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Pathways to economic viability: a pilot scale and techno-economic assessment for algal bioremediation of challenging waste streamsf

机译:经济可行性的途径:挑战废弃物流的藻类生物修复的试点规模和技术经济评估

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Waste production and landfilling are a growing problem due to population growth and more affluent societies following a 'take-make-waste' linear economy. All landfills generate leachate, which must be detoxified before release to the environment. Current leachate treatment technologies are often energy intensive, relatively expensive and ignore the potential resources which are contained within. The use of adapted microbial consortia for bioremediation of leachate offers not only treatment but an opportunity for reutilisation of lost resources, converting them to fuel, feed and chemical products. In this study, pilot scale experimental data for algal-bacterial leachate treatment in a 300 L photobioreactor is used to perform a techno-economic analysis. The analysis considers the process at larger scales and evaluate where optimisation and future research should be focused to reduce costs and make the treatment financially competitive with existing technologies. Reductions in capital expenditure and treatment time are key areas for cost reductions; potentially saving around 90% of the total treatment costs.
机译:废物生产和填埋是由于人口增长和更富裕的社会之后的浪费产量和垃圾的线性经济。所有垃圾填埋场都会产生渗滤液,在释放到环境之前必须被解毒。目前的渗滤液处理技术通常是能量密集,相对昂贵,忽略其中包含的潜在资源。使用适应的微生物结合用于渗滤液的生物修复提供的不仅提供了治疗,而且有机会重新利用丢失的资源,将它们转化为燃料,饲料和化学产品。在本研究中,用于在300LphicoreSeacctor中进行藻类渗滤液处理的试验规模实验数据用于进行技术经济分析。该分析考虑了更大的规模,并评估了优化和未来研究的重点,以降低成本,并使治疗与现有技术有竞争力。减少资本支出和治疗时间是降低成本的关键领域;潜在节省总治疗成本的90%。

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