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Syngas test bed feasibility study

Syngas test bed feasibility study
合成气试验台可行性研究
批准号:
412542-2011
负责人:
Jia, Charles
金额:
$1.82万
依托单位:
依托单位国家:
加拿大
项目类别:
Engage Grants Program
财政年份:
2011
资助国家:
加拿大
项目状态:
已结题
起止时间:
2011-01-01 至 2012-12-31

项目摘要

项目成果

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中文摘要
翻译
Elementa集团是一家加拿大公司,总部设在尼亚加拉湖上,试验工厂设在苏圣。玛丽。该公司正在开发其废物转化为燃料的技术,这是在合成气生产领域。公司专注于将城市固体废物(MSW)转化为合成气,这将是第一项推向市场的技术。然而,有许多有前途的原料也应该使用Elementa技术转化为合成气。苏圣玛丽玛丽的试验工厂规模相对较大,完全致力于优化城市固体废物转化的条件。最好与多伦多大学建立关系,探讨是否可以建立一个研究计划,以便在基础水平上研究合成气的形成,然后在试验工厂设施上对研究结果进行测试和验证。关键目标是确定贾教授在多伦多大学的研究小组是否可以通过实验模拟Elementa中试工厂使用的合成气形成条件并产生类似的合成气产品。如果该项目成功,那么将与大学建立一个合作研究计划,以推进Elementa的目标,即推进其技术,以接受各种原料,从而进入各种新的市场机会。多伦多的化学工程系有一个实验室回转窑,将作为测试的平台。该装置将进行改造,以接受无氧的惰性气体进料和产品气体捕获系统。温度和固体停留时间能够用该设备设定,并且可以调节以匹配中试装置条件。试验设施的操作条件和实验结果将保密提供,
英文摘要
Elementa Group is a Canadian company with head office in Niagara-on-the-Lake and pilot plant in Sault Ste. Marie. The company is developing its waste-to-fuel technology which is in the Syngas production field. The Company has focused its attention on conversion of Municipal Solid Waste (MSW) to syngas and this will be the first technology to market. There are however, a number of promising feedstocks that should also be convertible to syngas using the Elementa technology. The pilot plant in Sault Ste Marie is relatively large scale and fully committed to optimizing conditions for MSW conversion. It would be advantageous to establish a relationship with the University of Toronto to explore whether a research program could be established that would allow syngas formation to be studied at a fundamental level the results of which could then be tested and validated at the pilot plant facility. The key objective is to determine whether Professor Jia's group in the University of Toronto can experimentally simulate syngas formation conditions used by the Elementa pilot plant and generate a similar syngas product. If this project is successful, then a collaborative research program will be established with the University to advance Elementa's goal of advancing its technology to accept a variety of feedstocks and hence entering a variety of new market opportunities. The Chemical Engineering Department at Toronto has a laboratory rotary kiln which will be the platform for the tests. The apparatus will be modified to accept an oxygen-free, inert gas feed and a product gas capture system. Temperature and solids residence time are able to be set with the apparatus and can be adjusted to match the pilot plant conditions. Operating conditions and experimental results from the pilot facility will be provided in confidence to
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