首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >(V014T11A025)RECOVERY OF PAPER FIBERS FROM TETRAPAK? PACKAGING: MATERIAL AND ENERGETIC VALORIZATION OF THE REMAINING FRACTION
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(V014T11A025)RECOVERY OF PAPER FIBERS FROM TETRAPAK? PACKAGING: MATERIAL AND ENERGETIC VALORIZATION OF THE REMAINING FRACTION

机译:(v014t11a025)从tetrapak恢复纸纤维?包装:剩余分数的材料和精力量算命

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In this study, a methodology was developed for the treatment/valorization of all the constituent fractions of FetraPak ?, proposing pyrolysis technology for the recycling of plastic and aluminum fraction, resulting in the recovery process of the paper fibers. In percentage these three elements are distributed approximately as follows: 70% of cardboard (kraft paper), 25% of low-density polyethylene (LDPE) and 5% of aluminum foil [1, 2, 3, 4]. It was developed an integrated and innovative methodology that starts with the recovery of the paper fibers, which must reintegrate the production cycle of the packaging company. Followed by the valorization of the remaining fraction, this fraction consists in plastic and aluminum, and is valorized through a pyrolysis process. The Pyrolysis process is an irreversible chemical modification of compounds by the action of heat and in the absence of oxygen. This technology are used for energy recovery, which causes thermal degradation of the compounds in anoxic environment, and is therefore considered an environmentally friendly technology and it is considered one of the alternative routes for treatment of waste TetraPak ? packaging [4]. The pyrolysis tests were carried out in laboratory reactor at different temperatures (between 300 and 500°C). At the end of this process the aluminum was recovered and it was produced a synthesis gas with added value. This produced gas was constituted by CO, H_2, CO_2 e CH_4 with maximum values recorded of 5000, 3200 e 7.5 ppm e 40%, respectively. The laboratory test were confirmed by the analysis of the thermal behavior by DTA/TGA and it was confirmed that the temperature of 500°C is the most indicated for energetic valorization of the aluminum, paper and plastic fraction.
机译:在该研究中,开发了一种方法,用于对Fetrapak的所有组成部分的治疗/算入α的处理/算入,提出用于回收塑料和铝馏分的热解技术,从而产生纸纤维的回收过程。在百分比上,这三个元件的分布大约如下:70%的纸板(牛皮纸),25%的低密度聚乙烯(LDPE)和5%的铝箔[1,2,3,4]。它开发了一种综合和创新的方法,从纸纤维恢复开始,必须重新融入包装公司的生产周期。其次是剩余部分的储存,该馏分在塑料和铝中组成,并通过热解过程进行塑性。热解过程是通过热量和在没有氧气的情况下对化合物的不可逆化学改性。该技术用于能量回收,这导致缺氧环境中化合物的热降解,因此被认为是环保技术,并且被认为是处理废物Tetrapak的替代路线之一?包装[4]。热解试验在实验室反应器中在不同温度(300至500℃之间)进行。在该过程结束时,回收铝,并产生具有附加值的合成气。该产生的气体由CO,H_2,CO_2 e CH_4构成,最大值分别记录5000,3200 e 7.5ppm 40%。通过DTA / TGA的热行为来证实实验室测试,证实了500℃的温度最多,用于铝,纸和塑料级分的能量储度。

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