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Studies of synergism between carbon black and stabilisers in LDPE photodegradation

机译:LDPE光降解中炭黑与稳定剂的协同作用研究

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The interaction between two commercial hindered piperidine compounds, three commercial antioxidants, a secondary anti- oxidant and two types of furnace carbon black (CB) (with a different surface area and surface chemistry) in the photo-oxidation of LDPE film have been studied using FTIR infrared spectroscopy. The nature of stabiliser-CB interactions has also been analysed through the use of flow microcalorimetry. The stabilisers used are, a commercial polymeric HALS, namely Chimassorb 944(r), and Tinuvin 622(r) LD(r), primary and secondary antioxidants, namely Irganox 1010(r) and Irganox 1076(r), Cyandx 1790(r) and Irgafos 168(r). For the fillers, two carbon blacks were chosen with different features as the specific surface particle size and chemistry. During photo-oxidation the interactions are variable, being both antagonistic and synergistic. Generally for the primary anti- oxidants alone their photostabilising effects on the polymer film are low or negligible and can be related to the stability of the additives. However, in the presence of a hindered piperidine light stabiliser no such correlations between polymer and antioxidant stability exist. In most of the cases, antagonistic interactions were found between HALS and the antioxidants. Differences in the performance of the polymeric type of HALS were evidenced, as well as between the CB grades. Less antagonism was found between primary and secondary antioxidants with CB for two-additive formulations. This effect is overcome by a powerful synergistic interaction in three additive formulations. Antagonism was found between one HALS and CB. It is concluded that the nature of the CB plays an important role in controlling their performances as a stabilising agent alone, as well as their interactions with light stabilisers and antioxidants.
机译:研究了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炭黑(CB)(具有不同的表面积和表面化学)在LDPE膜的光氧化中的相互作用。 FTIR红外光谱。稳定剂-CB相互作用的性质也已经通过使用流动微量量热法进行了分析。所用的稳定剂为商用聚合物HALS,即Chimassorb 944(r)和Tinuvin 622(r)LD(r),主要和辅助抗氧化剂,即Irganox 1010(r)和Irganox 1076(r),Cyandx 1790(r)。 )和Irgafos 168(r)。对于填料,选择了两种具有不同特征的炭黑,如比表面粒径和化学性质。在光氧化过程中,相互作用是可变的,既具有拮抗性又具有协同作用。通常对于单独的主要抗氧化剂,它们在聚合物膜上的光稳定作用低或可忽略不计,并且可能与添加剂的稳定性有关。但是,在受阻哌啶光稳定剂的存在下,在聚合物和抗氧化剂稳定性之间不存在这种相关性。在大多数情况下,在HALS和抗氧化剂之间发现了拮抗作用。证明了聚合型HALS的性能以及CB级之间的性能差异。对于两种添加剂配方,在使用CB的一级和二级抗氧化剂之间发现较少的拮抗作用。通过在三种添加剂配方中产生强大的协同相互作用,可以克服这种影响。在一种HALS和CB之间发现了拮抗作用。结论是,炭黑的性质在控制其作为稳定剂的性能以及与光稳定剂和抗氧化剂的相互作用方面起着重要作用。

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