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Interactions between carbon black and stabilisers in LDPE thermal oxidation

机译:LDPE热氧化中炭黑与稳定剂之间的相互作用

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摘要

The interactions between two commercial hindered piperidine compounds, three commercial antioxidants, a secondary anti- oxidant and two types of furnace carbon blacks (with a different surface area and surface chemistry) in the thermal oxidation of LDPE have been studied using the oxidation induction time test. During thermal degradation the interactions were variable, being both antagonistic and synergistic. Generally, for the primary antioxidants alone their thermal stabilising effects on the polymer were decisive and related to their chemical structure, with the main contribution being their synergism with HALS and a secondary antioxidant. Differences in the performance of the polymeric type of HALS were evidenced, as well as between the CB grades. Minor synergism and antagonism was found between HALS and CB depending on the chemical structure of the HALS. All the detected antagonisms were widely overcome by the synergistic interaction found in three- and four-additive formulations. Though the presence of CB (at the concentrations studied) was not a decisive factor in the LDPE thermal stability, its presence nevertheless showed a beneficial effect. The nature of the CB plays some role in controlling its performance as a stabilising agent alone, as well as its interactions with HALS and antioxidants, via adsorption-desorption processes as well as other chemical interactions as was evidenced by adsorption studies via flow microcalorimetry (FMC).
机译:使用氧化诱导时间测试研究了LDPE热氧化中两种商业受阻哌啶化合物,三种商业抗氧化剂,第二种抗氧化剂和两种类型的炉法炭黑(具有不同的表面积和表面化学)之间的相互作用。 。在热降解期间,相互作用是可变的,既是拮抗的又是协同的。通常,仅对于主要抗氧化剂,它们对聚合物的热稳定作用是决定性的,并与它们的化学结构有关,主要的贡献是它们与HALS和辅助抗氧化剂的协同作用。证明了聚合型HALS的性能以及CB级之间的性能差异。根据HALS的化学结构,在HALS和CB之间发现了较小的协同作用和拮抗作用。在三和四添加剂配方中发现的协同相互作用广泛地克服了所有检测到的拮抗作用。尽管CB的存在(在所研究的浓度下)不是LDPE热稳定性的决定性因素,但其存在仍然显示出有益的作用。炭黑的性质在控制其单独作为稳定剂的性能以及与HALS和抗氧化剂之间的相互作用(通过吸附-解吸过程以及其他化学相互作用)方面起着一定作用,这通过流动微量量热法(FMC)进行的吸附研究证明了这一点。 )。

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