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Microalgae growth for nutrient recovery from sludge liquor and production of renewable bioenergy

机译:微藻生长,用于从污泥液中回收营养物和生产可再生生物能源

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摘要

Proof-of-concept has been demonstrated for a process that will utilize nutrients from sludge liquor, natural light, and CO_2 from biogas to grow microalgae at wastewater treatment plants. This process will reduce the impact of returning side-streams to the head of the plant. The produced algae will be fed to anaerobic digesters for increased biogas production. Dewatering of anaerobically digested sludge in centrifuges produces reject water with extremely low transmittance of light. A pre-treatment procedure was developed that improved light transmittance for reject water from the FREVAR, Norway, wastewater treatment plant from 0.1% T to 77% T (670 nm, 1 cm path). Chlorella sp. microalgae were found to be suitable for growth in this pre-treated reject water. Typical nitrogen removal was 80-90 g N/kg TSS of produced microalgae. The microalgae were successfully harvested by chemically assisted flocculation followed by straining through a 33 μm sieve cloth, achieving up to 99% recovery. Harvested algae were anaerobically co-digested with wastewater sludge. The specific methane gas production (mL CH_4/g VS fed) for the algae varied from less than 65% to 90% of the specific methane gas production for the wastewater sludge, depending on digester temperature, retention time and pre-treatment of the algae biomass.
机译:概念证明已经过证明,该过程将利用污泥液中的养分,自然光和沼气中的CO_2在废水处理厂中生长微藻。此过程将减少将支流返回到设备顶部的影响。产生的藻类将被喂入厌氧消化池,以增加沼气产量。离心机中厌氧消化的污泥脱水后产生的废水的透光率极低。开发了一种预处理程序,可将挪威FREVAR废水处理厂的废水的透光率从0.1%T提高到77%T(670 nm,1 cm路径)。小球藻发现微藻适合在这种预处理的废水中生长。典型的脱氮量为生产的微藻80-90 g N / kg TSS。通过化学辅助絮凝成功地收获了微藻,然后通过33μm的筛布进行了过滤,回收率高达99%。将收获的藻类与废水污泥进行厌氧消化。藻类的比甲烷气产量(进料中的CH_4 / g VS)为废水污泥的比甲烷气产量的不到65%至90%,具体取决于消化器温度,藻类的停留时间和预处理生物质。

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