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Evaluating the manufacturability and combustion behaviors of sludge-derived fuel briquettes

机译:评估污泥衍生的燃料团块的可制造性和燃烧行为

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摘要

Based on the physical and chemical properties as well as calorific values of pulp sludge and textile sludge, this study investigates the differences between manufacturability, relationship between extrusion pressure and formability, as well as stability and combustion behaviors of extruded sludge-derived fuel briquettes (ESBB) and cemented sludge-derived fuel blocks (CSBB). The optimum proportion and relevant usage ESBB policies are proposed as well. Experimental results indicate that a large amount of water can be saved during the ESBB manufacturing process. Additionally, energy consumption decreases during the drying process. ESBB also has a more compact structure than that of CSBB, and its mean penetration loading is approximately 18.7 times higher as well. Moreover, the flame temperature of ESBB (624-968 ℃) is significantly higher than that of CSBB (393-517 ℃). Also, the dry bulk density and moisture regain of ESBB is significantly related to the penetration loading. Furthermore, the optimum mix proportion of ESBB is co-determined by the formability of pulp sludge and the calorific values of textile sludge. While considering the specific conditions (including formability, stability and calorific values), the recommended mix proportion for ESBB is PS50TS50.
机译:基于纸浆污泥和纺织品污泥的理化性质和热值,本研究调查了可制造性,挤压压力与可成型性之间的关系以及挤压污泥衍生的燃料团块(ESBB)的稳定性和燃烧行为之间的差异。 )和水泥泥衍生的燃料块(CSBB)。还建议了最佳比例和相关用法ESBB策略。实验结果表明,在ESBB生产过程中可以节省大量的水。另外,在干燥过程中能耗降低。与CSBB相比,ESBB的结构也更紧凑,其平均渗透载荷也高出约18.7倍。此外,ESBB(624-968℃)的火焰温度明显高于CSBB(393-517℃)。同样,ESBB的干堆积密度和回潮率与渗透负荷显着相关。此外,ESBB的最佳混合比例由纸浆污泥的可成型性和纺织品污泥的热值共同确定。在考虑特定条件(包括可成型性,稳定性和热值)时,ESBB的推荐混合比例为PS50TS50。

著录项

  • 来源
    《Waste Management》 |2014年第10期|1847-1852|共6页
  • 作者

    Ing-Jia Chiou; I-Tsung Wu;

  • 作者单位

    Graduate School of Materials Applied Technology, Department of Environmental Technology and Management, Taoyuan Innovation Institute of Technology, No. 414, Sec. 3, Jhongshan E. Rd., Jhongli, Taoyuan 320, Taiwan, ROC;

    Graduate School of Materials Applied Technology, Department of Environmental Technology and Management, Taoyuan Innovation Institute of Technology, No. 414, Sec. 3, Jhongshan E. Rd., Jhongli, Taoyuan 320, Taiwan, ROC;

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

    Industrial sludge; Formability; Sludge-derived fuel; Flame temperature; Proportion;

    机译:工业污泥;可成型性污泥来源的燃料;火焰温度;比例;

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