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首页> 外文期刊>Journal of Achievements in Materials and Manufacturing Engineering >Properties of polylactide, obtained from lactic acid in the process of lactic fermentation of lactose in whey post production (waste)
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Properties of polylactide, obtained from lactic acid in the process of lactic fermentation of lactose in whey post production (waste)

机译:从乳清乳清乳清乳清乳清乳清乳酸过程中从乳酸获得的性质(废物)

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Purpose: This publication provides a description of RDC Glokor's own research into the effectiveness of the lactic fermentation process of lactose, lactic acid concentration and polylactide (PLA) production by ring-opening polymerization obtained from the condensation of two molecules of lactic acid. Furthermore, this publication sets out to determine potential applications of the PLA as a commercial material with a selection of thermal properties.Design/methodology/approach: In the described research works, a lactic fermentation process was used in which lactose is converted to lactic acid with the participation of Lactic Acid Bacteria. Polylactide was obtained indirectly by Ring Opening Polymerization and by direct polymerization, straight from lactic acid, omitting the intermediate stages. Next, the obtained lactide and polylactide were examined by spectroscopic methods (IR, NMR) to determine their purity. Thermal methods (TG, DSC) to determine thermoplastic properties, i.e. softening point, decomposition temperature and glass transition temperature.Findings: Obtained from waste whey, PLA and its copolymers are excellent biodegradable polymers that have the potential to be used in medicine as resorbable surgical strands, biopolymers for implant production, as well as in many industries including for the production of biodegradable bottles and disposable packaging, 3D printer cartridges.Research limitations/implications: The research on lactic acid and lactide polymerization described in this article is still a new issue that requires further research to optimize PLA processes with industry-specific thermoplastic and physicochemical properties.Originality/value: In the basic waste processing of milk, there is a large volume of whey sour, which is ecologically dangerous for waste treating. Due to the high content of lactose (up to 6%) this waste can be used as a raw material in the lactic fermentation process in which lactose is converted to lactic acid with the participation of lactic acid bacteria. Lactic acid can be concentrated and subjected to a dehydration process to lactide, which in the final stage is subjected to the process of ring-opening polymerization in order to produce biodegradable polylactide. The described process of carrying out the lactose contained in PLA whey is an innovative way to obtain a biodegradable usable polymer, which can be used to replace plastics such as polypropylene and polyethylene.
机译:目的:本出版物提供了通过从两个乳酸的缩合所获得的开环聚合的开环聚合来描述RDC Glokor对乳糖,乳酸浓度和聚乳糖(PLA)产生的有效性的研究。此外,本出版物列出了以确定PLA作为具有热性能的商业材料的潜在应用。在所述研究工作中,使用乳酸发酵过程,使乳糖转化为乳酸随着乳酸菌的参与。通过环开口聚合间接地通过环开口聚合并通过直接聚合,直接从乳酸,省略中间阶段来聚合聚酰胺。接下来,通过光谱法(IR,NMR)检查所获得的丙交酯和聚物以确定它们的纯度。热方法(Tg,DSC)以确定热塑性性能,即软化点,分解温度和玻璃化转变温度。柴油乳清,PLA及其共聚物是优异的可生物降解的聚合物,其具有可再用的药物可再用股线,用于植入生产的生物聚合物,以及许多行业,包括生产可生物降解的瓶子和一次性包装,3D打印机墨盒。研究限制/影响:本文中描述的乳酸和丙交酯聚合的研究仍然是一个新问题这需要进一步研究,优化PLA流程,具有特定的工业热塑性和物理化学性质。物流/价值:在牛奶的基本废物加工中,有大量的乳清酸,这对于废物处理是生态危险的。由于乳糖的高含量(高达6%),该废物可用作乳酸发酵过程中的原料,其中乳糖随乳酸菌的参与转化为乳酸。可以浓缩乳酸并对脱水过程进行丙交酯,其在最终阶段进行开环聚合方法,以产生可生物降解的聚丙酯。进行PLA乳清中含有的乳糖的所述方法是获得可生物降解的可用聚合物的创新方法,其可用于代替聚丙烯和聚乙烯等塑料。

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