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KRAFT LIGNIN AS AN ADDITIVE IN PINE AND EUCALYPTUS PARTICLE COMPOSITION FOR BRIQUETTE PRODUCTION

机译:卡夫木质素作为松果和鱼CAL颗粒成分的添加剂,用于生产冰糕

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The objective of this study was to evaluate the properties of briquettes produced with different proportions of pine and eucalyptus wood, as well as to characterize the potential of kraft lignin as an additive in the composition of briquettes for energy generation. The treatments differed from one another in the pine and eucalyptus wood particle ratios (0, 25, 50, 75 and 100%), as well as for the kraft lignin content (0, 2, 4, 6, 8, 10, and 12%). The biomasses were characterized by their physical and chemical properties, and briquette properties were evaluated according to apparent density, lower calorific value (LCV), energy density, and maximum burst load. The results showed an increase in the apparent density as the proportion of lignin and eucalyptus in the briquettes increased. The particle composition of the briquettes had a higher influence on the energy density increase compared to the addition of kraft lignin, being more significant in briquettes produced with higher proportions of eucalyptus. It was also observed that the addition of lignin increased the resistance to the rupture load, and that there was a specific value at which this resistance was higher (at 7% or 11% of lignin, depending on the proportion of particles). Additionally, the briquettes made with 100% pine achieved greater mechanical resistance. In general, kraft lignin presented good potential for use as a briquette additive, contributing to improved energy and mechanical properties.
机译:这项研究的目的是评估用不同比例的松木和桉木生产的煤饼的性能,并表征牛皮纸木质素作为煤饼组成中添加剂的潜力,以产生能量。这些处理方法在松木和桉木颗粒比率(0%,25%,50%,75%和100%)以及牛皮纸木质素含量(0、2、4、6、8、10和12)方面彼此不同。 %)。生物质通过其物理和化学特性进行表征,并根据表观密度,低热值(LCV),能量密度和最大爆裂负荷评估团块特性。结果表明,表观密度随煤球中木质素和桉树的比例增加而增加。与牛皮纸木质素的添加相比,煤球的颗粒组成对能量密度的增加有更高的影响,在以较高比例的桉木生产的煤球中,其影响更大。还观察到,木质素的添加增加了对破裂载荷的抵抗力,并且存在一个特定的值,在该值处该抵抗力更高(木质素的7%或11%,取决于颗粒的比例)。此外,用100%松木制成的煤球具有更大的机械阻力。通常,牛皮纸木质素具有用作煤饼添加剂的良好潜力,有助于改善能量和机械性能。

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