Javascript must be enabled to continue!
Kinetics of Alkyl Lactate Formation from the Alcoholysis of Poly(Lactic Acid)
View through CrossRef
Alkyl lactates are green solvents that are successfully employed in several industries such as pharmaceutical, food and agricultural. They are considered prospective renewable substitutes for petroleum-derived solvents and the opportunity exists to obtain these valuable chemicals from the chemical recycling of waste poly(lactic acid). Alkyl lactates (ethyl lactate, propyl lactate and butyl lactate) were obtained from the catalysed alcoholysis reaction of poly(lactic acid) with the corresponding linear alcohol. Reactions were catalysed by a Zn complex synthesised from an ethylenediamine Schiff base. The reactions were studied in the 50–130 °C range depending on the alcohol, at autogenous pressure. Arrhenius temperature-dependent parameters (activation energies and pre-exponential factors) were estimated for the formation of the lactates. The activation energies (Ea1, Ea2 and Ea−2) for alcoholysis in ethanol were 62.58, 55.61 and 54.11 kJ/mol, respectively. Alcoholysis proceeded fastest in ethanol in comparison to propanol and butanol and reasonable rates can be achieved in temperatures as low as 50 °C. This is a promising reaction that could be used to recycle end-of-life poly(lactic acid) and could help create a circular production economy.
Title: Kinetics of Alkyl Lactate Formation from the Alcoholysis of Poly(Lactic Acid)
Description:
Alkyl lactates are green solvents that are successfully employed in several industries such as pharmaceutical, food and agricultural.
They are considered prospective renewable substitutes for petroleum-derived solvents and the opportunity exists to obtain these valuable chemicals from the chemical recycling of waste poly(lactic acid).
Alkyl lactates (ethyl lactate, propyl lactate and butyl lactate) were obtained from the catalysed alcoholysis reaction of poly(lactic acid) with the corresponding linear alcohol.
Reactions were catalysed by a Zn complex synthesised from an ethylenediamine Schiff base.
The reactions were studied in the 50–130 °C range depending on the alcohol, at autogenous pressure.
Arrhenius temperature-dependent parameters (activation energies and pre-exponential factors) were estimated for the formation of the lactates.
The activation energies (Ea1, Ea2 and Ea−2) for alcoholysis in ethanol were 62.
58, 55.
61 and 54.
11 kJ/mol, respectively.
Alcoholysis proceeded fastest in ethanol in comparison to propanol and butanol and reasonable rates can be achieved in temperatures as low as 50 °C.
This is a promising reaction that could be used to recycle end-of-life poly(lactic acid) and could help create a circular production economy.
Related Results
Experimental Evaluation of Lactic Acid for Matrix Acidizing of Carbonates
Experimental Evaluation of Lactic Acid for Matrix Acidizing of Carbonates
Summary
To improve the efficiency of standard hydrochloric acid (HCl) stimulation treatments, many alternative acid systems have been developed to mitigate corrosion...
Lactate Administration Increases Skeletal Muscle Synthesis in Mice
Lactate Administration Increases Skeletal Muscle Synthesis in Mice
Purpose
Lactate, secreted by skeletal muscle during exercise, had been known as fatigue substance. However, several physiological roles of lactate have been rev...
Bioinformatics Analysis of Gefitinib or Rapamycin on Inhibiting the Survival of Hela in the Low Glucose and High Lactic Acid Environment
Bioinformatics Analysis of Gefitinib or Rapamycin on Inhibiting the Survival of Hela in the Low Glucose and High Lactic Acid Environment
Objective: To explore on the antitumor effect of gefitinib and rapamycin and possible mechanism in normal glucose and high lactic acid microenvironment. Methods: Hela cells are cul...
Synthesis of lactic acid using hydrogen cyanide extracted from cassava (Manihot esculenta) leaves
Synthesis of lactic acid using hydrogen cyanide extracted from cassava (Manihot esculenta) leaves
Racemic lactic acid (2-hydroxypropanoic acid) has gained interest in the food and non-food industries and in producing biodegradable and biocompatible lactic acid polymers. Althoug...
Comparison of Saccharification and Lactic Acid Production Efficiencies From Chemically and Biologically Pretreated Wheat Straw
Comparison of Saccharification and Lactic Acid Production Efficiencies From Chemically and Biologically Pretreated Wheat Straw
Abstract
Background: In recent times, agricultural waste has been utilized in many industries as an energy source in several processes. Wheat straw, one of the most cost-ef...
Optimization of d-lactic acid production by terrilactibacillus laevilacticus SK5-6 and fermentation process scale up in 30 litre-fermentor
Optimization of d-lactic acid production by terrilactibacillus laevilacticus SK5-6 and fermentation process scale up in 30 litre-fermentor
PLA, which is one of biodegradable plastic stereocomplex is made by block polymerization of optically pure L- and D-lactic acid. With stereoblock structure, heat and mechanical pro...
Kandungan Asam Laktat Dan Total Bakteri Asam Laktat Silase Jerami Jagung (Zea mays. L) Dengan Penambahan Aditif Yang Berbeda
Kandungan Asam Laktat Dan Total Bakteri Asam Laktat Silase Jerami Jagung (Zea mays. L) Dengan Penambahan Aditif Yang Berbeda
ABSTRAK
Penelitian ini bertujuan untuk mengetahui pengaruh kandungan asam laktat dan total bakteri asam laktat silase jerami jagung (Zea mays. L) dengan penambahan aditif yan...
Engineering Flocculation for Improved Tolerance and Production of d-Lactic Acid in Pichia pastoris
Engineering Flocculation for Improved Tolerance and Production of d-Lactic Acid in Pichia pastoris
d-lactic acid, a chiral organic acid, can enhance the thermal stability of polylactic acid plastics. Microorganisms such as the yeast Pichia pastoris, which lack the natural abilit...

