Improved polythene processing additives
Improved polythene processing additives
批准号:
720141
负责人:
金额:
$20.32万
依托单位:
依托单位国家:
英国
项目类别:
GRD Development of Prototype
财政年份:
2012
资助国家:
英国
项目状态:
已结题
起止时间:
2012 至 --
中文摘要
该项目旨在大幅降低成本增加对英国聚乙烯生产市场的影响。价格从2006年的800英镑/吨上涨到2012年的1300英镑/吨。再循环原料的可获得性和可变性的减少以及加工成本的增加进一步造成了价格压力。CCM技术可以帮助满足降低成本的需求。该公司试图通过原型开发项目展示其工艺的可扩展性,该项目已在小规模上得到验证,该项目将以更低的成本提供替代原料。该项目减少了生产挤出(PE)产品所需的原始聚合物和能源的数量。在聚乙烯熔体中加入经过特殊处理的可再生纤维,可降低成本,而不会降低最终产品的机械性能。它还将PE的用量减少了30%,能源成本降低了20%。该工艺还减少了与聚乙烯生产相关的二氧化碳总排放量,同时允许额外的材料功能(包括阻燃性)的潜力,可能有助于显着扩大聚乙烯市场。CCM工艺最初是在约克郡前沿研发资助下开发的,随后在伯明翰大学开发。我们现正寻求扩大该项目的规模,开发一个原型,可以产生更大数量的处理纤维进行全面的工业测试,并作为一个测试台单位的开发和销售更大规模的设备,以产品制造商在英国。一个成功的原型将使该行业能够降低成本,节省能源和二氧化碳,同时也为该行业开发潜在的市场机会。
英文摘要
This project aims to dramatically reduce the impact of increased costs on the UK polythene production market. Prices have risen from £800/T in 2006 to £1300/T in 2012. Further price pressures are exerted by the decreasing availability and variability of recycled feedstock and increased processing costs. CCm technology can help meet the demand for lower costs. It seeks to demonstrate the scalability of its process, already proven at small scale, through a prototype development project which will deliver alternative feedstock at lower cost.The project reduces the quantities of virgin polymer and energy required to make extruded (PE) products. The incorporation of specially treated renewably sourced fibres into polythene melts reduces costs without reducing the mechanical properties of the end product. It also reduces the quantity of PE by up to 30% and energy costs by 20%. The process also reduces total CO2 emissions relating to PE production whilst allowing for the potential for additional material functionality (including fire retardancy) potentially helping to significantly broaden the polythene market.The CCm process was initially developed under a Yorkshire Forward R&D grant and hassubsequently been developed at the University of Birmingham. We now seek to scale-up the project by developing a prototype that can generate larger quantities of treated fibre for full industrial testing and to act as a test bed unit for the development and sale of larger scale equipment to product manufacturers in the UK. A successful prototype will enable the industry to reduce costs, save energy and C02, whilst also developing potential market opportunities for the sector.
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