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Full-scale production of high-quality wood pellets assisted by multivariate statistical process control

机译:全尺寸生产高质量的木质颗粒,由多元统计过程控制辅助

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摘要

In order for solid biofuels to be marketable and accessible to stakeholders (e.g., manufacturers, transhippers and customers), they must strictly meet the rigors of international standards and regulatory agencies regarding quality. On this basis, this study assesses the production of high-performance fuel-flexible woody pellets for heating and power, with the assistance of multivariate statistical process control (MSPC). The operational scenarios of industrially pelletizing pinewood sawdust are POS_Ⅰ (150 MPa and no pre-heating) and POS_Ⅱ (250 MPa and no pre-heating) as references, and POS_Ⅲ (150 MPa and pre-heating) and POSrv (250 MPa and pre-heating) as alternatives to regularize the workflow on the machine. The stream-monitoring techniques of MSPC are the exponential moving average (EMA) and Hotelling's T~2. The EMA-Hotelling system accurately tracks non-random errors and predicts the operationally finest scenario for developing high-quality pellets. Pre-heating the compressing channel of the machine regularizes the feeding and thus produces type I pellets (class A_1/A_2, European standard) with excellent bulk density (1227.55 kg m~(-3)), durability (98.10%) and hydrophobicity (96.65%), without points outside the specific critical ranges. Clear evidence of improved pellet quality with the assistance of MSPC is found. The high-fidelity concept of MSPC captures the advantages of EMA and Hotelling's T~2 into an immersive single framework; hence, it can compensate for the potential bias and misinformation-to-information overlapping of outcomes from monitoring latently multivariable flow on classical quality control charts. The major findings and innovations of this study can assist with rolling-out fine-scale pelletization and thus fulfill the increasing global demand for high-quality biofuels.
机译:为了使实体的生物燃料可用于销售和利益相关者(例如,制造商,转运器和客户),必须严格符合国际标准和监管机构的严格质量。在此基础上,该研究评估了高性能燃料柔性木质颗粒的加热和功率,以及多元统计过程控制(MSPC)。工业造粒的Pinewood锯末的操作场景是POS_Ⅰ(150MPa,没有预热)和POS_Ⅱ(250MPa,没有预热)作为参考文献,POS_Ⅲ(150MPa和预热)和POSRV(250MPa和Pre - 加热)作为规范机器上工作流程的替代方案。 MSPC的流监测技术是指数移动普通(EMA)和Hotelling的T〜2。 EMA-Hotelling系统准确地跟踪非随机误差并预测开发高质量颗粒的可操作最精细的场景。预热机器的压缩通道正规化进料,从而产生具有优异堆积密度的I型颗粒(A级A_1 / A_2,欧式标准)(1227.55千克M〜(-3)),耐久性(98.10%)和疏水性( 96.65%),没有特定的关键范围以外的点。发现,在MSPC的帮助下,可以清楚地证明改善的颗粒质量。 MSPC的高保真概念捕获了EMA和Hotelling的T〜2的优势,进入了一个沉浸式单一框架;因此,它可以弥补从监测潜在多变量流量的潜在偏置和错误信息,以监测经典质量控制图表。本研究的主要发现和创新可以帮助推出微尺度的造粒,从而实现对高质量生物燃料的越来越多的全球需求。

著录项

  • 来源
    《Biomass & bioenergy》 |2021年第8期|106159.1-106159.7|共7页
  • 作者单位

    Department of Phytosanitary Rural Engineering and Soils School of Engineering São Paulo State University (Unesp) Ilha Solteira São Paulo Brazil;

    Department of Plant Production College of Agricultural and Technological Sciences São Paulo State University (Unesp) Dracena São Paulo Brazil;

    Department of Plant Production College of Agricultural and Technological Sciences São Paulo State University (Unesp) Dracena São Paulo Brazil;

    Department of Plant Production College of Agricultural and Technological Sciences São Paulo State University (Unesp) Dracena São Paulo Brazil;

  • 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

    Energy biomass; Exponential moving range; Forest lignocellulosic waste; Hotelling's T~2; Solid biofuels;

    机译:能量生物量;指数移动范围;森林木质纤维素含量;热身的t〜2;坚实的生物燃料;

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