Feasibility experiments to quantify the compatibility of C-Capture’s solvent technology with the requirements of the glass manufacturing industry
Feasibility experiments to quantify the compatibility of C-Capture’s solvent technology with the requirements of the glass manufacturing industry
批准号:
82417
负责人:
金额:
$7.59万
依托单位:
依托单位国家:
英国
项目类别:
Small Business Research Initiative
财政年份:
2020
资助国家:
英国
项目状态:
已结题
起止时间:
2020 至 --
中文摘要
C-Capture设计了世界领先的二氧化碳捕获化学过程。我们已经获得了一项独特、安全、低成本的燃烧后捕获技术的专利,该技术比目前的商业技术节省高达40%的能源。这项技术使用了一种新型的不含胺和氮的捕获溶剂,不被归类为有害物质,价格低廉,并且可以从生物来源大规模生产。迄今为止产生的数据表明,我们的溶剂具有很强的抗氧化性,因此不会像工业应用中的现有技术那样快速降解。因此,C-Capture的技术为重工业提供了一种理想的脱碳解决方案,成本比现有方案低得多,可以节省资金,维持经济复苏。我们希望在现有数据的基础上,将我们的溶剂暴露在最具挑战性的条件下,例如玻璃制造行业中含有非常高水平的氧化剂的条件。我们建议建立一个增强型氧化装置,使我们的溶剂配方暴露于烟气污染物的极端条件下,以证明我们的溶剂技术的弹性。这项可行性研究将评估C-Capture先进二氧化碳捕集工艺的稳稳性,以期随后与我们密切合作的皮尔金顿玻璃公司(Pilkington Glass)合作试用该技术,以充分了解他们的需求。通过与努力寻找脱碳技术解决方案的客户合作,我们正在优化我们的技术以满足市场需求。许多工业客户在利润率极低的市场中运营,目前由于COVID-19正在为生存而战。这些可行性实验是提供工业碳捕获技术的关键一步,该技术使客户能够通过投资于提供就业机会和减少温室气体排放的基础设施,从大流行病中可持续地恢复过来。这将对气候变化和环境可持续性产生积极影响,使工业部门能够从COVID-19大流行中“更好地重建”,创造更可持续的经济,并帮助实现政府的清洁增长战略和净零目标。
英文摘要
C-Capture designs world-leading chemical processes for the capture of carbon dioxide. We have patented a unique, safe, low-cost post-combustion capture technology which uses up to 40% less energy than current commercially available technologies. The technology uses a new class of capture solvents that are amine and nitrogen free, are not classified as hazardous, are inexpensive, and could be manufactured on a large scale from biological sources. Data generated thus far has demonstrated our solvent to be very resistant to oxidation, and therefore would not degrade as quickly as existing technologies in industrial applications. Hence, C-Capture's technology presents an ideal decarbonisation solution for heavy industry, at considerably lower cost than existing options, freeing up funds to sustain their economic recovery from the pandemic. We wish to build upon existing data and expose our solvent to the most challenging conditions, such as those found in the glass-making industry which contains very high levels of oxidants. We propose to build an enhanced oxidation rig to expose our solvent formulation to extreme conditions of flue gas pollutants, to demonstrate the resilience of our solvent technology. This feasibility study will evaluate the robustness of C-Capture's advanced carbon dioxide capture process, with a view to subsequently piloting the technology in collaboration with Pilkington Glass, with whom we are working closely, in order to fully understand their requirements. By working alongside customers who are trying hard to find technological solutions to decarbonise, we are optimising our technology to fulfill market needs. Many industrial customers operate in markets characterised by razor thin margins, and are currently fighting for survival due to COVID-19\. These feasibility experiments are a crucial step in providing an industrial carbon capture technology which allows customers to recover sustainably from the pandemic by investing in infrastructure which provides jobs and reduces greenhouse gas emissions. This will have a positive impact on climate change and environmental sustainability and enable the industrial sector to 'build back better' from the COVID-19 pandemic, create a more sustainable economy, and help deliver on the government's Clean Growth Strategy and net zero ambition.
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关于图像处理模型的目标函数构造及其数值方法研究
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批准号:11071228
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项目类别:面上项目
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资助金额:32.0万元
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批准年份:2010
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负责人:郭晓霞
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依托单位: