Rangel-Buitrago Nelson, Galgani Francois, Nicoll Kathleen, Neal William J
Programa de Física, Facultad de Ciencias Básicas, Universidad del Atlántico, Barranquilla, Atlántico, Colombia.
Unité Ressources marines en Polynésie Francaise, Institut français de Recherche Pour l'Exploitation de la Mer (Ifremer), BP 49, Vairao, Tahiti, French Polynesia.
Sci Total Environ. 2024 Nov 10;950:175366. doi: 10.1016/j.scitotenv.2024.175366. Epub 2024 Aug 8.
This paper attempts to reevaluate traditional geological classifications from sedimentology to stratigraphy as well as the concept of the Holocene/Anthropocene epochs, characterized by the widespread integration of plastics into sedimentary environments. This paper presents a set of novel insights into the interactions between synthetic materials and natural geological processes. We illustrate how plastics not only disrupt sedimentary dynamics and alter the composition of rocks and soils, creating new forms of pollution and also pose escalated threats to marine biodiversity through altered erosion, transport, and deposition patterns. We highlight the emerging role of plastics as distinctive stratigraphic markers, providing a different perspective on human environmental impacts. This analysis challenges the traditional perception of rocks as solely natural, inorganic formations and highlights the critical need for interdisciplinary approaches that meld geology, chemistry, and environmental science. The document calls for intensified research to develop effective strategies for managing these impacts and promotes innovative conservation techniques that address both the symptoms and sources of plastic pollution.
本文试图重新评估从沉积学到地层学的传统地质分类,以及全新世/人类世时代的概念,其特征是塑料广泛融入沉积环境。本文提出了一系列关于合成材料与自然地质过程之间相互作用的新颖见解。我们阐述了塑料不仅如何扰乱沉积动力学并改变岩石和土壤的成分,造成新的污染形式,还通过改变侵蚀、运输和沉积模式对海洋生物多样性构成更大威胁。我们强调了塑料作为独特地层标志的新兴作用,为人类环境影响提供了不同的视角。这一分析挑战了传统观念中岩石仅仅是天然无机形成物的看法,并突出了融合地质学、化学和环境科学的跨学科方法的迫切需求。该文件呼吁加强研究,以制定管理这些影响的有效策略,并推广解决塑料污染症状和源头的创新保护技术。