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Stability of cross-linked acetic acid lignin-containing polyurethane

机译:交联乙酸含木质素聚氨酯的稳定性

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The thermo-oxidative stability of acetic acid lignin-containing polyurethane (LPU) that contains cross-linking agents, such as 1-aminopropyltriethoxy-silane (APTS) and/or trimethylolpropane (TMP) was investigated based on the thermogravimetric analysis (TGA) method, their kinetic parameters in the thermo-oxidative process was determined. FT-IR certified the occurrence of interaction between lignin and polyurethane (PU). It was found that continuous membrane can be formed when lignin concentration was 43.3%, but rupture took place when it increased to 50%. When the degradation was performed in nitrogen, TG and dynamic differential thermogravimetry (DTG) results demonstrated that the PU underwent three stages of degradation while the LPU involved one main degradation stage with a shoulder, and the degradation stability increased with the increase in the lignin concentration and PEG length. It was also found that the addition of a cross-linking agent is beneficial to the improvement of thermal stability and, in particular, APTS gave the best thermal stability for the LPU produced, among the cross-linking agents tested. Furthermore, LPU exhibited multistage degradation process in air and displayed higher thermo-oxidative stability than PU. At the same time, the kinetic study showed that LPU modified with APTS exhibited higher activation energy than LPU modified with TMP. And the maximum activation energy was found for the sample modified with the simultaneous addition of APTS and TMP.
机译:基于热重分析(TGA)方法研究了含有交联剂如1-氨基丙基三乙氧基硅烷(APTS)和/或三羟甲基丙烷(TMP)的含乙酸木质素的聚氨酯(LPU)的热氧化稳定性,确定了它们在热氧化过程中的动力学参数。 FT-IR证明了木质素和聚氨酯(PU)之间相互作用的发生。发现当木质素浓度为43.3%时可以形成连续的膜,但是当其增加到50%时发生破裂。当在氮气中进行降解时,TG和动态差示热重分析(DTG)结果表明,PU经历了三个降解阶段,而LPU参与了一个带有肩部的主要降解阶段,并且降解稳定性随木质素浓度的增加而增加。和PEG长度。还发现添加交联剂有利于改善热稳定性,并且特别地,在所测试的交联剂中,APTS为生产的LPU提供了最佳的热稳定性。此外,LPU在空气中表现出多级降解过程,并且比PU表现出更高的热氧化稳定性。同时,动力学研究表明,用APTS改性的LPU比用TMP改性的LPU具有更高的活化能。同时发现了同时加入APTS和TMP改性的样品的最大活化能。

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