Rennert Thilo, Mansfeldt Tim
Arbeitsgruppe Bodenkunde und Bodenökologie, Fakultät für Geowissenschaften, Ruhr-Universität Bochum, Germany.
J Environ Qual. 2002 May-Jun;31(3):745-51. doi: 10.2134/jeq2002.7450.
Soils are contaminated with potentially toxic iron-cyanide complexes by some industrial activities. The influence of sulfate on the sorption of the iron-cyanide complexes ferricyanide, [Fe(CN)6]3-, and ferrocyanide, [Fe(CN)6]4-, on goethite was investigated in batch experiments. The experiments were conducted as influenced by pH and varying sulfate/iron-cyanide complex concentration ratios. Furthermore, the desorption of iron-cyanide complexes sorbed on goethite was studied using phosphate and chloride solutions as influenced by pH and anion concentration. Over the whole pH range (pH 3.5 to 8), ferricyanide and sulfate showed similar affinities for the goethite surface. The extent of ferricyanide sorption strongly depended on sulfate concentrations and vice versa. In contrast, ferrocyanide sorption was only decreased (approximately 12%) by sulfate additions at pH 3.5. Ferricyanide was completely desorbed by 1 M chloride, ferrocyanide not at all. Unbuffered phosphate solutions (pH 8.3) desorbed both iron-cyanide complexes completely. Even in 70-fold excess, pH-adjusted phosphate solutions could not desorb ferrocyanide completely at pH 3.5. For ferricyanide we propose a sorption mechanism that is similar to the sulfate sorption mechanism, including outer-sphere and weak inner-sphere surface complexes on goethite. Ferrocyanide appears to form inner-sphere surface complexes. Additionally, we assume that ferrocyanide precipitates probably as a Berlin Blue-like phase at pH 3.5. Hence, ferrocyanide should be less mobile in the soil environment than ferricyanide or sulfate.
一些工业活动会使土壤被潜在有毒的铁氰化物络合物污染。通过批量实验研究了硫酸盐对铁氰化物络合物铁氰酸盐([Fe(CN)6]3-)和亚铁氰酸盐([Fe(CN)6]4-)在针铁矿上吸附的影响。实验在pH值以及不同硫酸盐/铁氰化物络合物浓度比的影响下进行。此外,还研究了在pH值和阴离子浓度影响下,使用磷酸盐和氯化物溶液对吸附在针铁矿上的铁氰化物络合物的解吸情况。在整个pH范围(pH 3.5至8)内,铁氰酸盐和硫酸盐对针铁矿表面表现出相似的亲和力。铁氰酸盐的吸附程度强烈依赖于硫酸盐浓度,反之亦然。相比之下,在pH 3.5时,添加硫酸盐仅使亚铁氰酸盐的吸附量降低了约12%。1 M的氯化物能使铁氰酸盐完全解吸,而亚铁氰酸盐则完全不能解吸。未缓冲的磷酸盐溶液(pH 8.3)能使两种铁氰化物络合物完全解吸。即使在70倍过量的情况下,经pH调节的磷酸盐溶液在pH 3.5时也不能使亚铁氰酸盐完全解吸。对于铁氰酸盐,我们提出了一种与硫酸盐吸附机制类似的吸附机制,包括针铁矿上的外层和弱内层表面络合物。亚铁氰酸盐似乎形成内层表面络合物。此外,我们假设在pH 3.5时,亚铁氰酸盐可能以类似柏林蓝的相沉淀。因此,在土壤环境中亚铁氰酸盐的迁移性应低于铁氰酸盐或硫酸盐。