Tyler Germund
Department of Ecology, Soil-Plant Research, Ecology Building, SE-223 62 Lund, Sweden.
Sci Total Environ. 2004 Aug 15;329(1-3):231-9. doi: 10.1016/j.scitotenv.2004.03.004.
The root/organic soil concentration ratio; R/S) of 50 cationic mineral elements was related to their ionic properties, including ionic radius (r), ionic charge (z), and ionic potential (z/r or z2/r). The materials studied were ectomycorrhizal beech (Fagus sylvatica L.) roots and their almost purely organic soil substrate, the O-horizon (mor; raw humus) of a Podzol in South Sweden, developed in a site which has been untouched by forestry or other mechanical disturbance since at least 50 years and located in an area with no local sources of pollution. Elements determined by ICP-AES were aluminium, barium, calcium, iron, potassium, magnesium, manganese, sodium and strontium. Determined by ICP-MS were silver, beryllium, bismuth, cadmium, cerium, cobalt, chromium, caesium, copper, dysprosium, erbium, europium, gallium, gadolinium, hafnium, mercury, holmium, indium, lanthanum, lithium, lutetium, niobium, neodymium, nickel, lead, praseodymium, rubidium, scandium, samarium, tin, terbium, thorium, titanium, thallium, thulium, uranium, vanadium, yttrium, ytterbium, zinc and zirconium. The R/S ratios were most clearly related to the ionic potential of the cationic elements studied, which accounted for approximately 60% of the variability in R/S among elements. The ionic charge of an element was more important than the ionic radius. Elements with high ionic charge had low R/S ratios and vice versa. No clear differences in R/S between essential and non-essential plant nutrients were observed, especially when ions of similar charge were compared.
50种阳离子矿物元素的根际/有机土壤浓度比(R/S)与其离子特性有关,包括离子半径(r)、离子电荷(z)和离子势(z/r或z²/r)。所研究的材料是外生菌根山毛榉(Fagus sylvatica L.)的根及其几乎纯有机的土壤基质,即瑞典南部一个灰化土的O层(粗腐殖质;原始腐殖土),该土壤所在地点至少50年来未受林业或其他机械干扰,且位于无本地污染源的区域。通过电感耦合等离子体原子发射光谱法(ICP - AES)测定的元素有铝、钡、钙、铁、钾、镁、锰、钠和锶。通过电感耦合等离子体质谱法(ICP - MS)测定的元素有银、铍、铋、镉、铈、钴、铬、铯、铜、镝、铒、铕、镓、钆、铪、汞、钬、铟、镧、锂、镥、铌、钕、镍、铅、镨、铷、钪、钐、锡、铽、钍、钛、铊、铥、铀、钒、钇、镱、锌和锆。R/S比与所研究阳离子元素的离子势最为密切相关,离子势约占元素间R/S变异性的60%。元素的离子电荷比离子半径更重要。离子电荷高的元素R/S比低,反之亦然。在必需和非必需植物养分的R/S之间未观察到明显差异,尤其是当比较电荷相似的离子时。