Low molecular weight (LMW) esters, like ethyl acetate, methyl formate or butyl acetate, are widespread bulk chemicals in many industries. Each of them is currently produced in huge amounts (millions of tons per year scale) starting from fossil-based feedstock and they are used mainly because of their low toxicity and complete biodegradability. Energy transition is just half of the story on the path of fighting climate change: 45% of the global greenhouse gas emissions are caused by the production and use of all the products, materials and food necessary for modern human life. If the world is to reach its climate goals, there is the need to leave underground a significant proportion of the fossil feedstock and minimize environmental impacts of chemical manufacturing. This is the reason why a lot of efforts have been made to find novel routes for LMW esters production starting from renewable raw materials (e.g. biomasses or off-gases) and exploiting low-impact manufacturing, such as microbial fermentation or enzymatic reactions. This review reports the most significant patents, in the field of white biotechnology, that will hopefully lead to the commercialization of bio-based LMW esters as well as novel strategies, current problems to be solved, newer technologies, and some patent applications aiming at possible future developments.Low molecular weight (LMW) esters are widespread bulk chemicals in many industries. This review presents the most significant patents and patent applications related to the biotechnological production of LMW esters.

Zago, M., Branduardi, P., Serra, I. (2024). Towards biotechnological production of bio-based low molecular weight esters: a patent review. RSC ADVANCES, 14(40), 29472-29489 [10.1039/d4ra04131c].

Towards biotechnological production of bio-based low molecular weight esters: a patent review

Zago M.
Primo
;
Branduardi P.
Secondo
;
Serra I.
Ultimo
2024

Abstract

Low molecular weight (LMW) esters, like ethyl acetate, methyl formate or butyl acetate, are widespread bulk chemicals in many industries. Each of them is currently produced in huge amounts (millions of tons per year scale) starting from fossil-based feedstock and they are used mainly because of their low toxicity and complete biodegradability. Energy transition is just half of the story on the path of fighting climate change: 45% of the global greenhouse gas emissions are caused by the production and use of all the products, materials and food necessary for modern human life. If the world is to reach its climate goals, there is the need to leave underground a significant proportion of the fossil feedstock and minimize environmental impacts of chemical manufacturing. This is the reason why a lot of efforts have been made to find novel routes for LMW esters production starting from renewable raw materials (e.g. biomasses or off-gases) and exploiting low-impact manufacturing, such as microbial fermentation or enzymatic reactions. This review reports the most significant patents, in the field of white biotechnology, that will hopefully lead to the commercialization of bio-based LMW esters as well as novel strategies, current problems to be solved, newer technologies, and some patent applications aiming at possible future developments.Low molecular weight (LMW) esters are widespread bulk chemicals in many industries. This review presents the most significant patents and patent applications related to the biotechnological production of LMW esters.
Articolo in rivista - Articolo scientifico
Small ester; bio-based chemical; lipase; esterase; alcohol acyltransferase; Baeyer Villiger monooxygenase
English
18-set-2024
2024
14
40
29472
29489
open
Zago, M., Branduardi, P., Serra, I. (2024). Towards biotechnological production of bio-based low molecular weight esters: a patent review. RSC ADVANCES, 14(40), 29472-29489 [10.1039/d4ra04131c].
File in questo prodotto:
File Dimensione Formato  
Zago-2024-RSC Advances-VoR.pdf

accesso aperto

Descrizione: This article is Open Access Creative Commons BY-NC license
Tipologia di allegato: Publisher’s Version (Version of Record, VoR)
Licenza: Creative Commons
Dimensione 1.02 MB
Formato Adobe PDF
1.02 MB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/517959
Citazioni
  • Scopus 0
  • ???jsp.display-item.citation.isi??? 0
Social impact