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A study of photosynthetic biogas upgrading based on a high rate algal pond under alkaline conditions: Influence of the illumination regime

机译:碱性条件下基于高比率藻池的光合沼气升级研究:光照制度的影响

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摘要

Microalgal-bacterial processes have emerged as environmental friendly systems for the cost-effective treatment of anaerobic effluents such as biogas and nutrients-laden digestates. Environmental parameters such as temperature, irradiation, nutrient concentration and pH effect the performance of the systems. In this paper, the potential of a microalgal-bacterial photobioreactor operated under high pH (≈9.5) and high alkalinity to convert biogas into biomethane was evaluated. The influence of the illumination regime (continuous light supply vs 12 h/12 h light/dark cycles) on the synthetic biogas upgrading efficiency, biomass productivity and nutrient removal efficiency was assessed in a High-Rate Algal Pond interconnected to a biogas absorption bubble column. No significant differences in the removal efficiency of Co_2 and H_2S (91.5 ± 2% and 99.5% ± 0.5, respectively) were recorded regardless of the illumination regime. The high fluctuations of the dissolved oxygen concentration during operation under light/dark cycles allowed to evaluate the specific growth rate and the specific partial degradation rate of the microalgae biomass by photosynthesis and respiration, respectively. The respiration reduced the net microalgae biomass productivity under light/dark cycles compared with process operation under the continuous light supply.
机译:微藻细菌工艺已经成为一种环境友好型系统,可以经济高效地处理厌氧废水,例如沼气和富含养分的消化物。温度,辐射,营养物浓度和pH等环境参数会影响系统的性能。在本文中,评估了在高pH(≈9.5)和高碱度下运行的微藻细菌光生物反应器将沼气转化为沼气的潜力。在连接到沼气吸收鼓泡塔的高速率藻类池塘中评估了照明方式(连续供光与12 h / 12 h光照/黑暗循环)对合成沼气提升效率,生物量生产率和营养去除效率的影响。 。不论照射方式如何,均未记录到Co_2和H_2S的去除效率有显着差异(分别为91.5±2%和99.5%±0.5)。在明/暗循环下操作期间溶解氧浓度的高波动允许分别通过光合作用和呼吸作用来评估微藻生物质的特定生长速率和特定部分降解速率。与连续供光下的过程操作相比,呼吸在明/暗循环下降低了净微藻生物量生产力。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第15期|419-425|共7页
  • 作者单位

    Instituto de Ingeniería, Universidad Nacional Autónoτna de Mexico, Circuito Escolar, Ciudad Universitaria, 04510 Mexico City, Mexico;

    Department of Chemical Engineering and Environmental Technology, University of Valladolid, C/Dr. Mergelina s, 47011 Valladolid, Spain;

    Instituto de Ingeniería, Universidad Nacional Autónoτna de Mexico, Circuito Escolar, Ciudad Universitaria, 04510 Mexico City, Mexico;

    Department of Chemical Engineering and Environmental Technology, University of Valladolid, C/Dr. Mergelina s, 47011 Valladolid, Spain;

    Instituto de Ingeniería, Universidad Nacional Autónoτna de Mexico, Circuito Escolar, Ciudad Universitaria, 04510 Mexico City, Mexico;

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

    Alkaliphilic algal-bacterial consortium; Biogas desulfurization; light/dark cycles;

    机译:嗜碱藻-细菌财团;沼气脱硫;浅色/深色周期;

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