Department of Food Science and Human Nutrition, Agricultural University of Athens, Iera Odos 75, 118 55 Athens, Greece.
Department of Chemical Engineering, University of Patras, Rio, 26504 Patras, Greece.
Bioresour Technol. 2022 Mar;348:126295. doi: 10.1016/j.biortech.2021.126295. Epub 2021 Nov 17.
This study presents techno-economic evaluation and life cycle assessment of a novel biorefinery using the three main waste streams generated by wineries for the production of bio-based succinic acid (SA), crude phenolic-rich extract, grape-seed oil, calcium tartrate and crude tannin-rich extract. Process design has been employed for the estimation of material and energy balances and the sizing of unit operations. The Minimum Selling Price of succinic acid production within a winery waste biorefinery ranges from $1.23-2.76/kg depending on the market price and the potential end-uses of the extracted fractions. The Global Warming Potential and the Abiotic Depletion Potential of winery waste valorisation through the proposed biorefinery are 1.47 kg CO-eq per kg dry waste and 25.2 MJ per kg dry waste, respectively. Biorefining of winery waste could lead to the development of a sustainable and novel bioeconomy business model with new market opportunities and efficient waste management.
本研究对利用酒庄产生的 3 种主要废物流(用于生产生物基琥珀酸 (SA)、粗富酚提取物、葡萄籽油、酒石酸钙和粗单宁富提取物)的新型生物炼制厂进行了技术经济评估和生命周期评估。该研究采用工艺设计来估算物料和能量平衡,并确定单元操作的规模。在酒庄废物生物炼制厂内,琥珀酸生产的最低销售价格范围为 1.23-2.76 美元/千克,具体取决于市场价格和提取馏分的潜在最终用途。通过拟议的生物炼制厂对酒庄废物进行增值利用,其全球变暖潜势和非生物资源消耗潜势分别为每干废物 1.47 千克 CO-eq 和每干废物 25.2 兆焦耳。酒庄废物的生物炼制可以开发出具有新市场机会和高效废物管理的可持续新型生物经济商业模式。