Cullen Jay T, McAlister Jason
Met Ions Life Sci. 2017 Apr 10;17. doi: 10.1515/9783110434330-002.
Lead (Pb) is a metal that is not essential for life processes and proves acutely toxic to most organisms. Compared to other metals Pb is rather immobile in the environment but still its biogeochemical cycling is greatly perturbed by human activities. In this review we present a summary of information describing the physical and chemical properties of Pb, its distribution in crustal materials, and the processes, both natural and anthropogenic, that contribute to the metal's mobilization in the biosphere. The relatively high volatility of Pb metal, low melting point, its large ionic radius, and its chemical speciation in aquatic systems contributes to its redistribution by anthropogenic and natural processes. The biogeochemical cycle of Pb is significantly altered by anthropogenic inputs. This alteration began in antiquity but accelerated during the industrial revolution, which sparked increases in both mining activities and fossil fuel combustion. Estimates of the flux of Pb to the atmosphere, its deposition and processing in soils and freshwater systems are presented. Finally, the basin scale distribution of dissolved Pb in the ocean is interpreted in light of the chemical speciation and association with inorganic and organic particulate matter. The utility of stable radiogenic Pb isotopes, as a complement to concentration data, to trace inputs to the ocean, better understand the biogeochemical cycling of Pb and track water mass circulation in the ocean is discussed. An ongoing international survey of trace elements and their isotopes in seawater will undoubtedly increase our understanding of the deposition, biogeochemical cycling and fate of this infamous toxic metal.
铅(Pb)是一种对生命过程并非必需的金属,对大多数生物具有剧毒。与其他金属相比,铅在环境中的流动性较差,但人类活动仍极大地扰乱了其生物地球化学循环。在本综述中,我们总结了有关铅的物理和化学性质、在地壳物质中的分布以及导致该金属在生物圈中迁移的自然和人为过程的信息。铅金属相对较高的挥发性、低熔点、较大的离子半径及其在水生系统中的化学形态,导致其通过人为和自然过程进行重新分布。铅的生物地球化学循环因人为输入而发生显著改变。这种改变始于古代,但在工业革命期间加速,工业革命引发了采矿活动和化石燃料燃烧的增加。文中给出了铅向大气的通量估计值,以及它在土壤和淡水系统中的沉积和处理情况。最后,根据化学形态以及与无机和有机颗粒物的结合情况,解释了海洋中溶解铅的流域尺度分布。讨论了稳定放射性铅同位素作为浓度数据的补充,用于追踪海洋输入、更好地理解铅的生物地球化学循环以及追踪海洋水体循环的作用。一项正在进行的关于海水中微量元素及其同位素的国际调查无疑将增进我们对这种臭名昭著的有毒金属的沉积、生物地球化学循环和归宿的理解。