Addressing the climate crisis through engineering biology

Addressing the climate crisis through engineering biology
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通过工程生物学应对气候危机

DOI:
10.1038/s44168-023-00089-8
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发表时间:
2024
期刊:
npj Climate Action
影响因子:
--
通讯作者:
EBRC Technical Roadmapping Working Group
EBRC Technical Roadmapping Working Group
中科院分区:
--
文献类型:
--
作者:
Aurand, Emily R.;Moon, Tae Seok;Buan, Nicole R.;Solomon, Kevin V.;Köpke, Michael;EBRC Technical Roadmapping Working Group

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相似文献

随着气候危机的加深,全球范围内的影响更加频繁和尖锐,科学,工程和政策界需要更多的工具和机会来应对气候挑战。工程生物学研究联盟(EBRC)最近发布了一份技术研究路线图,气候与可持续发展工程生物学,描述和详细说明了可用于缓解,预防和适应气候变化的工程生物学工具和技术进步的短期,中期和长期里程碑。这些雄心勃勃的技术成就只有在互补的研究、政策和投资的背景下,并与许多其他学科和方法的努力相结合才能实现。在这里,我们说明了机会,如路线图所描述的,在工程生物学研究和发展,以影响气候变化和长期的环境可持续性,以及为什么和如何工程生物学和随后的生物技术应该是最突出的方法来克服气候危机。
As the climate crisis deepens and the impacts are felt more often and more acutely worldwide, scientific, engineering, and policy communities need more tools and opportunities to make a difference in tackling climate challenges. The Engineering Biology Research Consortium (EBRC) has recently published a technical research roadmap,Engineering Biology for Climate & Sustainability, that describes and details short-, medium-, and long-term milestones for engineering biology tool and technology advancements that can be applied to mitigate, prevent, and adapt to climate change. These ambitious technical achievements can only be realized in the context of complementary research, policy, and investment and in combination with efforts from many other disciplines and approaches. Herein we illustrate the opportunities, as described by the roadmap, in engineering biology research and development to impact climate change and long-term environmental sustainability, and why and how engineering biology and subsequent biotechnologies should be among the most prominent of approaches to overcoming the climate crisis.
DOI: --
发表时间: 2023
影响因子: 15.1
作者:
Deepti Agrawal;Kelvin Awani;Seyed Ali Nabavi;Venkatesh Balan;Mingjie Jin;T. Aminabhavi;K. Dubey;Vinod Kumar
通讯作者: Vinod Kumar
DOI: 10.1016/j.tibtech.2023.03.019
发表时间: 2023-09
影响因子: 17.3
作者:
Moon, Tae Seok;Solomon, Kevin;Borodina, Irina;Vickers, Claudia
通讯作者: Vickers, Claudia