Yang Jae E, Lee Wi-Young, Ok Yong Sik, Skousen Jeffrey
Department of Biological Environment, Kangwon National University, Chuncheon, 200-701, Korea.
Environ Monit Assess. 2009 Oct;157(1-4):43-50. doi: 10.1007/s10661-008-0513-1. Epub 2008 Aug 29.
Acid deposition has caused detrimental effects on tree growth near industrial areas of the world. Preliminary work has indicated that concentrations of NO(3-), SO(4)(2-), F( - ) and Al in soil solutions were 2 to 33 times higher in industrial areas compared to non-industrial areas in Korea. This study evaluated soil nutrient bioavailability and nutrient contents of red pine (Pinus thunbergii) needles in forest soils of industrial and non-industrial areas of Korea. Results confirm that forest soils of industrial areas have been acidified mainly by deposition of sulfate, resulting in increases of Al, Fe and Mn and decreases of Ca, Mg and K concentrations in soils and soil solutions. In soils of industrial areas, the molar ratios of Ca/Al and Mg/Al in forest soils were <2, which can lead to lower levels and availability of nutrients for tree growth. The Ca/Al molar ratio of Pinus thunbergii needles on non-industrial sites was 15, while that of industrial areas was 10. Magnesium concentrations in needles of Pinus thunbergii were lower in soils of industrial areas and the high levels of acid cations such as Al and Mn in these soils may have antagonized the uptake of base cations like Mg. Continued acidification can further reduce uptake of base cations by trees. Results show that Mg deficiency and high concentrations of Al and Mn in soil solution can be limiting factors for Pinus thunbergii growth in industrial areas of Korea.
酸沉降已对世界工业区附近树木的生长造成了有害影响。初步研究表明,韩国工业区土壤溶液中NO(3-)、SO(4)(2-)、F(-)和Al的浓度比非工业区高2至33倍。本研究评估了韩国工业区和非工业区森林土壤中红松(Pinus thunbergii)针叶的土壤养分生物有效性和养分含量。结果证实,工业区的森林土壤主要因硫酸盐沉降而酸化,导致土壤和土壤溶液中Al、Fe和Mn含量增加,Ca、Mg和K浓度降低。在工业区的土壤中,森林土壤中Ca/Al和Mg/Al的摩尔比<2,这可能导致树木生长所需养分的水平和有效性降低。非工业区红松针叶的Ca/Al摩尔比为15,而工业区为10。工业区土壤中红松针叶的镁浓度较低,这些土壤中高含量的酸性阳离子如Al和Mn可能拮抗了Mg等碱性阳离子的吸收。持续酸化会进一步降低树木对碱性阳离子的吸收。结果表明,Mg缺乏以及土壤溶液中高浓度的Al和Mn可能是韩国工业区红松生长的限制因素。