Rühling Ake, Tyler Germund
Department of Ecology, Lund University, Soil-Plant Research, SE-223 62 Lund, Sweden.
Environ Pollut. 2004 Oct;131(3):417-23. doi: 10.1016/j.envpol.2004.03.005.
Elements emitted to the atmosphere are partly exported to more remote areas and contribute to the regional and territorial deposition rates. This study is based on the principle that carpet-forming bryophytes (pleurocarpic mosses) absorb elements and particles from rain, melting snow and dry deposition. We compare the concentrations of 60 elements in carpets of the forest moss Pleurozium schreberi sampled in 1975 and 2000 within a sparsely inhabited area dominated by forest and bogland in south Sweden. As an average for all the 60 elements, the median concentration was 2.7 times higher in 1975 than in 2000. The greatest difference was measured for Pb, although In, Bi, Ge, V, Sn, As and Ag had more than 5 times higher concentrations in 1975 than in 2000. Somewhat lower 1975/2000 concentration ratios (3.0-3.8) were measured for U, Sb, Cd, W, Ga, Fe, Li, and Be. The rare-earth elements (Y, La, Ce, Pr, Nd, Sm, Gd, Tb, Dy, Ho, Er, Tm, Yb, and Lu), except Eu as well as Th, Ni, Al, Ti, Hf, Nb, and Zr, had concentration ratios around the average (2.5-2.8). Possible causes of these changes are discussed. We conclude that reductions in anthropogenic dust emissions during recent decades have decreased the atmospheric deposition over northern Europe of most elements in the periodical system, as previously reported for a limited number of transition and heavy metals. Changes in the deposition of soil dust would be of minor importance to the decreased deposition rates.
排放到大气中的元素部分会传输到更偏远的地区,并影响区域和地区的沉降率。本研究基于这样的原理:形成地毯状的苔藓植物(侧蒴藓类)会从雨水、融雪和干沉降中吸收元素和颗粒。我们比较了1975年和2000年在瑞典南部一个以森林和沼泽地为主的人口稀少地区采集的森林苔藓平蒴藓地毯中60种元素的浓度。所有60种元素的平均浓度来看,1975年的中位数浓度是2000年的2.7倍。铅的差异最大,不过铟、铋、锗、钒、锡、砷和银在1975年的浓度比2000年高出5倍以上。铀、锑、镉、钨、镓、铁、锂和铍的1975/2000浓度比略低(3.0 - 3.8)。除铕以及钍、镍、铝、钛、铪、铌和锆之外的稀土元素(钇、镧、铈、镨、钕、钐、钆、铽、镝、钬、铒、铥、镱和镥)的浓度比接近平均值(2.5 - 2.8)。文中讨论了这些变化可能的原因。我们得出结论,正如之前针对少数过渡金属和重金属所报道的那样,近几十年来人为粉尘排放的减少降低了北欧大气中元素周期表中大多数元素的沉降。土壤粉尘沉降的变化对沉降率下降的影响较小。