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Strategies for decreasing the O_2 content in the upgraded biogas purified via microalgae-based technology

机译:通过基于Microalgae的技术纯化升级的沼气中O_2含量的策略

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摘要

Microalgae-bacteria consortium based technology using a High Rate Algal Pond (HRAP) interconnected to an Absorption Bubble Column (ABC) has emerged as an environmentally friendly promising option to upgrade biogas. However, the oxygenic photosynthesis of microalgae induces oxygen contamination in upgraded biogas, which could limit its further applications. Several strategies were proposed to favor the oxygen desorption and oxygen uptake in parts and accessories of the upgrading system. The effect of the volumetric ratio liquid recirculation rate/biogas rate (L/G = 5.0,1.0 y 0.5) was evaluated in conjunction with the application of a novel accessory called Open Trickling Column (OTC). The O_2 content in upgraded biogas was around 2.1%v, attaining CO_2 removal efficiencies around 90%, at L/G ratio of 1.0 during diurnal and nocturnal periods. The inclusion of an OTC at the previous L/G, enhanced 54% the removal of O_2 by stripping and uptake compared with the basal condition. Mass balances of H_2S and methane showed that L/G > 1.0 favored the complete oxidation of H_2S but promoted the loss of methane in dissolved form. Additionally the effect of increasing linear velocity of liquid broth in the lab-scale HRAP (from 15 cm s~(-1) to 20 cm s~(-1)) showed to improve the O_2 stripping with a consequential increase of biomass concentration under steady-state (from 0.7 to 1.4 g L~(-1)) besides achieving O_2 content in the upgraded biogas around 1.5%v.
机译:使用高速率藻类池(HRAP)的微血糖组联盟技术与吸收泡沫柱(ABC)相互连接的是升级沼气的环保有希望的选择。然而,微藻的含氧光合作用在升级的沼气中诱导氧气污染,这可能限制其进一步的应用。提出了几种策略,以利用升级系统的零件和配件中的氧解吸和氧气吸收。与施用称为开放滴柱(OTC)的新型辅助物一起评价体积比液再循环速率/沼气速率/沼气速率/沼气速率(L / G = 5.0,1.0毫甚y.5)的效果。升级的沼气中的O_2含量约为2.1%v,差位和夜间期间以1.0的L / g比为1.0左右的CO_2去除效率。在先前的L / g中包含OTC,通过剥离和摄取与基础条件相比增强了54%的去除O_2。 H_2S和甲烷的质量平衡显示,L / G> 1.0有利于H_2的完全氧化,但促进了溶解形式的甲烷的损失。另外,液体肉汤中液体肉汤(15cm S〜(-1)至20cm S〜(-1))的效果显示出现为改善o_2剥离,其产生的生物质浓度除了在升级的沼气中实现o_2含量,稳态(0.7至1.4 g l〜(-1))除了升级的沼气中约为1.5%v。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|111813.1-111813.7|共7页
  • 作者单位

    Instituto de Ingenieria Universidad National Autonoma de Mexico Circuito Escolar Ciudad Universitaria C.P. 04510 Mexico City Mexico Tecnologico de Monterrey Escuela de Ingenieria y Ciencias Ave. Eugenio Garza Sada 2501 Monterrey N.L. 64849 Mexico;

    Instituto de Ingenieria Universidad National Autonoma de Mexico Circuito Escolar Ciudad Universitaria C.P. 04510 Mexico City Mexico;

    Instituto de Ingenieria Universidad National Autonoma de Mexico Circuito Escolar Ciudad Universitaria C.P. 04510 Mexico City Mexico;

    Instituto de Ingenieria Universidad National Autonoma de Mexico Circuito Escolar Ciudad Universitaria C.P. 04510 Mexico City Mexico;

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

    Biomethane; Biogas upgrading; Desorption column; Microalgae consortium; Outdoor photobioreactor; Oxygen stripping;

    机译:生物甲烷;沼气升级;解吸专栏;Microalgae联盟;户外光生物反应器;氧气剥离;

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