Furxhi Irini, Perucca Massimo, Baldi Giovanni, Dami Valentina, Cioni Andrea, Koivisto Antti Joonas, Bengalli Rossella, Mantecca Paride, Motta Giulia, Carriere Marie, Nicosia Alessia, Ravegnani Fabrizio, Burrueco-Subirà David, Vázquez-Campos Socorro, Lahive Elma, de Ipiña Jesús Lopez, Oliveira Juliana, Cronin Patrick, Blosi Magda, Costa Anna
CNR-ISSMC Istituto di Scienza e Tecnologia dei Materiali Ceramici, Via Granarolo, 64, Faenza, RA 48018, Italy.
Project HUB360C.so Laghi 22, 10051 Avigliana, Turin, Italy.
Comput Struct Biotechnol J. 2024 Oct 17;25:269-280. doi: 10.1016/j.csbj.2024.10.001. eCollection 2024 Dec.
This report, the second of its kind from ASINA project, aims at providing a roadmap with quantitative metrics for Safe(r) and (more) Sustainable by Design (SSbD) solutions for titanium dioxide (TiO) nanomaterials (NMs). We begin with a brief description of ASINA's methodology across the product lifecycle, highlighting the quantitative elements, such as the Key Performance Indicators (KPIs). We then propose a decision support tool for implementing SSbD objectives across various dimensions-functionality, cost, environment, and human health safety. This is followed by the main innovative findings, a consolidation of the technical processes involved, design rationales, experimental procedures, tools and models, used and developed, to deliver photocatalytic depolluting surfaces by spray- finishing techniques based on TiO NMs formulations. The roadmap is thoroughly described to inform similar projects through the integration of KPIs into SSbD methodologies, fostering data-driven decision-making. While specific results are beyond this report's scope, its primary aim is to demonstrate the roadmap (SSbD know-how) and promote SSbD-oriented innovation in nanotechnology. Finally, we provide a comparison of the approaches followed in two case studies that target different industrial sectors. This case-specific SSbD assessments provide a concrete exemplification of the addressed methodology that contributes to the efforts towards attaining a common roadmap for implementing SSbD solutions aligned with the EU's Green Deal objectives.
本报告是ASINA项目的第二篇此类报告,旨在为二氧化钛(TiO₂)纳米材料(NMs)的安全和(更)可持续设计(SSbD)解决方案提供一个带有量化指标的路线图。我们首先简要描述ASINA在产品生命周期中的方法,突出关键绩效指标(KPI)等量化要素。然后,我们提出一个决策支持工具,用于在功能、成本、环境和人类健康安全等各个维度实现SSbD目标。接下来是主要的创新成果,整合了所涉及的技术流程、设计原理、实验程序、使用和开发的工具及模型,以通过基于TiO₂纳米材料配方的喷涂技术实现光催化去污表面。通过将KPI整合到SSbD方法中,全面描述路线图,为类似项目提供参考,促进数据驱动的决策制定。虽然具体结果超出了本报告的范围,但其主要目的是展示路线图(SSbD专业知识)并推动纳米技术领域以SSbD为导向的创新。最后,我们比较了针对不同工业部门的两个案例研究中所采用的方法。这种针对具体案例的SSbD评估为所讨论的方法提供了具体例证,有助于努力实现与欧盟绿色协议目标相一致的实施SSbD解决方案的共同路线图。