...
首页> 外文期刊>Journal of Applied Phycology >Frequency of CO2 supply affects wastewater microalgal photosynthesis, productivity and nutrient removal efficiency in mesocosms: implications for full-scale high rate algal ponds
【24h】

Frequency of CO2 supply affects wastewater microalgal photosynthesis, productivity and nutrient removal efficiency in mesocosms: implications for full-scale high rate algal ponds

机译:CO2的供应频率影响中膜的废水微藻光合作用,生产力和养分去除效率:对大规模高速率藻池的影响

获取原文
获取原文并翻译 | 示例

摘要

Carbon limitation in domestic wastewater high rate algal ponds (HRAPs) is thought to constrain both microalgal photosynthesis and biomass production. CO2 augmentation is one way of overcoming this carbon limitation; however, high carbon demands due to large microalgal biomass means that the frequency of CO2 supply is likely to be critical to its success. This paper investigates the hypothesis that decreasing the frequency of CO2 addition reduces the performance of wastewater microalgae. Microalgae were cultured in outdoor high rate algal mesocosms to assess the frequency of carbon dioxide (CO2) addition on photosynthetic performance, biomass production and nutrient removal. Microalgal productivity significantly increased with high frequency of CO2 addition. Organic biomass was 120 % higher, and total microalgal biovolume was 157 % higher at high-frequency compared to low-frequency CO2 addition. Photosynthetic efficiency increased, and algae were less photo-inhibited as the frequency of CO2 addition increased, while microalgae with low CO2 addition frequency did not differ from those without CO2 addition. In conclusion, low-frequency CO2 addition, such as that which could be expected in large HRAPs with long circuit times and a single point of CO2 addition, did not improve microalgal productivity. While CO2 addition enhances microalgal photosynthesis and productivity when good pH control is maintained through day-time, this study has demonstrated that, due to rapid assimilation of CO2 by the microalgae, having an effective CO2 addition system in a full-scale HRAP is important if the benefits of CO2 addition are to be realised.
机译:人们认为生活污水高速率藻类池(HRAPs)中的碳含量限制了微藻类的光合作用和生物量的生产。增加二氧化碳是克服这种碳限制的一种方法。但是,由于大量的微藻生物量而导致的高碳需求意味着,CO2的供应频率可能对其成功至关重要。本文研究了以下假设:降低CO2添加频率会降低废水微藻的性能。将微藻培养在室外高速率藻类介体中,以评估添加二氧化碳(CO2)的频率对光合性能,生物量产生和营养去除的影响。随着高频率的CO2添加,微藻生产力显着提高。与添加低频二氧化碳相比,在高频情况下,有机生物量高120%,总微藻生物量高157%。随着CO2添加频率的增加,光合效率提高,藻类对光的抑制程度降低,而CO2添加频率低的微藻与未添加CO2的微藻无差异。总之,低频CO2的添加(如在大型HRAP中具有较长的电路时间和单点CO2的添加所期望的)不会提高微藻的生产率。尽管在一天中维持良好的pH值控制时,添加CO2可以增强微藻的光合作用和生产力,但这项研究表明,由于微藻对CO2的快速吸收,因此在有效的HRAP中具有有效的CO2添加系统对以下情况很重要:必须认识到添加二氧化碳的好处。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号