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Microalgae to energy: biomass recovery and pre-treatments optimisation for biogas production integrated with wastewater nutrients removal

机译:微藻转化为能源:将沼气生产中的生物质回收和预处理优化与废水中的养分去除整合在一起

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摘要

The increasing concern about water quality and energy demand promotes the development of innovative and low-cost processes to improve the nutrient uptake and energy efficiency of existing wastewater treatments (WWT). In this context, the inclusion of a microalgae system (MAS) in the flowsheet of a WWT plant represents a sustainable alternative to conventional technologies, as it combines a low-cost nutrient uptake system with the production of biomass suitable for biofuel production. However, at present, the energy required to cultivate and process the algae cells is often too high to justify their use. The adoption of a low energy harvesting system and an efficient energy conversion process are the sine qua non requirements to guarantee the sustainability of the process.In this thesis, current and innovative harvesting technologies for large scale applications have been reviewed to identify the optimal working conditions of each system and their link to the main characteristics of the algae suspension. In particular, the performance of the Ballasted Dissolved Air Flotation (BDAF) system was investigated using different algae and compared to the conventional Dissolved Air Flotation (DAF). BDAF was demonstrably a very viable harvesting method where the use of floating microspheres as ballasting agents allowed significant coagulant savings, reduced the level of energy dissipation within the flotation chamber, and lowered the overall carbon emissions and the process costs. Cont/d.
机译:对水质和能源需求的日益关注促进了创新和低成本工艺的发展,以提高现有废水处理(WWT)的养分吸收和能源效率。在这种情况下,WWT工厂流程中包含微藻类系统(MAS)代表了传统技术的可持续替代方案,因为它结合了低成本养分吸收系统和适合生物燃料生产的生物质生产。但是,目前,培养和加工藻类细胞所需的能量通常过高而无法证明其用途。采用低能量收集系统和有效的能量转换过程是保证过程可持续性的必要条件。在本文中,对当前和创新的大规模应用收集技术进行了综述,以确定最佳的工作条件。每个系统的功能及其与藻类悬浮液主要特征的联系。特别是,使用不同的藻类研究了压载溶解气浮(BDAF)系统的性能,并将其与常规溶解气浮(DAF)进行了比较。 BDAF被证明是一种非常可行的收割方法,其中使用浮动微球作为压舱剂可节省大量的凝结剂,减少了浮选室内的能量耗散水平,并降低了总碳排放量和工艺成本。继续/ d。

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    Ometto Francesco;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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