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Recycling algae to improve species control and harvest efficiency from a high rate algal pond

机译:回收藻类,以改善高藻类池塘的物种控制和收获效率

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摘要

This paper investigates the influence of recycling gravity harvested algae on species dominance and harvest efficiency in wastewater treatment High Rate Algal Ponds (HRAP). Two identical pilot-scale HRAPs were operated over one year either with (HRAPr) or without (HRAPJ harvested algal biomass recycling. Algae were harvested from the HRAP effluent in algal settling cones (ASCs) and harvest efficiency was compared to settlability in Imhoff cones five times a week. A microscopic image analysis technique was developed to determine relative algal dominance based on biovolume and was conducted once a month. Recycling of harvested algal biomass back to the HRAPr maintained the dominance of a single readily settleable algal species (Pediastrum sp.) at >90% over one year (compared to the control with only 53%). Increased dominance of Pediastrum sp. greatly improved the efficiency of algal harvest (annual average of >85% harvest for the HRAPr compared with ~60% for the control). Imhoff cone experiments demonstrated that algal settleability was influenced by both the dominance of Pediastrum sp. and the species composition of remaining algae. Algal biomass recycling increased the average size of Pediastrum sp. colonies by 13-30% by increasing mean cell residence time. These results indicate that recycling gravity harvested algae could be a simple and effective operational strategy to maintain the dominance of readily settleable algal species, and enhance algal harvest by gravity sedimentation.
机译:本文研究了回收重力收集藻类对废水处理高速率藻类池(HRAP)中物种优势和收获效率的影响。一年内使用或不使用(HRAPr)收获的藻类生物量再循环操作了两个相同的中试规模的HRAP,从藻类沉降锥(ASC)中的HRAP废水中收获藻类,并将收获效率与Imhoff锥的沉降稳定性进行了比较5每周两次,开发了一种显微图像分析技术来确定基于生物量的相对藻类优势,并且每月进行一次,将收获的藻类生物质循环回HRAPr保持了单一易居藻类物种(Pediastrum sp。)的优势。一年中的> 90%(相比之下,对照组只有53%)增加了Pediastrum sp。的优势,大大提高了藻类收获的效率(HRAPr的年平均收获率> 85%,而对照的〜60% )。Imhoff锥实验表明,藻的沉降能力受Pediastrum sp。的优势和剩余藻类的种类组成的影响。增加了Pediastrum sp。的平均大小。通过增加平均细胞停留时间使菌落增加13-30%。这些结果表明,回收重力收集的藻类可能是保持易沉降藻类物种优势并通过重力沉降提高藻类收获量的简单有效的操作策略。

著录项

  • 来源
    《Water Research》 |2011年第20期|p.6637-6649|共13页
  • 作者单位

    National Institute of Water and Atmospheric Research Ltd (NIWA), Aquatic Pollution Group, P.O. Box 11-115, Hamilton, Neui Zealand;

    National Institute of Water and Atmospheric Research Ltd (NIWA), Aquatic Pollution Group, P.O. Box 11-115, Hamilton, Neui Zealand;

    Centre for Environmental Technology and Engineering, Massey University, Private Bag 11 222, Palmerston North, Neuj Zealand;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    algae; biofuels; high rate algal ponds; wastewater treatment; algal harvest; algal species control; algal recycling;

    机译:藻类生物燃料高比率藻类池塘;废水处理;藻类收获藻类控制藻类回收;
  • 入库时间 2022-08-17 13:48:31

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