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Influences of thermal aging on properties and pyrolysis products of tire tread compound

机译:热老化对轮胎胎面胶性能和热解产物的影响

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摘要

Due to variation on waste tires as raw materials for pyrolysis process in terms of mileage leading to varied extents of degradation, the effects of time-governed thermal aging were investigated on two properties of tire, and on pyrolysis product yields and product distribution. Samples of a tire tread compound originally cured to 90% crosslink were aged in an environment-controlled oven for 0-4 weeks. Pyrolysis was performed on all samples. It was found that aging time had the influence over the crosslink density and hardness in steps during the course of aging due to the different response of the rubber constituents toward aging as well as changes on the tire molecules occurring in different stages upon aging. These affected the product yields and component distribution of products obtained from pyrolysis process. At the earlier stage of aging for 1-3 weeks, gas yield decreased with the aging time in accordance with the increase in liquid yield. The gas component distribution and carbon number distribution in liquid products insignificantly altered. However, the amount of gas oil in liquid products slightly decreased with aging time while the other commercial fractions remained practically constant. After 4 weeks of aging, sudden changes in opposite direction on the pyrolysis products occurred. The gas product rapidly increased along with the abrupt decrease in the liquid yield. The carbon number distribution in liquid product shifted to lower numbers, and the shape was narrower. The gas oil amount suddenly increased after reaching the lowest value at about 3 weeks of aging. An aging model was finally proposed in order to explain the observations.
机译:由于废轮胎作为热解工艺原料的里程数会导致降解程度的变化,因此研究了时间控制的热老化对轮胎两种性能以及热解产物收率和产物分布的影响。将最初固化至90%交联的轮胎胎面胶样品在环境受控的烤箱中老化0-4周。对所有样品进行热解。已经发现,由于橡胶成分对老化的不同响应以及老化时在不同阶段发生的轮胎分子的变化,老化时间对老化过程中的交联密度和硬度有逐步的影响。这些影响了热解过程中产物的产率和成分分布。在老化1-3周的较早阶段,随着液体产率的增加,气体产率随老化时间而降低。液体产品中的气体成分分布和碳数分布无明显变化。然而,液体产品中的粗柴油的量随老化时间而略有减少,而其他商业馏分实际上保持恒定。老化4周后,热解产物发生相反方向的突然变化。随着液体产率的突然下降,气体产物迅速增加。液体产物中的碳数分布移至较低的数,并且形状较窄。在大约3周的老化中达到最低值之后,粗柴油量突然增加。最后提出了一个老化模型,以解释观察结果。

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