Binnemans Koen, Jones Peter Tom
Department of Chemistry, KU Leuven, Celestijnenlaan 200F, Box 2404, B-3001 Heverlee, Belgium.
Department of Materials Engineering, KU Leuven, Kasteelpark Arenberg 44, P.O. box 2450, B-3001 Heverlee, Belgium.
J Sustain Metall. 2025;11(3):2157-2174. doi: 10.1007/s40831-025-01119-x. Epub 2025 May 22.
The Lindy Effect can be formulated as: . In this paper, we examine the historical aspects of hydrometallurgy through the lens of the Lindy Effect, aiming to understand why research efforts by academic and industrial groups seldom result in new commercial hydrometallurgical processes. We argue that many researchers, particularly in academia, fail to recognize that mining and extractive metallurgy are economic activities. Companies engaged in mining, extraction, and refining of metals must generate profits to sustain their operations. The technical feasibility of a hydrometallurgical process does not inherently guarantee its economic viability. The industrial installations in a hydrometallurgical plant are highly capital-intensive. We will demonstrate that for the development of a robust hydrometallurgical process that could become Lindy-proof in the future, it is crucial to avoid fatal flaws arising from intrinsic problems with the chemical reactions behind the process. The concept of circular hydrometallurgy and its twelve principles provides a valuable framework for assessing the robustness of new hydrometallurgical processes. A paradigm shift in hydrometallurgy is anticipated with the widespread availability of inexpensive, renewable energy. High energy costs will no longer be a prohibitive factor, allowing the development of energy-intensive processes that offer significant chemical advantages. This shift may even lead to a reconsideration of older hydrometallurgical processes that were previously deemed too energy-intensive.
……在本文中,我们通过林迪效应的视角审视湿法冶金的历史方面,旨在理解为何学术团体和产业集团的研究工作很少能产生新的商业湿法冶金工艺。我们认为,许多研究人员,尤其是学术界的研究人员,没有认识到采矿和提取冶金是经济活动。从事金属采矿、提取和精炼的公司必须盈利才能维持运营。湿法冶金工艺的技术可行性本身并不能保证其经济可行性。湿法冶金厂的工业装置资本密集度很高。我们将证明,对于开发一种未来可能不受林迪效应影响的强大湿法冶金工艺而言,避免因工艺背后化学反应的内在问题而产生致命缺陷至关重要。循环湿法冶金的概念及其十二条原则为评估新的湿法冶金工艺的稳健性提供了一个有价值的框架。随着廉价可再生能源的广泛可得,预计湿法冶金将发生范式转变。高昂的能源成本将不再是一个阻碍因素,这使得开发具有显著化学优势的能源密集型工艺成为可能。这种转变甚至可能导致重新审视以前被认为能源密集度过高的旧湿法冶金工艺。