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Quality of Pelleted Olive Cake for Energy Generation

机译:颗粒状橄榄饼用于发电的质量

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Olive cake is by-product of olive oil production. This material cannot be stored in original condition for a long time because it has high water content and relatively high portion of oil that causes rapid deterioration. Thus it is necessary to investigate possible methods of remediation of such by-product, where utilization for energy generation presents a useful option. Several studies have been conducted on energy generation from olive cake, however not one that includes pelleting as a pre-treatment. Therefore, the aim of this paper was to determine the chemical composition of different cultivars of olive cake, to produce pellets, and determine their basic quality parameters. The pellets obtained from olive cake had mainly satisfactory results regarding their quality in comparison to standards for fuel pellets. It should be kept in mind that these standards are manly for wood pellets, and therefore some lower criteria could be applied for olive cake and such biomass. The highest amount of residual oil and the lowest amount of protein was found in cultivar a??Bu??aa?? and produced pellets had the smallest abrasion index (8.15%). Other cultivars had lower oil and higher protein content, and abrasion index higher than 10%. For these cultivars preparation of material (conditioning and/or binder adding) prior to pelleting is necessary. Higher heating value (HHV) and lower heating value (LHV) were not significantly influenced by different chemical composition of cultivars, thus attention should be paid on their influence on pelleting process.
机译:橄榄饼是橄榄油生产的副产品。该材料由于水分含量高,并且含有较高比例的油,导致快速变质,因此无法长时间保存在原始状态。因此,有必要研究补救此类副产物的可能方法,其中利用能量产生是一个有用的选择。已经进行了几项有关从橄榄饼中产生能量的研究,但是没有一项研究包括将制粒作为预处理。因此,本文的目的是确定不同品种橄榄饼的化学成分,生产颗粒,并确定其基本质量参数。与燃料颗粒标准相比,从橄榄饼中获得的颗粒在质量上主要具有令人满意的结果。应当记住,这些标准对于木质颗粒是有男子气概的,因此可以将一些较低的标准应用于橄榄饼和此类生物质。在a ?? Bu ?? aa ????品种中发现了最高的残留油量和最低的蛋白质含量。制成的颗粒的磨损指数最小(8.15%)。其他品种含油量较低,蛋白质含量较高,耐磨指数高于10%。对于这些品种,制粒前必须进行材料准备(调节和/或添加粘合剂)。较高的热值(HHV)和较低的热值(LHV)不受品种化学组成的不同影响,因此应注意它们对制粒过程的影响。

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