What Phenomena Happen During Pyrolysis of Plastic? FTIR AND GC-MS Analysis of Pyrolyzed Low Linear Density Polyethylene (LLDPE) Polymer Particles Completed with Bibliometric Research Trend and Pyrolysis Chemical Reaction Mechanism

Asep Bayu Dani Nandiyanto, Riri Noor Sucianto, Salsa Rahmita Matildha, Fauziyyah Zayyan Nur, Teguh Kurniawan, Muhammad Roil Bilad, Nor Azwadi
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Abstract

This research aims to determine the compounds produced from the pyrolyzed Low Linear Density Polyethylene (LLDPE) using Fourier Transform Infrared (FTIR) and Gas Chromatography-Mass Spectroscopy (GC MS). We used pyrolysis of 985 g of 2-mm diameter LLDPE plastic ore at a temperature between 192-194°C for 135 min using a batch reactor (length x width x height = 35 cm x 24 cm x 44 cm) equipped with an outlet connected to two condensers (24°C). To ensure the chemical results, the reactor was connected in series to condensers 1 and 2. The results obtained in condenser 1 were 3 mL of 2-phase liquid with a strong odor. The upper fluid is yellow, and the lower fluid is brown. In condenser 2 (connected directly to condenser 1), 4 mL of yellow single-phase liquid was produced with a strong odor. The liquid obtained from the pyrolysis process was then analyzed by FTIR and GC-MS. FTIR results on both samples showed that the samples contained the functional groups O-H, CH₂, and C=O. The GC-MS results on condenser sample 2 showed that the pyrolysis product contained acetone compounds. This confirmed that pyrolysis caused chemical structural changes in LLDPE due to LLDPE chain bond-breaking reactions, producing many smaller chemical compounds. Additionally, some oxidation happens, which is due to the oxygen content in the reactor. This study provides new insights into the LLDPE pyrolysis mechanism and the physical and chemical properties of the liquid resulting from the pyrolysis process.
塑料热解过程中会发生哪些现象?热解低线性密度聚乙烯 (LLDPE) 聚合物颗粒的傅立叶变换红外光谱和气相色谱-质谱分析》完成,附文献计量学研究趋势和热解化学反应机理
本研究旨在利用傅立叶变换红外光谱法(FTIR)和气相色谱-质谱法(GC MS)确定热解低线性密度聚乙烯(LLDPE)产生的化合物。我们使用一个间歇式反应器(长 x 宽 x 高 = 35 厘米 x 24 厘米 x 44 厘米),在 192-194°C 的温度下对 985 克直径为 2 毫米的 LLDPE 塑料矿石进行了 135 分钟的热解,该反应器配有一个出口,连接两个冷凝器(24°C)。为确保化学结果,反应器串联到冷凝器 1 和 2。在冷凝器 1 中得到的结果是 3 毫升带有强烈气味的两相液体。上层液体为黄色,下层液体为棕色。冷凝器 2(与冷凝器 1 直接相连)产生了 4 毫升黄色单相液体,气味强烈。随后,对热解过程中得到的液体进行了傅立叶变换红外光谱和气相色谱-质谱分析。两个样品的傅立叶变换红外光谱结果表明,样品中含有官能团 O-H、CH₂ 和 C=O。冷凝器样品 2 的气相色谱-质谱分析结果显示,热解产物中含有丙酮化合物。这证实,由于 LLDPE 链键断裂反应,热解引起了 LLDPE 化学结构的变化,产生了许多较小的化合物。此外,由于反应器中的氧气含量,还发生了一些氧化反应。这项研究为了解 LLDPE 热解机理以及热解过程中产生的液体的物理和化学性质提供了新的视角。
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CiteScore
1.30
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