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A Microalgae-Methanotroph Coculture is a Promising Platform for Fuels and Chemical Production From Wastewater

机译:微藻 - 甲蛋白酶共培养是一种有前途的燃料和化学生产的平台,来自废水

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Wastewater resource recovery facilities are major energy consumers in a community, as well as major contributors for greenhouse gas (GHG) emission. Although anaerobic digestion (AD) is widely employed in wastewater treatment to reduce the amount of solid organic waste and the sludge produced, the use of the produced biogas is mostly limited to heating and electricity generation, while the nutrient rich digestate still requires further treatment. In this work, we propose a waste-to-value (W2V) platform based on a microalgae-methanotroph coculture, which can convert AD-generated biogas into value-added products, while simultaneously removing nutrients from digestate. The platform takes advantage of the synergistic interactions within a microalgae-methanotroph coculture to achieve significantly improved productivity of microbial biomass and enhanced nutrient recovery performance. Using Chlorella sorokiniana – Methylococcus capsulatus (Bath) as the model coculture, we demonstrate that the coculture offers a highly promising platform for W2V technologies, which can efficiently recover energy (from CH4) and carbon (from both CH4 and CO2) to produce microbial biomass, while removing nutrients from wastewater to produce treated clean water. Compared to microalgae monoculture, the coculture achieved 120% improvement in biomass production, 71% and 164% improvement in total nitrogen and total phosphorous removal respectively, when the same amount of biogas was provided.
机译:废水资源回收设施是社区的主要能源消费者,以及温室气体(GHG)排放的主要贡献者。虽然厌氧消化(AD)广泛用于废水处理,但减少固体有机废物的量和所产生的污泥,所生产的沼气的使用主要限于加热和发电,而营养丰富的消化物仍需要进一步治疗。在这项工作中,我们提出了一种基于微血糖 - 甲硝蛋白酶的垃圾到价值(W2V)平台,其可以将诸如附加的沼气转化为增值产品,同时消除消化物的营养物质。该平台利用微藻 - 甲蛋白酶共培养过程中的协同相互作用,以实现微生物生物量的显着提高的生产率,提高营养回收性能。使用小嗜酸盐岩植物 - 甲基球菌Capsulatus(浴)作为模型共培育,我们证明了Coculture为W2V技术提供了高度有希望的平台,可以有效地恢复能量(从CH4)和碳(来自CH4和CO2)产生微生物生物量,同时从废水中除去营养物,以产生处理过的清洁水。与微藻单一栽培相比,当提供相同量的沼气时,共培养物的生物量产量分别达到了120%的生物质生产改善,71%和164%的总氮和总磷去除。

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