TU Dortmund University, Department of Chemistry and Chemical Biology, Otto-Hahn-Str. 6, 44227, Dortmund, Germany.
Angew Chem Int Ed Engl. 2024 Jun 17;63(25):e202403833. doi: 10.1002/anie.202403833. Epub 2024 May 14.
Detergent chemistry enables applications in the world today while harming safe operating spaces that humanity needs for survival. Aim of this review is to support a holistic thought process in the design of detergent chemistry. We harness the planetary boundary concept as a framework for literature survey to identify progresses and knowledge gaps in context with detergent chemistry and five planetary boundaries that are currently transgressed, i.e., climate, freshwater, land system, novel entities, biosphere integrity. Our survey unveils the status of three critical challenges to be addressed in the years to come, including (i) the implementation of a holistically, climate-friendly detergent industry; (ii) the alignment of materialistic and social aspects in creating technical solutions by means of sustainable chemistry; (iii) the development of detergents that serve the purpose of applications but do not harm the biosphere in their role as novel entities. Specifically, medically relevant case reports revealed that even the most sophisticated detergent design cannot sufficiently accelerate drug discovery to outperform the antibiotic resistance development that detergents simultaneously promote as novel entities. Safe operating spaces that humanity needs for its survival may be secured by directing future efforts beyond sustainable chemistry, resource efficiency, and net zero emission targets.
表面活性剂化学在当今世界有广泛的应用,但也危害了人类生存所必需的安全空间。本综述旨在支持在设计表面活性剂化学时的整体思维过程。我们利用行星边界概念作为文献调查的框架,以确定在表面活性剂化学以及目前已经被突破的五个行星边界(气候、淡水资源、土地系统、新型实体、生物完整性)的背景下的进展和知识差距。我们的调查揭示了未来几年需要解决的三个关键挑战的现状,包括:(i)实施全面的、对气候友好的表面活性剂工业;(ii)通过可持续化学手段,在创造技术解决方案时协调物质和社会方面;(iii)开发既能满足应用目的又不会因其作为新型实体而危害生物多样性的表面活性剂。具体而言,医学相关案例报告显示,即使是最复杂的表面活性剂设计也不能充分加速药物发现,以超越表面活性剂作为新型实体同时促进的抗生素耐药性发展。通过将未来的努力从可持续化学、资源效率和净零排放目标上转移,人类可能会获得其生存所必需的安全空间。