Khalaj Mohammadreza, Kamali Mohammadreza, Aminabhavi Tejraj M, Costa M Elisabete V, Dewil Raf, Appels Lise, Capela Isabel
Department of Environment and Planning, Center for Environmental and Marine Studies, CESAM,University of Aveiro, 3810-193, Aveiro, Portugal; Department of Materials and Ceramics Engineering, Aveiro Institute of Materials, CICECO, University of Aveiro, 3810-193, Aveiro, Portugal.
Center for Environmental and Marine Studies, CESAM, University of Aveiro, 3810-193, Aveiro, Portugal; KU Leuven, Department of Chemical Engineering, Process and Environmental Technology Lab, J. De Nayerlaan 5, 2860, Sint-Katelijne-Waver, Belgium.
Environ Res. 2023 Mar 1;220:115249. doi: 10.1016/j.envres.2023.115249. Epub 2023 Jan 9.
Engineered nanomaterials (ENMs) have been introduced into the market for a wide range of applications. As per the literature review, the fabrication of new generations of ENMs is starting to comply with environmental, economic, and social criteria in addition to technical aspects to meet sustainability criteria. At this stage, identification of the appropriate criteria for the synthesis of ENMs is critical because the technologies already developed at the lab scales are being currently transferred to pilot and full scales. Hence, the development of scientific-based methodologies to identify, screen, and prioritize the involved criteria is highly necessary. In the present manuscript, a fuzzy-Delphi methodology is adopted to identify the main criteria and sub-criteria encompassing the sustainable fabrication of ENMs, and to explore the "degree of consensus" among the experts on the relative importance of the mentioned criteria. The "health and safety risks" respecting the equipment and the materials, solvent used, and availability of "green experts" were identified as the most critical criteria. Furthermore, although all the criteria were identified as being important, some criteria, such as "solvent" and "raw materials cost", raised a lower degree of consensus, indicating that various "degrees of uncertainties" still exist regarding the level of importance of the studied criteria.
工程纳米材料(ENMs)已被引入市场用于广泛的应用。根据文献综述,新一代ENMs的制造除了要满足技术方面的要求以符合可持续性标准外,还开始遵循环境、经济和社会标准。在这个阶段,确定ENMs合成的适当标准至关重要,因为目前实验室规模已开发的技术正在向中试和全规模转移。因此,非常有必要开发基于科学的方法来识别、筛选和排列相关标准的优先级。在本手稿中,采用模糊德尔菲法来确定涵盖ENMs可持续制造的主要标准和子标准,并探讨专家们对上述标准相对重要性的“共识程度”。涉及设备和材料、所用溶剂以及“绿色专家”可用性的“健康和安全风险”被确定为最关键的标准。此外,尽管所有标准都被认为很重要,但一些标准,如“溶剂”和“原材料成本”,达成的共识程度较低,这表明在所研究标准的重要性水平方面仍存在各种“不确定程度”。