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CO_2 utilization: Turning greenhouse gas into fuels and valuable products

机译:二氧化碳的利用:将温室气体转化为燃料和有价值的产品

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摘要

This study critically reviews the recent developments and future opportunities pertinent to the conversion of C_O2 as a potent greenhouse gas (GHG) to fuels and valuable products. CO_2 emissions have reached an alarming level of around 410 ppm and have become the primary driver of global wanning and climate change leading to devastating events such as droughts, hurricanes, torrential rains, floods, tornados and wildfires across the world. These events are responsible for thousands of deaths and have adversely affected the economic development of many countries, loss of billions of dollars, across the globe. One of the promising choices to tackle this issue is carbon sequestration by pre- and post-combustion processes and oxyfuel combustion. The captured CO_2 can be converted into fuels and valuable products, including methanol, dimethyl ether (DME), and methane (CH_4). The efficient use of the sequestered CO_2 for the desahnization might be critical in overcoming water scarcity and energy issues in developing countries. Using the sequestered CO_2 to produce algae in combination with wastewater, and producing biofuels is among the promising strategies. Many methods, like direct combustion, fermentation, transesterification, pyrolysis, anaerobic digestion (AD), and gasification, can be used for the conversion of algae into biofuel. Direct air capturing (DAC) is another productive technique for absorbing CO_2 from the atmosphere and converting it into various useful energy resources like CH_4. These methods can effectively tackle the issues of climate change, water security, and energy crises. However, future research is required to make these conversion methods cost-effective and commercially applicable.
机译:这项研究批判性地回顾了与作为有效温室气体(GHG)的C_O2转化为燃料和有价值的产品有关的最新发展和未来机会。 CO_2排放已达到约410 ppm的惊人水平,并已成为导致全球变暖和气候变化的主要动力,导致诸如干旱,飓风,暴雨,洪水,龙卷风和野火等毁灭性事件。这些事件造成数千人死亡,并对全球许多国家的经济发展造成不利影响,造成数十亿美元的损失。解决该问题的有前途的选择之一是通过燃烧前后的过程和富氧燃烧来固碳。捕获的CO_2可转化为燃料和有价值的产品,包括甲醇,二甲醚(DME)和甲烷(CH_4)。有效地使用隔离的CO_2进行脱氨处理对于克服发展中国家的水资源短缺和能源问题可能至关重要。利用隔离的CO_2与废水结合生产藻类并生产生物燃料是有前途的策略之一。可将直接燃烧,发酵,酯交换,热解,厌氧消化(AD)和气化等多种方法用于将藻类转化为生物燃料。直接空气捕获(DAC)是另一种生产技术,用于从大气中吸收CO_2并将其转化为各种有用的能源,例如CH_4。这些方法可以有效解决气候变化,水安全和能源危机问题。但是,需要进一步的研究来使这些转换方法具有成本效益并在商业上适用。

著录项

  • 来源
    《Journal of Environmental Management》 |2020年第15期|110059.1-110059.14|共14页
  • 作者单位

    Sustainable Development Study Centre Government College University Lahore Pakistan;

    Institute of Environmental Sciences and Engineering National University of Sciences and Technology Islamabad Pakistan;

    Qatar Environment and Energy Research Institute (QEERI) Hamad Bin Khalifa University Qatar Foundation P.O. Box 5825 Doha Qatar;

    Department of Environmental Science and Policy Lahore School of Economics Lahore Pakistan;

    Center of Excellence in Environmental Studies (CEES) King Abdulaziz University Jeddah Saudi Arabia;

    Department of Mechanical Engineering of Agricultural Machinery Faculty of Agricultural Engineering and Technology College of Agriculture and Natural Resources University of Tehran Karaj Iran;

    Faculty of Plantation and Agrotechnology Universiti Teknologi MARA (UiTM) 40450 Shah Alam Selangor Malaysia Biofuel Research Team (BRTeam) Karaj Iran Microbial Biotechnology Department Agricultural Biotechnology Research Institute of Iran (ABRII) Agricultural Research Education and Extension Crganization (AREEO) Karaj Iran Faculty of Mechanical Engineering Ho Chi Minh City University of Transport Ho Chi Minh City Viet Nam;

  • 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

    Climate change; CO_2 utilization; Desalination; Algal biofuel; Renewable energy; Greenhouse gas;

    机译:气候变化;CO_2利用;海水淡化;藻类生物燃料;再生能源;温室气体;

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