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首页> 外文期刊>Central European Journal of Chemistry >Preparation of low initial expansion temperature expandable graphite and its fame retardancy for LLDPE
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Preparation of low initial expansion temperature expandable graphite and its fame retardancy for LLDPE

机译:低初始膨胀温度可膨胀石墨的制备及其对LLDPE的成名性

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摘要

To get expandable graphite (EG) fame retardant for Liner Low-Density Polyethylene (LLDPE) with low initial expansion temperature and high dilatability, the effects of various factors on dilatability were investigated including the dosages of oxidant KMnO4 , intercalating reagent H2 SO4 , assistant intercalating reagent acetic acid (HAc) and reaction temperature. Feasible conditions were obtained according to the results of L9 (34 ) experiments and single factor experiments. EG with an initial expansion temperature of 160°C and expansion volume of 460 mL g-1 could be prepared according to the mass ratio of material graphite C : KMnO4 : 100% H2 SO4 : HAc = 1.0 : 0.4 : 5.0 : 1.0 (H2 SO4 should be diluted to the mass concentration of 75% before the intercalation reaction); the reaction time was 1.0 hour at 25°C. It was found that reaction temperature and H2 SO4 dosage were the most impor tant infuence factors for dilatability. The limiting oxygen index could be improved to 28.1% by adding 30% of the prepared EG to LLDPE, and the synergistic anti-fame capability of 20% EG with 10% Ammonium polyphosphate (APP) (I) can reach to 33.9%. According to thermal gravimetric and differential thermal analysis results, 70% LLDPE /10% APP (I) /20% EG synergistic anti-fame system shows higher residual carbon and thermal stability.
机译:为了获得低初始膨胀温度和高膨胀性的衬里低密度聚乙烯(LLDPE)的可膨胀石墨(EG)阻燃剂,研究了各种因素对膨胀性的影响,包括氧化剂KMnO4的用量,插层试剂H2 SO4,辅助插层试剂乙酸(HAc)和反应温度。根据L9(34)实验和单因素实验的结果获得了可行的条件。可以根据材料石墨C:KMnO4:100%H2 SO4:HAc = 1.0:0.4:5.0:1.0(H2)的质量比制备初始膨胀温度为160°C且膨胀体积为460 mL g-1的EG在插层反应之前,应将SO4稀释至质量浓度为75%);在25℃下反应时间为1.0小时。发现反应温度和H 2 SO 4用量是影响膨胀性的最重要的影响因素。通过向LLDPE中添加30%的制得的EG,极限氧指数可以提高到28.1%,而20%EG与10%的聚磷酸铵(APP)(I)的协同抗成名能力可以达到33.9%。根据热重分析和差热分析结果,70%LLDPE / 10%APP(I)/ 20%EG协同成名系统显示出更高的残留碳和热稳定性。

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