环境科学
具有碳捕获和储存功能的生物能源
二氧化碳
可再生能源
温室气体
碳汇
营养物
碳纤维
固碳
碳中性燃料
废物管理
全球变暖
环境工程
生物量(生态学)
水槽(地理)
气候变化
生态学
化学
工程类
合成气
计算机科学
生物
地图学
有机化学
算法
复合数
地理
氢
作者
Xiaoyuan Zhang,Li An,Junli Tian,Bin Ji,Jinfeng Lü,Yu Liu
标识
DOI:10.1016/j.biortech.2023.129824
摘要
The rapidly evolving global warming is triggering all levels of actions to reduce industrial carbon emissions, while capturing carbon dioxide of industrial origin via microalgae has attracted increasing attention. This article attempted to offer preliminary analysis on the carbon capture potential of microalgal cultivation. It was shown that the energy consumption-associated with operation and nutrient input could significantly contribute to indirect carbon emissions, making the microalgal capture of carbon dioxide much less effective. In fact, the current microalgae processes may not be environmentally sustainable and economically viable in the scenario where the carbon footprints of both upstream and downstream processing are considered. To address these challenging issues, renewable energy (e.g., solar energy) and cheap nutrient source (e.g., municipal wastewater) should be explored to cut off the indirect carbon emissions of microalgae cultivation, meanwhile produced microalgae, without further processing, should be ideally used as biofertilizer or aquafeeds for realizing complete nutrients recycling.
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