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Manufacturing of renewable and biodegradable fiberboards from cake generated during biorefinery of sunflower whole plant in twin-screw extruder: Influence of thermo-pressing conditions

机译:在双螺杆挤出机中用向日葵整株生物精制过程中产生的饼状物制造可再生和可生物降解的纤维板:热压条件的影响

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摘要

The starting material used in this study was a cake generated during thermo-mechanical fractionation of sunflower (Helianthus annuus L.) whole plant in a twin-screw extruder. It was slightly deoiled (16.7% of oil in dry matter). Composed mainly of fibers and proteins, it could be considered as a natural composite and was processed successfully into fiberboards by thermo-pressing. This study aimed to evaluate the influence of thermo-pressing conditions on mechanical and heat insulation properties of fiberboards manufactured from this cake. All fiberboards were cohesive, proteins and fibers acting respectively as binder and reinforcing fillers.udHighest cake quantity (1000 mg/cm²) led to the highest breaking load (60.7 N) with a flexural strength at break quite low (2.9 MPa), lowest elastic modulus (216.6 MPa), and highest Charpy impact strength (6.5 kJ/m² for resilience). The increase of pressure applied during molding (from 320 to 360 kgf/cm²) led to an important increase of elastic modulus (from 352.6 to 728.6 MPa). Besides, fiberboard molded at 360 kgf/cm² was the most rigid of this study, and logically revealed the most important Shore D surface hardness (52.6°). Moreover, lowest molding time (60 s) led to the highest flexural strength at break (3.9 MPa). The low density of the fiberboards (less than 0.97) involved promising heat insulation properties. Indeed, thermal conductivity of fiberboards at 25 °C was low (from 103.5 to 135.7 mW/m K), and decreased with the increase of thickness.udAccording to their mechanical and heat insulation properties, fiberboards would be potentially usable as inter-layer sheets for pallets, for the manufacture of biodegradable containers (composters, crates for vegetable gardening) by assembly of fiberboards, or for their heat insulation properties in building industry. Moreover, thermo-pressing was not only a molding operation. It also improved the oil extraction efficiency as a part of residual oil was expressed from cake during molding, and total oil yield reached 79.3% with a pressure applied of 360 kgf/cm².
机译:本研究中使用的起始原料是在双螺杆挤出机中对向日葵(Helianthus annuus L.)整个植物进行热机械分馏过程中产生的饼。它略有脱油(干物质中油的16.7%)。它主要由纤维和蛋白质组成,可以被认为是一种天然复合材料,并通过热压成功地加工成纤维板。这项研究旨在评估热压条件对用该滤饼制造的纤维板的机械和隔热性能的影响。所有纤维板均具有粘结性,蛋白质和纤维分别充当粘合剂和增强填料。 ud最高的饼块量(1000 mg /cm²)导致最高的断裂载荷(60.7 N),断裂时的抗折强度很低(2.9 MPa),最低弹性模量(216.6 MPa)和最高夏比冲击强度(回弹力为6.5 kJ /m²)。模制过程中施加的压力增加(从320 kgf /cm²增加到360 kgf /cm²)导致弹性模量(从352.6 MPa增加到728.6 MPa)显着增加。此外,模压为360 kgf /cm²的纤维板是这项研究中最坚硬的,并且从逻辑上讲显示出最重要的肖氏D表面硬度(52.6°)。此外,最短的成型时间(60 s)导致最高的断裂挠曲强度(3.9 MPa)。纤维板的低密度(小于0.97)具有良好的隔热性能。的确,纤维板在25°C时的热导率很低(从103.5到135.7 mW / m K),并且随着厚度的增加而降低。 ud根据其机械和隔热性能,纤维板有可能用作中间层托盘板,用于通过纤维板的组装制造可生物降解的容器(堆肥器,用于蔬菜园艺的板条箱),或用于建筑行业的隔热性能。此外,热压不仅是成型操作。由于成型过程中滤饼中残留有一部分油脂,所以它还提高了油脂的提取效率,在施加360 kgf /cm²的压力下,总油脂收率达到79.3%。

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