Over the past three decades, the pharmaceutical and agrochemical sectors have embarked on a transformative journey towards greener-by-design processes, firmly rooted in the principles of green chemistry. Building on this foundation, green engineering frameworks have expanded the focus beyond environmental concerns to encompass product quality, economic viability, and the evolving demands of modern healthcare. At the heart of this transformation is continuous and smart manufacturing due to its capacity to reduce raw material use, waste, and energy consumption. While attention has understandably centered on replacing or refining conventional batch operations, the breadth of progress is far wider. Advanced analytics and digitization, as exemplified by AI-driven modeling, are nurturing the rise of “smart factories” that autonomously optimize performance in real time. A prime illustration lies in the purification of fine chemicals, where real-time analytics and advanced process control slash solvent requirements, an acute pollution hotspot, while ensuring consistent product quality. Meanwhile, 3D printing has introduced a genuinely disruptive dimension, challenging traditional notions of scale and location through on-demand, flexible production. In this piece, we explore how these converging technological frontiers lay the groundwork for the patient-centered, eco-conscious pharmaceutical and agrochemical facilities of the future.

Towards greener-by-design fine chemicals. Part 2: technological frontiers / T.A. Gazis, R.I.T.. - In: CHEMICAL SOCIETY REVIEWS. - ISSN 0306-0012. - 55:2(2026 Jan 26), pp. 675-713. [10.1039/d5cs00930h]

Towards greener-by-design fine chemicals. Part 2: technological frontiers

M. Uboldi;A. Melocchi;
2026

Abstract

Over the past three decades, the pharmaceutical and agrochemical sectors have embarked on a transformative journey towards greener-by-design processes, firmly rooted in the principles of green chemistry. Building on this foundation, green engineering frameworks have expanded the focus beyond environmental concerns to encompass product quality, economic viability, and the evolving demands of modern healthcare. At the heart of this transformation is continuous and smart manufacturing due to its capacity to reduce raw material use, waste, and energy consumption. While attention has understandably centered on replacing or refining conventional batch operations, the breadth of progress is far wider. Advanced analytics and digitization, as exemplified by AI-driven modeling, are nurturing the rise of “smart factories” that autonomously optimize performance in real time. A prime illustration lies in the purification of fine chemicals, where real-time analytics and advanced process control slash solvent requirements, an acute pollution hotspot, while ensuring consistent product quality. Meanwhile, 3D printing has introduced a genuinely disruptive dimension, challenging traditional notions of scale and location through on-demand, flexible production. In this piece, we explore how these converging technological frontiers lay the groundwork for the patient-centered, eco-conscious pharmaceutical and agrochemical facilities of the future.
Settore CHEM-08/A - Tecnologia, socioeconomia e normativa dei medicinali e dei prodotti per il benessere e per la salute
   MERGING SUSTAINABLE AND DIGITAL CHEMICAL TECHNOLOGIESFOR THE DEVELOPMENT OF GREENER-BY-DESIGN PHARMACEUTICALS
   SusPharma
   European Commission
   Horizon Europe Framework Programme - HORIZON Research and Innovation Actions
   101057430

   Single-Atom Catalysts for a New Generation of Chemical Processes: from Fundamental Understanding to Interface Engineering
   SAC_2.0
   European Commission
   Horizon Europe Framework Programme - European Research Council - HORIZON ERC Grants
   101075832

   Green and digital continuous-flow pharmaceutical manufacturing
   GreenDigiPharma
   European Commission
   Horizon Europe Framework Programme - HORIZON TMA MSCA Doctoral Networks
   101073089

   SOlid frustrated-Lewis-pair single-atom catalysts for efficient photoCATalytic amidation processes
   SOLCAT
   European Commission
   Horizon Europe Framework Programme - HORIZON TMA MSCA Postdoctoral Fellowships - European Fellowships
   101152890
26-gen-2026
20-nov-2025
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1270915
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