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Investigating the Feedstock Properties and Process Conditions Influencing the Characteristics of Products Generated From the Hydrothermal Carbonization of Organic Feedstocks

机译:研究影响有机原料水热碳化生成的产品特性的原料性质和工艺条件

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摘要

Hydrothermal carbonization (HTC) is a novel environmentally beneficial thermal conversion process for the transformation of organic feedstocks to value-added products. However, little is known about the role of feedstock properties and/or process conditions during carbonization. This study was conducted to determine the parameters most influential during the HTC of organic feedstocks. Experiments and statistical analyses were conducted to: (1) determine the effect of specific feedstocks, feedstock interactions, and process conditions on carbonization product characteristics; (2) understand how initial liquid characteristics influence product characteristics and evaluate the significance of these initial liquid characteristics in predicting product characteristics; and (3) develop statistical models to predict product characteristics and determine parameter influence on carbonization product characteristics when carbonizing various feedstocks at different reaction conditions. Results from laboratory-scale experiments evaluating the carbonization of food waste and packaging materials indicate solid concentration influences carbon distribution. The presence of packaging materials significantly influences hydrochar carbon content. Laboratory-scale experiment results from the carbonization of wastes in the presence of different initial liquids suggest activated sludge and landfill leachate impart minimal impact on the evaluated carbonization product characteristics. Multiple linear regression and regression tree models were developed and indicate process conditions are more influential to the hydrochar yield, liquid and gas- phase carbon content, while feedstock proximate and ultimate properties are more influential on hydrochar carbon, energy contents, and the normalized carbon content of the solid. Additional linear and nonlinear (e.g., regression tree and random forest) models were developed with a larger number of feedstock properties to describe hydrochar yield, carbon content, and energy content. Results from Sobol analysis of these models suggests the most influential parameters to hydrochar yield are solid concentration, temperature, feedstock lignin, polarity, hydrogen, carbon, time and ash. The most influential parameters to hydrochar carbon content are feedstock hydrogen, carbon, solid concentration and ash or volatile matter. The most influential parameters to hydrochar energy content are feedstock hydrogen, carbon, oxygen, ash, temperature and time. These most influential feedstock properties should be considered during feedstock selection. Overall, results from this work provide models that can be used to predict carbonization product characteristics.
机译:水热碳化(HTC)是一种新型的对环境有益的热转化工艺,可用于将有机原料转化为增值产品。然而,关于碳化期间原料性质和/或工艺条件的作用知之甚少。进行这项研究以确定在有机原料HTC期间最有影响力的参数。进行了实验和统计分析,以:(1)确定特定原料,原料相互作用和工艺条件对碳化产物特性的影响; (2)了解初始液体特性​​如何影响产品特性,并评估这些初始液体特性​​对预测产品特性的重要性; (3)建立统计模型,以预测在不同反应条件下碳化各种原料时产物特征并确定参数对碳化产物特征的影响。评估食品废物和包装材料碳化的实验室规模实验结果表明,固体浓度会影响碳分布。包装材料的存在会严重影响烃碳含量。在不同初始液体存在下,废物碳化所产生的实验室规模实验结果表明,活性污泥和垃圾渗滤液对评估的碳化产物特性的影响最小。建立了多个线性回归和回归树模型,这些模型表明工艺条件对烃类产量,液相和气相碳含量的影响更大,而接近和最终性质的原料对烃类碳,能量含量和归一化碳含量的影响更大。的固体。还开发了具有大量原料特性的其他线性和非线性(例如,回归树和随机森林)模型,以描述烃类产量,碳含量和能量含量。这些模型的Sobol分析结果表明,对烃类产量影响最大的参数是固体浓度,温度,原料木质素,极性,氢,碳,时间和灰分。对烃类碳含量影响最大的参数是原料氢,碳,固体浓度和灰分或挥发性物质。对烃类能量含量影响最大的参数是原料氢,碳,氧,灰分,温度和时间。在选择原料时应考虑这些最有影响力的原料性能。总体而言,这项工作的结果提供了可用于预测碳化产品特性的模型。

著录项

  • 作者

    Li, Liang.;

  • 作者单位

    University of South Carolina.;

  • 授予单位 University of South Carolina.;
  • 学科 Civil engineering.;Environmental engineering.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 266 p.
  • 总页数 266
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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