Zhao Xiu-Lan, Masaihiko Saigusa
College of Natural Resources and Environmental Sciences, Southwest University, Chongqing 400716, China.
J Environ Sci (China). 2007;19(3):343-7. doi: 10.1016/s1001-0742(07)60056-4.
Previous studies have shown that porous hydrated calcium silicate (PS) is very effective in decreasing cadmium (Cd) content in brown rice. However, it is unclear whether the PS influences cadmium transformation in soil. The present study examined the effect of PS on pH, cadmium transformation and cadmium solubility in Andosol and Alluvial soil, and also compared its effects with CaCO3, acidic porous hydrated calcium silicate (APS) and silica gel. Soil cadmium was operationally fractionationed into exchangeable (Exch), bound to carbonates (Carb), bound to iron and manganese oxides (FeMnO(x)), bound to organic matters (OM) and residual (Res) fraction. Application of PS and CaCO3 at hig rates enhanced soil pH, while APS and silica gel did not obviously change soil pH. PS and CaCO3 also increased the FeMnO(x)-Cd in Andosol and Carb-Cd in Alluvial soil, thus reducing the Exch-Cd in the tested soils. However, PS was less effective than CaCO3 at the same application rate. Cadmium fractions in the two soils were not changed by the treatments of APS and silica gel. There were no obvious differences in the solubility of cadmium in soils treated with PS, APS, silica gel and CaCO3 except Andosol treated 2.0% CaCO3 at the same pH of soil-CaCl2 suspensions. These findings suggested that the decrease of cadmium availability in soil was mainly attributed to the increase of soil pH caused by PS.
以往研究表明,多孔水合硅酸钙(PS)在降低糙米中镉(Cd)含量方面非常有效。然而,尚不清楚PS是否会影响土壤中镉的转化。本研究考察了PS对火山灰土和冲积土的pH值、镉转化及镉溶解度的影响,并将其与碳酸钙、酸性多孔水合硅酸钙(APS)和硅胶的效果进行了比较。土壤镉被按操作分为可交换态(Exch)、碳酸盐结合态(Carb)、铁锰氧化物结合态(FeMnO(x))、有机质结合态(OM)和残留态(Res)。高施用量的PS和碳酸钙提高了土壤pH值,而APS和硅胶对土壤pH值无明显影响。PS和碳酸钙还增加了火山灰土中的FeMnO(x)-Cd以及冲积土中的Carb-Cd,从而降低了受试土壤中的Exch-Cd。然而,在相同施用量下,PS的效果不如碳酸钙。APS和硅胶处理对两种土壤中的镉形态没有影响。在相同土壤-CaCl2悬浮液pH值下,除了用2.0%碳酸钙处理的火山灰土外,PS、APS、硅胶和碳酸钙处理的土壤中镉的溶解度没有明显差异。这些发现表明,土壤中镉有效性的降低主要归因于PS导致的土壤pH值升高。