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Modelling shortcut nitrogen removal from wastewater using an algal-bacterial consortium

机译:使用藻类联盟对废水中的脱扣除去脱扣除去

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A shortcut nitrogen removal process was investigated for treatment of high ammonium strength wastewater using an algal-bacterial consortium in photo-sequencing batch reactors (PSBRs). In this process, algae provide oxygen for nitritation during the light period, while denitritation takes place during the dark (anoxic) period, reducing overall energy and chemical requirements. Two PSBRs were operated at different solids retention times (SRTs) and fed with a high ammonium concentration wastewater (264 mg NH4+-N L-1), with a `12 hour on, 12 hour off' light cycle, and an average surface light intensity of 84 mu mol m(-2) s(-1). High total inorganic nitrogen removal efficienci es (similar to 95%) and good biomass settleability (sludge volume index 53-58 mL g(-1)) were observed in both PSBRs. Higher biomass density was observed at higher SRT, resulting in greater light attenuation and less oxygen production. A mathematical model was developed to describe the algal-bacterial interactions, which was based on Activated Sludge Model No. 3, modified to include algal processes. Model predictions fit the experimental data well. This research also proposes an innovative holistic approach to water and energy recovery. Wastewater can be effectively treated in an anaerobic digester, generating energy from biogas, and later post-treated using an algal-bacterial PSBR, which produces biomass for additional biogas production by co-digestion.
机译:研究了使用光测序批量反应器(PSBRS)中的藻类细菌联盟治疗高铵强度废水的快捷氮去除方法。在该过程中,藻类在光周期内为亚硝提供氧,而脱氮在暗(缺氧)时段中发生,降低了整体能量和化学要求。在不同的固体保留时间(SRT)下运行两台PSBR,并用高铵浓度废水(264mg NH4 + -N11)喂食,在12小时,12小时偏光循环和平均表面光线强度为84μmm(-2)s(-1)。在PSBR中观察到高总无机氮去除效率(类似于95%)和良好的生物质沉降(污泥体积指数53-58ml G(-1))。在较高的SRT下观察到更高的生物质密度,导致更大的光衰减和较少的氧气产生。开发了数学模型来描述藻类相互作用,其基于活性污泥模型3号,修饰包括藻类方法。模型预测适合实验数据。该研究还提出了一种创新的水和能源恢复方法。废水可以在厌氧消化器中有效处理,从沼气中产生能量,然后使用藻类psbr后后处理,其产生生物质通过共消化产生额外的沼气。

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