego
European Social Fund
Publisher
Springer Science and Business Media LLC
Subject
Molecular Biology,Applied Microbiology and Biotechnology,Biochemistry,General Medicine,Bioengineering,Biotechnology
Reference133 articles.
1. Kharayat, Y. (2012). Distillery wastewater: bioremediation approaches. Journal of Integrative Environmental Sciences, 9(2), 69–91.
2. Balat, M., & Balat, H. (2009). Recent trends in global production and utilization of bio-ethanol fuel. Applied Energy, 86(11), 2273–2282.
3. Bharagava, R. N., & Chandra, R. (2010). Biodegradation of the major color containing compounds in distillery wastewater by an aerobic bacterial culture and characterization of their metabolites. Biodegradation, 21(5), 703–711.
4. Krzywonos, M., Skudlarski, J., Kupczyk, A., Wojdalski, J., & Tucki, K. (2015). Prognoza rozwoju sektora biopaliw transportowych w Polsce w latach 2020-2030. Przemysl Chemiczny, 94(12), 2218–2222.
5. Smuga-Kogut, M. (2015). Znaczenie produkcji biopaliw w Polsce na przykładzie bioetanolu. Polish Journal of Chemical Technology, 17(3), 89–94.
Cited by
66 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献