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首页> 外文期刊>Waste Management >Automated image analysis and hyperspectral imagery with enhanced dark field microscopy applied to biochars produced at different temperatures
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Automated image analysis and hyperspectral imagery with enhanced dark field microscopy applied to biochars produced at different temperatures

机译:具有增强的暗场显微镜的自动图像分析和高光谱图像应用于不同温度产生的Biochars

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摘要

Biochar from agricultural biomasses and solid wastes represents a win-win solution for a rational waste management. Its sustainable usage requires the identification and standardization of biochar characteristics. The aim of this work was to identify the physical-chemical and spatial characteristics of biochars from pruning residues (PR), poultry litter (PL), and anaerobic cattle digestate (CD) at two pyrolysis temperatures (350 °C and 550 °C). The biochar characterization was carried out by applying emerging imaging techniques, 2D automated optical image analysis and hyperspectral enhanced dark-field microscopy (EDFM), and by SEM analysis. As predictable, the feedstock composition and the pyrolysis temperature strongly influence the physical structures of the biochar samples. Irrespective of charring temperature, PR biochar was mainly characterized by a broken and fragmented structure with an irregular and rough particle surface, completely different from the original PR wood cell. The EDFM imaging analysis evidenced the thermal degradation of PR vegetal products, composed primarily of hemicellulose, cellulose and lignin. On the contrary, small and regular particles with a smooth surface were produced by the PL pyrolysis, especially at 550 °C, due to the lower PL morphological homogeneity in comparison with the other biomasses. Finally, CD charring at both temperatures was characterized by changes in chemical composition, suggested by a lower pixel intensity. In conclusion, the emerging imaging techniques used in this study proved to be very effective in analyzing some properties of biochars, and can, therefore be considered as promising experimental strategies for detecting the feedstock and pyrolysis temperature of biochar.
机译:来自农业生物量和固体废物的Biochar代表了合理废物管理的双赢解决方案。其可持续使用需要识别和标准化生物炭特征。这项工作的目的是鉴定两次热解温度(350℃和550°C)的修剪残基(PR),家禽垃圾(PL)和厌氧牛消化物(CD)的生物触发器的物理化学和空间特征。通过施加新兴成像技术,2D自动化光学图像分析和高光谱增强的暗场显微镜(EDFM)和SEM分析来进行Biochar表征。作为可预测的,原料组合物和热解温度强烈影响生物炭样品的物理结构。无论炭化温度如何,Pr Biochar主要用破裂和碎裂的结构为特征,具有不规则和粗糙的颗粒表面,与原始PR木细胞完全不同。 EDFM成像分析证明了Pr植物产品的热降解,主要由半纤维素,纤维素和木质素组成。相反,由于与其他生物质相比,通过Pl热解,特别是在550℃下,通过Pl热解产生具有光滑表面的小和规则颗粒。与其他生物量相比,Pl形态均匀性。最后,通过较低像素强度建议的化学组成的变化,在两个温度下的CD炭化的特征在于。总之,本研究中使用的新兴成像技术证明是非常有效地分析生物脉的某些性质,因此可以被认为是检测生物炭原料和热解温度的有前途的实验策略。

著录项

  • 来源
    《Waste Management》 |2020年第3期|457-466|共10页
  • 作者单位

    Department of Agronomy Food Natural Resources Animals and Environment University of Padova Viale Dell'Universita 16 35020 Legnaro Italy;

    Institute of Organic Synthesis and Photoreactivity (ISOF) National Research Council Via P. Gobetti 101 40129 Bologna Italy;

    Department of Agronomy Food Natural Resources Animals and Environment University of Padova Viale Dell'Universita 16 35020 Legnaro Italy;

    Department of Agricultural and Food Sciences University of Bologna Viale Fanin 44 40127 Bologna Italy;

    Department of Agronomy Food Natural Resources Animals and Environment University of Padova Viale Dell'Universita 16 35020 Legnaro Italy;

    Department of Agricultural and Food Sciences University of Bologna Viale Fanin 44 40127 Bologna Italy;

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

    Anaerobic cattle digestate; Discriminant analysis; Hyperspectral imagery; Poultry litter; Pruning residues; Pyrolysis temperature;

    机译:厌氧牛消化;判别分析;高光谱图像;家禽垃圾;修剪残留物;热解温度;

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