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App\Entity\Entry {#1609
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**Summary**\n
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Scientists are exploring the potential of microbes, particularly cyanobacteria, to help address climate change and other environmental challenges. A new strain of cyanobacteria discovered near Sicily was found to consume carbon dioxide (CO2) rapidly through photosynthesis, converting it into biomass. These microbes can capture more carbon in a shorter time frame and can be grown in non-arable land or seawater, not competing with food production. Researchers are creating a “living database” to share DNA sequences, allowing scientists worldwide to continue studying these microbes. Microbes can also be used to address the decline in pollinator populations, offering a multifaceted approach to environmental issues.
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App\Entity\Entry {#1609
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+body: """
**Summary**\n
\n
Scientists are exploring the potential of microbes, particularly cyanobacteria, to help address climate change and other environmental challenges. A new strain of cyanobacteria discovered near Sicily was found to consume carbon dioxide (CO2) rapidly through photosynthesis, converting it into biomass. These microbes can capture more carbon in a shorter time frame and can be grown in non-arable land or seawater, not competing with food production. Researchers are creating a “living database” to share DNA sequences, allowing scientists worldwide to continue studying these microbes. Microbes can also be used to address the decline in pollinator populations, offering a multifaceted approach to environmental issues.
"""
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App\Entity\Entry {#1609
+user: App\Entity\User {#260 …}
+magazine: Proxies\__CG__\App\Entity\Magazine {#1584 …}
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+domain: Proxies\__CG__\App\Entity\Domain {#1679 …}
+slug: "BBC-The-bacteria-that-can-capture-carbon-Could-minuscule-organisms"
+title: "[BBC] The bacteria that can capture carbon: Could minuscule organisms help the world meet its climate goals?"
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+body: """
**Summary**\n
\n
Scientists are exploring the potential of microbes, particularly cyanobacteria, to help address climate change and other environmental challenges. A new strain of cyanobacteria discovered near Sicily was found to consume carbon dioxide (CO2) rapidly through photosynthesis, converting it into biomass. These microbes can capture more carbon in a shorter time frame and can be grown in non-arable land or seawater, not competing with food production. Researchers are creating a “living database” to share DNA sequences, allowing scientists worldwide to continue studying these microbes. Microbes can also be used to address the decline in pollinator populations, offering a multifaceted approach to environmental issues.
"""
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date: 2023-09-14 12:16:53.0 +02:00
}
} |
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