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首页> 外文期刊>Biomass & bioenergy >Assessment of NIR spectroscopy for predicting biochemical methane potential of agro-residues - A biorefinery approach
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Assessment of NIR spectroscopy for predicting biochemical methane potential of agro-residues - A biorefinery approach

机译:评估NIR光谱预测农产品生物化学甲烷电位 - 生物晶体方法

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摘要

Biorefinery approaches are suitable for agro-residues valorization. In this work, the integration of solid-liquid extraction followed by anaerobic digestion is explored. This study aims to assess the near-infrared (NIR) spectroscopy and multivariate regression models as reliable methods to predict the methane yield of raw and extracted agro-residues. Tomato residues (ripe semi-rotten tomato-RT, green (unripe) fruit-GT, tomato plant-TB) and grape pomace residues (GP) were extracted for phenolic compounds recovery. GP is the richest substrate in phenolic compounds (55.8 mg g~(-1), expressed gallic acid equivalents on a dry extract basis). The experimental values of biochemical methane potential (BMP) varied in the range 128-307 NmL CH_4g~(-1), in volatile solid basis for tomato residues, while 115-177 NmL CH_4g~(-1) were determined for GP. The experimental BMP observed before and after extraction was statistically similar. The prediction based on the NIR-based model also exposes the same trend and shows a reasonable prediction error compared to other models. In conclusion, NIR spectroscopy and some multivariate regression models may be used for BMP prediction in a biorefinery context.
机译:生物填料方法适用于农业残留物算法。在这项工作中,探讨了固液提取随后的厌氧消化的整合。本研究旨在评估近红外(NIR)光谱和多元回归模型作为可靠的方法,以预测原料和提取的农业残基的甲烷产量。番茄残留(成熟半腐烂的番茄 - Rt,绿色(未成熟)水果gt,番茄植物 - Tb)和葡萄渣残基(GP)以用于酚类化合物回收。 GP是酚类化合物中最富有的基材(55.8mg g〜(-1),在干燥提取物的基础上表达了没食子酸等同物)。生物化学甲烷电位(BMP)的实验值在128-307 nml CH_4g〜(-1)范围内变化,以番茄残基的挥发性固体基础,而GP测定115-177 NML CH_4G〜(-1)。在提取之前和之后观察到的实验BMP是统计学上的。基于基于NIR的模型的预测还暴露了相同的趋势,并与其他模型相比显示了合理的预测误差。总之,NIR光谱和一些多变量回归模型可用于生物填充背景下的BMP预测。

著录项

  • 来源
    《Biomass & bioenergy》 |2021年第8期|106169.1-106169.8|共8页
  • 作者单位

    CIEPQPF Department of Chemical Engineering Faculty of Sciences and Technology University of Coimbra Pólo II Rua Sílvio Lima 3030-790 Coimbra Portugal;

    CIEPQPF Department of Chemical Engineering Faculty of Sciences and Technology University of Coimbra Pólo II Rua Sílvio Lima 3030-790 Coimbra Portugal;

    CIEPQPF Department of Chemical Engineering Faculty of Sciences and Technology University of Coimbra Pólo II Rua Sílvio Lima 3030-790 Coimbra Portugal;

    Faculty of Process and Environmental Engineering Lodz University of Technology Wolczanska 213 90-924 Lodz Poland;

    Faculty of Process and Environmental Engineering Lodz University of Technology Wolczanska 213 90-924 Lodz Poland;

    Faculty of Process and Environmental Engineering Lodz University of Technology Wolczanska 213 90-924 Lodz Poland;

    CIEPQPF Department of Chemical Engineering Faculty of Sciences and Technology University of Coimbra Pólo II Rua Sílvio Lima 3030-790 Coimbra Portugal;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tomato residues; Wine residues; Anaerobic digestion; Near-infrared spectroscopy; Prediction models;

    机译:番茄残留;葡萄酒残留;厌氧消化;近红外光谱;预测模型;

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