Environmental Biotechnology Innovation Centre
Environmental Biotechnology Innovation Centre
批准号:
BB/Y008332/1
负责人:
Frederic Coulon
金额:
$1441.17万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2024
资助国家:
英国
项目状态:
未结题
起止时间:
2024 至 --
中文摘要
我们正在着手一项令人兴奋的研究计划,旨在解决紧迫的环境挑战。我们的重点是利用合成生物学、生物技术、计算建模和工程科学的尖端技术,开发生物工程和生物修复方面的创新解决方案。通过基因工程,我们可以修改生物体的遗传物质,使它们更有效地从环境中去除特定的污染物。这包括针对塑料废物、碳氢化合物和金属等物质。通过增强这些生物的自然能力,我们可以找到更可持续、更经济的方法来清洁我们的地球。我们研究的另一个方面涉及代谢工程,即我们修改生物体内部的化学途径。通过引入新的酶或优化现有的酶,我们可以创建“微生物工厂”,有效地分解有害化学物质。这有助于安全处理污染物,并有助于清洁环境。我们也在探索能够实时检测和响应环境污染物的生物传感器和生物设备的发展。这些设备充当环境监测器,使我们能够及时识别和解决问题。这种快速反应有助于保护生态系统和人类健康。此外,我们正在使用先进的基因组编辑技术来精确地修改生物体的DNA。这使我们能够创造出全新的生物体,或者增强现有生物体的功能。通过这样做,我们可以设计出更适合环境任务的生物,比如将废物转化为有价值的资源。我们将与许多领域的专家合作,包括我们在水和废物管理以及环境生物技术领域的13个项目合作伙伴,以推动创新和开发应对环境挑战的实际应用。通过结合我们的知识和资源,我们希望在减少污染、废物管理和资源回收方面产生重大影响。通过透明的沟通和负责任的研究实践,我们的目标是获得公众对我们工作的信任和支持。我们理解在安全部署这些技术时道德考虑和法规遵从的重要性。我们还致力于开展有利于社会所有成员的研究,并考虑到我们工作的社会、经济和环境影响。通过将公平、多样性和诚信作为我们研究方法的组成部分,我们努力在我们的科学界和整个社会中创造积极和包容的变化。我们可以共同努力,为每个人创造一个更加可持续和公平的未来。最终,通过利用科学和技术的力量,我们可以找到创新的方法来保护我们的环境,确保为子孙后代创造一个更美好、更可持续的世界。
英文摘要
We are embarking on an exciting research initiative aimed at addressing urgent environmental challenges. Our focus is on using cutting-edge techniques from synthetic biology, biotechnology, computation modelling and engineering science to develop innovative solutions in bioengineering and bioremediation. Through genetic engineering, we can modify the genetic material of organisms, making them more effective at removing specific pollutants from the environment. This includes targeting substances like plastic waste, hydrocarbons, and metals. By enhancing the natural abilities of these organisms, we can find more sustainable and cost-effective ways to clean up our planet. Another aspect of our research involves metabolic engineering, where we modify the chemical pathways inside organisms. By introducing new enzymes or optimizing existing ones, we can create "microbial factories" that efficiently break down harmful chemicals. This helps in the safe disposal of pollutants and contributes to a cleaner environment. We are also exploring the development of biosensors and biodevices that can detect and respond to environmental pollutants in real-time. These devices act as environmental monitors, allowing us to identify and address issues promptly. This rapid response helps in protecting ecosystems and human health. Additionally, we are using advanced genome editing technologies to precisely modify the DNA of organisms. This allows us to create entirely new organisms or enhance the functions of existing ones. By doing so, we can design organisms that are better suited for environmental tasks like converting waste into valuable resources. We will collaborate with experts from many fields, including our 13 project partners spanning the water and waste management as well as the environmental biotechnology sectors, to drive innovation and develop practical applications that address environmental challenges. By combining our knowledge and resources, we hope to make a significant impact in pollution reduction, waste management and resource recovery. Through transparent communication and responsible research practices, we aim to gain public trust and support for our work. We understand the importance of ethical considerations and regulatory compliance in deploying these technologies safely. We are also dedicated to conducting research that benefits all members of society, taking into consideration the social, economic and environmental impacts of our work. By embracing equity, diversity and integrity as integral components of our research approach, we strive to create positive and inclusive change in our scientific community and society as a whole. Together, we can work towards a more sustainable and equitable future for everyone. Ultimately, by harnessing the power of science and technology, we can find innovative ways to protect our environment and ensure a better and more sustainable world for future generations.
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会议论文
Indoor/outdoor Bioaerosols Interface and Relationships Network - BioAirNet
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批准号:NE/V002171/1
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项目类别:Research Grant
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资助金额:$64.66万
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财政年份:2020
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负责人:Frederic Coulon
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依托单位:
Rapid monitoring of bioaerosols in Urban, Agricultural and Industrial Environments
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批准号:NE/M010961/1
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项目类别:Research Grant
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资助金额:$43.66万
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财政年份:2015
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负责人:Frederic Coulon
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依托单位:
海外基金