高湿高脂废弃物产富氢水热燃油过程的智能建模与响应行为解析
作者单位:

华中农业大学

中图分类号:

S216.2;X705

基金项目:

湖北省技术创新计划项目(重点研发专项,2023CA153)


Intelligent modeling and response behavior analysis of a hydrogen-rich hydrothermal fuel oil process from high moisture and high lipid waste materials
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    摘要:

    为构建水热生物燃油富氢含量高预测精度、强泛化能力的预测模型,深入探讨生物质水热转化规律和机制,本文以文献中收集的243组病死畜禽、藻类等高湿高脂废弃物水热制备富氢生物燃油试验数据为基础,采用随机森林和极端梯度提升树两类高适配性机器学习算法,建立了高精宽域的水热生物燃油富氢含量预测模型(R2>0.93);基于数学预测模型,采用SHAP可解释技术及局部依赖性分析方法,解析了水热成油条件的贡献度、局部依赖性响应行为及其互作耦合规律。研究结果表明:高湿高脂废弃物中的脂质含量与氢含量是制备富氢生物燃油的决定性因素,二者对油相中氢的富集贡献度排名前二,能显著影响油相中氢的积累;随着原料氢含量的增加,油相中氢含量得到了提升,表明富氢原料为制备富氢生物燃油提供了便利条件,提升效果最高可达4wt%,而原料高位热值是生物油富氢行为的主要抑制因素,抑制作用高达4wt%。此外,从特征类别间的互作关系来看,元素信息、工业信息及生物质组分信息间的耦合作用强烈,但原料特性与操作条件间的局部耦合作用较小。

    Abstract:

    In order to construct a prediction model with high prediction accuracy and strong generalization ability for hydrothermal biofuel hydrogen-rich content, and to deeply explore the laws and mechanisms of hydrothermal conversion of biomass, this paper, based on 243 groups of experimental data collected in the literature for hydrothermal preparation of hydrogen-rich biofuel from high-moisture, high-fat wastes such as diseased and dead livestock and poultry, algae, etc., and adopting two types of high-fitness machine learning algorithms, namely, Random Forest and Extreme Gradient Enhancement Tree, establishes a high-precision and wide-area hydrothermal Based on the mathematical prediction model, the contribution of hydrothermal oil formation conditions, the local dependence response behavior and its mutual coupling law were analyzed by using SHAP interpretable technology and local dependence analysis method. The results showed that: the lipid content and hydrogen content in the high-moisture, high-fat waste were the determining factors for the preparation of hydrogen-rich biofuel, and they ranked the top two in terms of their contribution to the enrichment of hydrogen in the oil phase, which could significantly affect the accumulation of hydrogen in the oil phase; with the increase in the hydrogen content of the feedstock, the hydrogen content in the oil phase was enhanced, indicating that hydrogen-rich feedstock provided a convenient condition for the preparation of hydrogen-rich biofuel, with an enhancement effect of up to 4 wt%. And the higher heating value of the feedstock was the main inhibiting factor for the hydrogen-enriched behavior of biofuel, with an inhibiting effect of up to 4 wt%. In addition, from the interactions among the characterization categories, the coupling between elemental information, industrial information and biomass component information is strong, but the local coupling between feedstock properties and operating conditions is small.

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  • 收稿日期:2024-04-04
  • 最后修改日期:2025-01-22
  • 录用日期:2025-02-19
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