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Evaluation of high rate ponds operational and design strategies for algal biomass production and domestic wastewater treatment

机译:评价高速池塘藻类生物量生产与藻类生产策略及国内废水处理

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摘要

This study evaluated the effect of high rate ponds (HRPs) depth on algal biomass production during domestic wastewater treatment. HRPs were evaluated for 20, 30, and 40 cm depths, with and without CO_2 supplementation. In addition, 40 cm deep HRP with ultraviolet (UV) pre-disinfection was evaluated. The concentration of chlorophyll-a as a function of time for each evaluated condition was represented by logistic models that were after submitted to cluster analysis. The 20 cm HRPs presented higher chlorophyll-a concentration, reaching a maximum of 5.8 and 4.3 mg L~(-1) in the HRPs with and without CO_2 addition, respectively. Ammonia nitrogen and soluble phosphorus were greater removed in shallower HRPs. The addition of CO_2 influenced the nutrient removal processes, optimizing nutrient recovery by biomass assimilation. HRP configuration did not influence organic matter removal (~40% of removal efficiency in all HRPs), predominant microalgae genera (Chlorella sp. and Scenedesmus), and E. coli inactivation (removal of~2 log units), except for the 20 cm HRP without CO_2 that had removal of 4 log units due to high pH values. For HRPs with CO_2 addition and UV pre-disinfection, the models for 40 cm were grouped together with those obtained for 30 cm HRPs, indicating the same behavior for chlorophyll-α production as a function of time. Thus, it can be concluded that the evaluated strategies represent alternatives for reducing HRP area requirements. Moreover, results may represent advancement and major contributions for HRP design criteria.
机译:本研究评估了国内废水处理期间高速池(HRPS)深度对藻类生物量生产的影响。 HRPS评估20,30和40cm深度,有和没有CO_2补充。此外,评价40cm的紫外线(紫外线)预染色的40厘米的HRP。作为每种评估条件的时间函数的叶绿素-A的浓度由提交给聚类分析后的逻辑模型表示。 20厘米HRP呈现出更高的叶绿素-A浓度,在HRP中达到最大5.8和4.3mg L〜(-1),分别没有CO_2加入。氨氮和可溶性磷在较浅的HRP中除去。添加CO_2影响了营养去除过程,通过生物质同化优化营养恢复。 HRP配置没有影响有机物质去除(所有HRP中除去效率的〜40%),主要的微藻属(小球藻SP。和Cholyesmus),以及大肠杆菌失活(除去〜2对数单位),除了20厘米HRP没有CO_2,由于高pH值,未删除4个日志单元。对于具有CO_2添加和UV预染色的HRP,将40厘米的型号与30cm HRP一起获得的型号,表明作为时间函数的叶绿素-α的产生相同的行为。因此,可以得出结论,评估的策略代表了降低HRP区域要求的替代方案。此外,结果可能代表HRP设计标准的进步和主要贡献。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|148362.1-148362.11|共11页
  • 作者单位

    Federal University of Itajuba Campus Itabira (Universidade Federal de Itajuba Campus Itabira/Unifei) Institute of Applied and Pure Sciences Run Irma Ivone Drumond 200 35903-087 Itabira MG Brazil;

    Federal University of Vicosa (Universidade Federal de Vicosa/UFV) Department of Civil Engineering Environmental Engineering Group - nPA Avenida PH Rolfs s/n 36570-900 Vicosa MG Brazil;

    Federal University of Lavras (Universidade Federal de Lavras/UFLA) Department of Environmental Engineering Campus Universitario 37200-900 Lavras MG Brazil;

    Federal University of Vicosa (Universidade Federal de Vicosa/UFV) Department of Statistics Avenida PH Rolfs s/n 36570-900 Vicosa MG Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Open algae ponds; CO_2 supplementation; UV pre-disinfection; Depth; Microalgae; Domestic sewage;

    机译:开放藻类池塘;CO_2补充;紫外线紫外线;深度;微藻;生活污水;

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