聚乳酸(PLA)及其制品的低温热解研究

Q4 Energy Paliva Pub Date : 2023-06-30 DOI:10.35933/paliva.2023.02.03
O. Bičáková, J. Cihlař, P. Straka
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引用次数: 0

摘要

聚乳酸(PLA)是不可生物降解的,因此有必要寻找有效处理其废物的方法。处理废pla的一个重要方法是低温缓慢热解,主要提供石油和能源气。PLA热解在温度高达420°C时提供近50 wt.%的油和21-23 wt.%的能量气体,一氧化碳含量高于90 vol.%。420°C以上的温度不能再提供可接受的油收率,同时由于低沸点醛和酮的释放,损失更高。所获得的石油和天然气显示出可接受的热值,作为将其用作替代燃料的基础。由于其成分,石油也可被视为有价值的化学品(四氢呋喃、三聚甲醛、环戊酮和醚)的来源,也可被视为工业应用以及最近生物医学用途的一氧化碳气体来源。即使是1:1比例高PLA的塑料废混合物,也可以通过缓慢的低温热解进行高效处理。热解混合物的固体碳质残渣和油的产率非常相似(38 wt.%和35 wt.%)。固相组成与低温热解的聚乳酸相差不大。虽然PLA:LPO组分的比例为1:1,但CO的含量降低了约20 vol.%,而CO2和较轻的CO2 - c5则减少了。
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Low temperature pyrolysis of polylactic acid (PLA) and its products
The fact that polylactic acid (PLA) is not biodegradable makes it necessary to find the methods of effective treatment of its waste. A significant method of processing waste PLA can be slow low-temperature pyrolysis, providing mostly oil and energy gas. The PLA pyrolysis provides almost 50 wt.% oil and 21–23 wt.% energy gas with a high carbon monoxide content above 90 vol.% at temperatures up to 420 °C. The temperatures above 420 °C do not give acceptable yields of oil anymore, and at the same time there are higher losses due to the release of low boiling aldehydes and ketones. The obtained oil and gas showed an acceptable calorific value as a basis for their use as substitute fuels. Due to its composition, oil can also be considered as a source of valuable chemicals (tetrahydrofuran, paraldehyde, cyclopentanone and ether) and gas as a source of carbon monoxide for industrial applications and, more recently, for biomedical use. Even plastic waste mixtures with a high proportion of PLA in a 1:1 ratio can be efficiently processed by slow low-temperature pyrolysis. The pyrolyzed mixture showed very similar yields of solid carbonaceous residue and oil (38 wt.% and 35 wt.%). The composition of the solid phase was only minimally different from the low-temperature pyrolysis of PLA. Although the ratio of PLA:LPO components was 1:1, the CO content decreased by ca. 20 vol.% at the expense of CO2 and lighter C2-C5.
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来源期刊
Paliva
Paliva Earth and Planetary Sciences-Geotechnical Engineering and Engineering Geology
CiteScore
0.50
自引率
0.00%
发文量
15
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