Zhang Wei, Liu Cong-qiang, Li Xiao-dong, Liu Tao-ze, Zhang Li-li
Key Laboratory for Water Environment and Resources, Tianjin Normal University, Tianjin 300387, China.
Huan Jing Ke Xue. 2010 Feb;31(2):415-22.
Sequential extraction methods for soil sulfur were used to determine delta34 S ratios and sulfur contents of total sulfur, organic sulfur, SO4(21) and FeS2 in slope soils of karst areas. In general, FeS2 has the lowest delta34 S ratios, ranging from -6.86% per hundred to -4.229% per hundred, followed in ascending order by SO4(2-) (-2.64% per hundred - -1.34% per hundred), total sulfur (-3.25% per hundred - -1.03% per hundred) and organic sulfur (-1.63% per hundred -0.50% per hundred) in surface soils of profiles, and delta34 S ratios in different sulfur forms all show increasing trend with profiles deepening. Covariations of delta34 S ratios of SO4(2-) and FeS2 with increasing depth are related to SO4(2-) dissimilatory reduction, while the increase in parallel of delta34 S ratios of total sulfur and organic sulfur could be resulted from organic sulfur cycling. delta34 S ratios have been extensively used to indicate sulfur sources, moreover, SO4(2-) dissimilatory reduction and organic sulfur mineralization result in significant sulfur isotopic fractionation, and sulfides oxidation and SO4(2-) assimilation have no isotopic fractionation occurred, the vertical variations of delta34 S ratios in different sulfur forms can therefore be good records for depth-dependant sulfur cycling processes. Furthermore, by comparing depth distributions of sulfur contents and delta34 S ratios in different sulfur forms, it is easily to discuss the migration of SO4(-1) and organic sulfur fractions in soil profiles.
采用土壤硫的连续提取方法,测定喀斯特地区坡地土壤中总硫、有机硫、SO₄²⁻和FeS₂的δ³⁴S比值及硫含量。一般来说,FeS₂的δ³⁴S比值最低,范围为-6.86‰至-4.229‰,剖面表层土壤中按升序依次为SO₄²⁻(-2.64‰至-1.34‰)、总硫(-3.25‰至-1.03‰)和有机硫(-1.63‰至0.50‰),不同硫形态的δ³⁴S比值均随剖面深度增加呈上升趋势。SO₄²⁻和FeS₂的δ³⁴S比值随深度增加的协变与SO₄²⁻异化还原有关,而总硫和有机硫的δ³⁴S比值平行增加可能是有机硫循环所致。δ³⁴S比值已被广泛用于指示硫源,此外,SO₄²⁻异化还原和有机硫矿化导致显著的硫同位素分馏,而硫化物氧化和SO₄²⁻同化未发生同位素分馏,因此不同硫形态的δ³⁴S比值垂直变化可作为深度依赖硫循环过程的良好记录。此外,通过比较不同硫形态的硫含量和δ³⁴S比值的深度分布,很容易讨论SO₄⁻¹和有机硫组分在土壤剖面中的迁移。