首页> 外文期刊>Environmental Technology >ANAEROBIC DIGESTION OF DAIRY WASTEWATER BY INVERSE FLUIDIZATION: THE INVERSE FLUIDIZED BED AND THE INVERSE TURBULENT BED REACTORS
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ANAEROBIC DIGESTION OF DAIRY WASTEWATER BY INVERSE FLUIDIZATION: THE INVERSE FLUIDIZED BED AND THE INVERSE TURBULENT BED REACTORS

机译:逆流厌氧消化乳品废水:逆流化床和逆流化床反应器

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This paper describes the application of the inverse fluidization technology to the anaerobic digestion of dairy wastewater. Two reactors were investigated: the inverse fluidized bed reactor and the inverse turbulent reactor. In these reactors, a granular floating solid is expanded by a down-flow current of effluent or an up-flow current of gas, respectively. The carrier particles (Extendospheres~((TM)) were chosen for their large specific surface area (20,000 m~2 m~(-3)) and their low energy requirements for fluidization (gas velocity of 1.5 mm s~(-1), 5.4 m h~(-1)). Organic load was increased stepwise by reducing hydraulic retention time from more than 60 days to 3 days, while maintaining constant the feed COD concentration. Both reactors achieved more than 90% of COD removal, at an organic loading rate of 10-12 kg_(COD) m~(-3) d~(-1), respectively. The performances observed were similar or even higher than that of other previously tested fluidized bed technologies treating the same wastewater. It was found that the main advantages of this system are: low energy requirement, because of the low fluidization velocities required; there is no need of a settling device, because solids accumulate at the bottom of the reactor, so they can be easily drawn out and particles with high-biomass content can be easily recovered. Lipid phosphate concentration has been revealed as a good method for biomass estimation in biofilms since it only includes living biomass.
机译:本文介绍了逆流化技术在乳品废水厌氧消化中的应用。研究了两个反应器:逆流化床反应器和逆湍流反应器。在这些反应器中,颗粒状漂浮固体分别通过流出物的向下流动或气体的向上流动而膨胀。选择载体颗粒(Extendospheres〜(TM))是因为它们具有较大的比表面积(20,000 m〜2 m〜(-3))和低的流态化能量要求(气体流速为1.5 mm s〜(-1) ,5.4 mh〜(-1))。通过将水力停留时间从60天以上减少到3天,同时保持进料COD浓度恒定,逐步增加有机负荷,两个反应器在一个有机负载率分别为10-12 kg_(COD)m〜(-3)d〜(-1),观察到的性能与之前测试过的其他处理相同废水的流化床技术相近甚至更高。发现该系统的主要优点是:能量需求低,因为所需的流化速度低;不需要沉降装置,因为固体堆积在反应器底部,因此可以轻松地将其抽出并形成颗粒生物质含量高的磷可以很容易地被回收。定量法已被证明是生物膜中生物量估算的一种好方法,因为它仅包括活生物量。

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