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Waste disposal technology transfer matching requirement clusters for waste disposal facilities in China

机译:中国废物处理设施的废物处理技术转移匹配要求集群

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摘要

Even though technology transfer has been part of development aid programmes for many decades, it has more often than not failed to come to fruition. One reason is the absence of simple guidelines or decision making tools that help operators or plant owners to decide on the most suitable technology to adopt. Practical suggestions for choosing the most suitable technology to combat a specific problem are hard to get and technology drawbacks are not sufficiently highlighted. Western counterparts in technology transfer or development projects often underestimate or don't sufficiently account for the high investment costs for the imported incineration plant; the differing nature of Chinese MSW; the need for trained manpower; and the need to treat flue gas, bunker leakage water, and ash, all of which contain highly toxic elements. This article sets out requirements for municipal solid waste disposal plant owner/operators in China as well as giving an attribute assessment for the prevalent waste disposal plant types in order to assist individual decision makers in their evaluation process for what plant type might be most suitable in a given situation. There is no 'best' plant for all needs and purposes, and requirement constellations rely on generalisations meaning they cannot be blindly applied, but an alignment of a type of plant to a type of owner or operator can realistically be achieved. To this end, a four-step approach is suggested and a technology matrix is set out to ease the choice of technology to transfer and avoid past errors. The four steps are (1) Identification of plant owner/operator requirement clusters; (2) Determination of different municipal solid waste (MSW) treatment plant attributes; (3) Development of a matrix matching requirement clusters to plant attributes; (4) Application of Quality Function Deployment Method to aid in technology localisation. The technology transfer matrices thus derived show significant performance differences between the various technologies available. It is hoped that the resulting research can build a bridge between technology transfer research and waste disposal research in order to enhance the exchange of more sustainable solutions in future.
机译:尽管技术转让已成为发展援助计划的一部分,但数十年来,这种技术的成功往往并非没有失败。原因之一是缺少简单的准则或决策工具来帮助操作员或工厂所有者决定采用哪种最合适的技术。选择最合适的技术来解决特定问题的实用建议很难获得,并且技术缺点也没有得到足够的重视。西方国家在技术转让或开发项目中的同行常常低估或没有充分考虑到进口焚化厂的高投资成本;中国MSW的不同性质;需要训练有素的人手;并且需要处理烟气,燃油泄漏水和灰烬,所有这些都含有剧毒元素。本文提出了对中国城市生活垃圾处理厂拥有者/运营者的要求,并对流行的垃圾处理厂类型进行了属性评估,以帮助各个决策者评估哪种设备类型最适合于中国。给定的情况。没有满足所有需求和目的的“最佳”工厂,并且需求群依赖于泛化,这意味着不能盲目地应用它们,但是可以实际实现工厂类型与所有者或运营商类型的匹配。为此,提出了一个四步方法,并提出了一个技术矩阵,以简化技术选择,避免过去的错误。这四个步骤是(1)识别工厂所有者/操作者需求集群; (2)确定城市生活垃圾处理厂的不同属性; (3)开发一个矩阵,将需求集群与工厂属性进行匹配; (4)应用质量功能展开法进行技术本地化。由此得出的技术转移矩阵显示出各种可用技术之间的显着性能差异。希望由此产生的研究能够在技术转让研究与废物处置研究之间架起一座桥梁,以便将来加强交换更多可持续性解决方案。

著录项

  • 来源
    《Waste Management》 |2012年第11期|p.2177-2184|共8页
  • 作者单位

    University of Rostock, Faculty of Agricultural and Environmental Sciences, Department Waste Management, justus-v.-Liebig-Weg 6, 18059 Rostock, Germany Celebrity Garden C58, Che Xin Lu No. 2, Xin Qiao Town, Song Jiang District, 201612 Shanghai, PR China;

    University of Rostock, Faculty of Agricultural and Environmental Sciences, Department Waste Management, justus-v.-Liebig-Weg 6, 18059 Rostock, Germany;

    University of Applied Sciences Muenster, Corrensstrasse 25, 48149 Muenster, Germany;

    Hefei University of Technology, 193 Tunxi Road, 230009 Hefei, PR China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    technology transfer; China; MSW; technology decision matrix; requirement clusters;

    机译:技术转让;中国;都市固体废物;技术决策矩阵;需求群;

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