4.7 Article

Valorizing lignin-like dyes and textile dyeing wastewater by a newly constructed lipid-producing and lignin modifying oleaginous yeast consortium valued for biodiesel and bioremediation

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 403, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.jhazmat.2020.123575

Keywords

Oleaginous yeast; Bioremediation; Lignin valorization; Textile effluent; Lipid accumulation; Azo dye decolorization

Funding

  1. National Key R&D Program of China [2018YFE0107100]
  2. National Natural Science Foundation of China [31772529]
  3. Priority of Academic Program Development of Jiangsu Higher Education Institutions [PAPD 4013000011]

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The development of a novel oleaginous consortium, OYC-Y.BC.SH, using three yeast cultures has shown great potential for lipid production, textile dye/effluent removal, and lignin valorization. The consortium exhibited high lipid productivity, lipase activity, and decolorization efficiency, making it valuable for biodiesel production and bioremediation of textile effluents. Toxicological studies also support the use of OYC-Y.BC.SH for detoxification of industrial dyeing effluents.
Construction of a multipurpose yeast consortium suitable for lipid production, textile dye/effluent removal and lignin valorization is critical for both biorefinery and bioremediation. Therefore, a novel oleaginous consortium, designated as OYC-Y.BC.SH has been developed using three yeast cultures viz. Yarrowia sp. SSA1642, Barnettozyma californica SSA1518 and Sterigmatomyces halophilus SSA1511. The OYC-Y.BC.SH was able to grow on different carbon sources and accumulate lipids, with its highest lipid productivity (1.56 g/L/day) and lipase activity (170.3 U/mL) exhibited in xylose. The total saturated fatty acid content was 36.09 %, while the monounsaturated and poly-unsaturated fatty acids were 45.44 and 18.30 %, respectively, making OYC-Y.BC.SH valuable for biodiesel production. The OYC-Y.BC.SH showed its highest decolorization efficiency of Red HE3B dye (above 82 %) in presence of sorghum husk as agricultural co-substrate, suggesting its feasibility for simultaneous lignin valorization. The significant higher performance of OYC-Y.BC.SH on decolorizing the real dyeing effluent sample at pH 8.0 suggests its potential and suitability for degrading most of the wastewater textile effluents. Clearly, toxicological studies underline the additional advantage of using OYC-Y.BC.SH for bioremediation of industrial dyeing effluents in terms of decolorization and detoxification. A possible mechanism of Red HE3B biodegradation and ATP synthesis was also proposed.

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