Green Production of a High-Value Branched-Chain Diester: Optimization Based on Operating Conditions and Economic and Sustainability Criteria

Branched-chain esters (BCEs) have found a large number of applications in cosmetics. Among them, neopentyl glycol dilaurate (NPGDL) stands out as an emollient, emulsifier, and skin-conditioning agent. This work presents the synthesis of NPGDL in a solvent-free medium using the two most common immobi...

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Published in:Applied Sciences
Main Authors: Claudia Montiel, Silvia Gimeno-Martos, Salvadora Ortega-Requena, Mar Serrano-Arnaldos, Fuensanta Máximo, Josefa Bastida
Format: Text
Language:English
Published: Multidisciplinary Digital Publishing Institute 2023
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Online Access:https://doi.org/10.3390/app13106177
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author Claudia Montiel
Silvia Gimeno-Martos
Salvadora Ortega-Requena
Mar Serrano-Arnaldos
Fuensanta Máximo
Josefa Bastida
author_facet Claudia Montiel
Silvia Gimeno-Martos
Salvadora Ortega-Requena
Mar Serrano-Arnaldos
Fuensanta Máximo
Josefa Bastida
author_sort Claudia Montiel
collection MDPI Open Access Publishing
container_issue 10
container_start_page 6177
container_title Applied Sciences
container_volume 13
description Branched-chain esters (BCEs) have found a large number of applications in cosmetics. Among them, neopentyl glycol dilaurate (NPGDL) stands out as an emollient, emulsifier, and skin-conditioning agent. This work presents the synthesis of NPGDL in a solvent-free medium using the two most common immobilized lipases: Novozym® 40086 (Rml) and Novozym® 435 (CalB). Results proved that the former biocatalyst has lower activity and certain temperature deactivation, although conversions ≥ 90% were obtained at 60 °C and 7.5% of catalyst. On the other hand, optimal reaction conditions for Novozym® 435 are 3.75% w/w of the immobilized derivative at 80 °C. Under optimal conditions, the process productivities were 0.105 and 0.169 kg NPGDL/L h, respectively. In order to select the best conditions for NPGDL production, studies on the reuse of the derivative and cost estimation have been performed. Economic study shows that biocatalytic processes can be competitive when lipases are reused for five cycles, yielding biocatalyst productivities of 56 and 122 kg NPGDL/kg biocatalyst using Novozym® 40086 and Novozym® 435, respectively. The final choice will be based on both economic and sustainability criteria. Green metric values using both biocatalysts are similar but the product obtained using Novozym® 40086 is 20% cheaper, making this alternative the best option.
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spelling ftmdpi:oai:mdpi.com:/2076-3417/13/10/6177/ 2025-01-16T19:35:14+00:00 Green Production of a High-Value Branched-Chain Diester: Optimization Based on Operating Conditions and Economic and Sustainability Criteria Claudia Montiel Silvia Gimeno-Martos Salvadora Ortega-Requena Mar Serrano-Arnaldos Fuensanta Máximo Josefa Bastida agris 2023-05-18 application/pdf https://doi.org/10.3390/app13106177 EN eng Multidisciplinary Digital Publishing Institute Applied Biosciences and Bioengineering https://dx.doi.org/10.3390/app13106177 https://creativecommons.org/licenses/by/4.0/ Applied Sciences; Volume 13; Issue 10; Pages: 6177 Candida antarctica lipase Rhizomucor miehei lipase solvent-free neopentyl glycol dilaurate esterification economic assessment green metrics Text 2023 ftmdpi https://doi.org/10.3390/app13106177 2023-08-01T10:07:25Z Branched-chain esters (BCEs) have found a large number of applications in cosmetics. Among them, neopentyl glycol dilaurate (NPGDL) stands out as an emollient, emulsifier, and skin-conditioning agent. This work presents the synthesis of NPGDL in a solvent-free medium using the two most common immobilized lipases: Novozym® 40086 (Rml) and Novozym® 435 (CalB). Results proved that the former biocatalyst has lower activity and certain temperature deactivation, although conversions ≥ 90% were obtained at 60 °C and 7.5% of catalyst. On the other hand, optimal reaction conditions for Novozym® 435 are 3.75% w/w of the immobilized derivative at 80 °C. Under optimal conditions, the process productivities were 0.105 and 0.169 kg NPGDL/L h, respectively. In order to select the best conditions for NPGDL production, studies on the reuse of the derivative and cost estimation have been performed. Economic study shows that biocatalytic processes can be competitive when lipases are reused for five cycles, yielding biocatalyst productivities of 56 and 122 kg NPGDL/kg biocatalyst using Novozym® 40086 and Novozym® 435, respectively. The final choice will be based on both economic and sustainability criteria. Green metric values using both biocatalysts are similar but the product obtained using Novozym® 40086 is 20% cheaper, making this alternative the best option. Text Antarc* Antarctica MDPI Open Access Publishing Applied Sciences 13 10 6177
spellingShingle Candida antarctica lipase
Rhizomucor miehei lipase
solvent-free
neopentyl glycol dilaurate
esterification
economic assessment
green metrics
Claudia Montiel
Silvia Gimeno-Martos
Salvadora Ortega-Requena
Mar Serrano-Arnaldos
Fuensanta Máximo
Josefa Bastida
Green Production of a High-Value Branched-Chain Diester: Optimization Based on Operating Conditions and Economic and Sustainability Criteria
title Green Production of a High-Value Branched-Chain Diester: Optimization Based on Operating Conditions and Economic and Sustainability Criteria
title_full Green Production of a High-Value Branched-Chain Diester: Optimization Based on Operating Conditions and Economic and Sustainability Criteria
title_fullStr Green Production of a High-Value Branched-Chain Diester: Optimization Based on Operating Conditions and Economic and Sustainability Criteria
title_full_unstemmed Green Production of a High-Value Branched-Chain Diester: Optimization Based on Operating Conditions and Economic and Sustainability Criteria
title_short Green Production of a High-Value Branched-Chain Diester: Optimization Based on Operating Conditions and Economic and Sustainability Criteria
title_sort green production of a high-value branched-chain diester: optimization based on operating conditions and economic and sustainability criteria
topic Candida antarctica lipase
Rhizomucor miehei lipase
solvent-free
neopentyl glycol dilaurate
esterification
economic assessment
green metrics
topic_facet Candida antarctica lipase
Rhizomucor miehei lipase
solvent-free
neopentyl glycol dilaurate
esterification
economic assessment
green metrics
url https://doi.org/10.3390/app13106177