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利用鱼腥藻潜力的变废为宝计划,用于设计一个综合生物炼制厂。

A waste-to-wealth initiative exploiting the potential of Anabaena variabilis for designing an integrated biorefinery.

机构信息

Agricultural and Food Engineering Department, Indian Institute of Technology Kharagpur, Kharagpur, 721302, India.

出版信息

Sci Rep. 2022 Jun 8;12(1):9478. doi: 10.1038/s41598-022-13244-8.

Abstract

The current research work was an innovative approach providing dual advantages of waste bioremediation and an effective biorefinery. The study attempted to exploit wastewater like aqua discharge and solid wastes like poultry litter/cow dung for cyanobacterial cultivation. Aqua discharge appended with 7.5 g L poultry litter turned out as the best combination generating 46% higher carbohydrate yield than BG-11 control. A. variabilis cultivation in this waste-utilized medium also revealed its excellent bioremediation ability. While 100% removal was observed for nitrite, nitrate, and orthophosphate, a respective 74% and 81% reduction was noted for ammonium and total organic carbon. Chemical and biological oxygen demands were also reduced by 90%. This work was also novel in developing a sequential design for the production of bioethanol and co-products like exopolysaccharides, sodium copper chlorophyllin, C-phycocyanin, and poly-β-hydroxybutyrate from the same cyanobacterial biomass. The developed biorefinery implementing the waste-utilized medium was one of its kind, enabling biomass valorization of 61%. Therefore, the present study would provide a leading-edge for tackling the high production costs that limit the practical viability of biorefinery projects. The recyclability of the bioremediated wastewater would not only curtail freshwater usage, the waste disposal concerns would also be mitigated to a great extent.

摘要

本研究工作是一种创新方法,提供了废物生物修复和有效的生物炼制的双重优势。本研究试图利用废水(如养殖水)和固体废物(如家禽粪便/牛粪)来培养蓝藻。添加了 7.5 g L 家禽粪便的养殖水是最佳组合,比 BG-11 对照产生的碳水化合物产量高 46%。在这种废物利用的培养基中培养 A. variabilis 也显示出其良好的生物修复能力。亚硝酸盐、硝酸盐和正磷酸盐的去除率达到 100%,铵和总有机碳的去除率分别为 74%和 81%。化学需氧量和生物需氧量也分别降低了 90%。本工作还创新性地设计了一种从同一蓝藻生物质中生产生物乙醇和副产物(如胞外多糖、铜叶绿素钠、C-藻蓝蛋白和聚-β-羟基丁酸)的连续生产工艺。采用这种废物利用培养基的开发型生物炼制厂是同类中的首创,实现了生物质的 61%增值利用。因此,本研究将为解决限制生物炼制项目实际可行性的高生产成本问题提供前沿指导。生物修复废水的可循环利用不仅可以减少淡水的使用,还可以在很大程度上减轻废物处理的担忧。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3034/9177571/a5251986aca5/41598_2022_13244_Fig1_HTML.jpg

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