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CO_2 biocapture by Scenedesmus sp. grown in industrial wastewater

机译:Co_2 By Scenedesmus SP的生物捕获。 在工业废水中成长

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摘要

Greenhouse gases (GHG) emissions are widely related to climate change, triggering several environmental problems of global concern and producing environmental, social, and economic negative impacts. Therefore, global research seeks to mitigate greenhouse gas emissions. On the other hand, the use of wastes under a circular economy scheme generates subproducts from the range of high to medium-value, representing a way to help sustainable development. Therefore, the use of wastewater as a culture medium to grow microalgae strains that biocapture environmental CO_2, is a proposal with high potential to reduce the GHG presence in the environment. In this work, Scenedesmus sp. was cultivated using BG-11 medium and industrial wastewater (IWW) as a culture medium with three different CO_2 concentrations, 0.03%, 10%, and 20% to determine their CO_2 biocapture potential. Furthermore, the concomitant removal of COD, nitrates, and total phosphorus in wastewater was evaluated. Scenedesmus sp. achieves a biomass concentration of 1.9 g L~(-1) when is grown in BG-11 medium. 0.69 g L~(-1) when is grown in a combination of BG-11 medium and 25% of industrial wastewater; both cases with 20%C02 supplied. The maximum CO_2 removal efficiency (8.4%, 446 ± 150 mg CO_2 L~(-1) day~(-1)) was obtained with 10% CO_2 supplied and using a combination of BG-11 medium and 50% IWW (T2). Also, the highest removal of COD was reached with a combination of BG-11 medium and T2 with a supply of 20% CO_2 (82% of COD removal). Besides, the highest nitrates removal was achieved with a combination of BG-11 medium and 75% IWW (T3) with a supply of 10% CO_2 (42% of nitrates removal) and the maximum TP removal was performed with the combination of BG-11 medium and 25% IWW (T1) with a supply of 10% CO_2 (67% of TP removal). These results indicate that industrial wastewa-ter can be used as a culture media for microalgae growth and CO_2 biocapture can be performed as concomitant processes.
机译:温室气体(GHG)排放与气候变化迅征,引发全球关注的几个环境问题,生产环境,社会和经济负面影响。因此,全球研究旨在减轻温室气体排放。另一方面,在循环经济方案下使用废物产生从高到中等价值范围的副产物,代表一种帮助可持续发展的方法。因此,使用废水作为培养基,以生长生物凝固环境CO_2的微藻菌株,是一种高潜力,以减少环境中的温室气体存在的潜力。在这项工作中,Scenedesmus sp。使用BG-11中和工业废水(IWN)作为一种培养基,作为具有三种不同的CO_2浓度,0.03%,10%和20%的培养基,以确定其CO_2生物捕获潜力。此外,评价废水中鳕鱼,硝酸盐和总磷的伴随的去除。 scenedesmus sp。在BG-11培养基中生长时,达到1.9g L〜(-1)的生物质浓度。 0.69g l〜(-1)当BG-11中等和25%的工业废水中的组合生长时;两种患者都提供了20%CO 2。用10%CO_2提供并使用BG-11中等和50%ICH(T2)的组合,获得最大CO_2去除效率(8.4%,446±150mg CO_2L〜(-1(-1)天〜(-1)) 。而且,用BG-11培养基和T2的组合达到鳕鱼的最高除去,供应20%CO_2(鳕鱼中的82%)。此外,通过BG-11培养基和75%ICH(T3)的组合实现了最高的硝酸盐去除,供应10%CO_2(42%的硝酸盐去除),并用BG-的组合进行最大TP去除。 11培养基和25%ICN(T1),供应10%CO_2(占TP除去的67%)。这些结果表明,工业废物可用作微藻生长的培养基,CO_2生物捕获可以作为伴随的方法进行。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|148222.1-148222.10|共10页
  • 作者单位

    Tecnologico de Monterrey School of Engineering and Sciences Monterrey 64849 Mexico;

    Escuela Agricola Panameriama Zamorano. Km 30 carretera de Tegucigalpa a Danli Valle del Yeguare Munidpio de San Antonio de Oriente Francisco MorazSn Honduras Apartado postal 93 Tegucigalpa 11101 Honduras;

    Escuela Agricola Panameriama Zamorano. Km 30 carretera de Tegucigalpa a Danli Valle del Yeguare Munidpio de San Antonio de Oriente Francisco MorazSn Honduras Apartado postal 93 Tegucigalpa 11101 Honduras;

    Escuela Agricola Panameriama Zamorano. Km 30 carretera de Tegucigalpa a Danli Valle del Yeguare Munidpio de San Antonio de Oriente Francisco MorazSn Honduras Apartado postal 93 Tegucigalpa 11101 Honduras University of Nebraska-Lincoln Department of Biological Systems Engineering. Panhandle Research and Extension Center Scottsbluff NE USA;

    Tecnologico de Monterrey School of Engineering and Sciences Monterrey 64849 Mexico;

    Tecnologico de Monterrey School of Engineering and Sciences Monterrey 64849 Mexico;

    Tecnologico de Monterrey School of Engineering and Sciences Monterrey 64849 Mexico;

    Department of Environmental Chemistry Institute of Environmental Assessment and Water Research IDAEA-CS1C Jordi Cirona 18-26 08034 Barcelona Spain Catalan Institute for Water Research (ICRA-CERCA) Parc Cientific i Tecnologic de la Universitat de Girona c/Emili Grahit 101 Edifici H2O 17003 Girona Spain College of Environmental and Resources Sciences Zhejiang A&F University Hangzhou 311300 China;

    Tecnologico de Monterrey School of Engineering and Sciences Monterrey 64849 Mexico;

    Tecnologico de Monterrey School of Engineering and Sciences Monterrey 64849 Mexico;

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

    CO_2 biocapture; Phycocapture; Phycoremediation; Microalga; Greenhouse gases mitigation; Climate change; Circular economy; Wastewater;

    机译:CO_2生物捕获;Phycocapture;植物化;微藻;温室气体缓解;气候变化;循环经济;废水;

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