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- W3200521335 endingPage "101704" @default.
- W3200521335 startingPage "101704" @default.
- W3200521335 abstract "• A unique perspective of CO 2 phyco-capture is given in a critical manner. • Microalgae strains are excellent candidates for atmospheric CO 2 reduction in cities. • Possible technologies for CO 2 bio-capture in urban spaces are discussed with suitable examples. • Circular economy and cost-effective aspects are important indicators to meet sustainability. Climate change is a shift in the average weather patterns, which could stand for a long-term period. This phenomenon is related to greenhouse gas emissions generated by anthropogenic and non-anthropogenic activities. The most notable climate change effects are the rise of sea levels, changes in the water pH, apparition or increased transmission of diseases, changes in the water cycle, loss of marine ecosystems, and several negative impacts on human health. Due to the adverse effects occasioned by climate change, global initiatives have been taken to mitigate its impact, one of these is the reduction of greenhouse gases such as CO 2 . Some microorganisms such as photosynthetic bacteria and microalgae can capture CO 2 and use it as a carbon source for growth. The outstanding CO 2 bio-capture or CO 2 phycocapture capacity shown by microalgae make them excellent candidates for reduction of atmospheric CO 2 in cities. CO 2 phyco-capture equivalent CO 2 emissions in Mexico City Metropolitan Area (MCMA) was determined as a case study, considering greenhouse gas emissions in this city. It was estimated that 94,847 tons of microalgae biomass must be produced daily to equal the amount of CO 2 emissions (170,726 CO 2 -eq per day), thus obtaining a zero balance of emissions. For the above, CO 2 phyco-capture implementation can be possible in cities and also in open spaces and that even its production can work as the carbon credits nowadays implemented, the space required, and the high capture rate led us to consider that the microalgae production on a larger scale may have a faster effect on the concentration of CO 2 globally, which can help with greater urgency to the aims established by 2030." @default.
- W3200521335 created "2021-09-27" @default.
- W3200521335 creator A5001129735 @default.
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- W3200521335 date "2021-11-01" @default.
- W3200521335 modified "2023-10-15" @default.
- W3200521335 title "Phycocapture of CO2 as an option to reduce greenhouse gases in cities: Carbon sinks in urban spaces" @default.
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