Ministry of Education Key Laboratory of Environmental Remediation and Ecological Health, College of Environmental and Resource Sciences, Zhejiang University, Hangzhou 310029, China.
Environ Monit Assess. 2012 Oct;184(10):6325-35. doi: 10.1007/s10661-011-2422-y. Epub 2011 Nov 3.
The bioavailability and ultimate fate of heavy metals in the environment are controlled by adsorption-desorption process. Batch equilibrium experiments were performed to assess the effects of pH and low molecular weight organic acids (LMWOAs) on competitive adsorption and desorption of cadmium and lead in paddy soils from China. The results indicated that both soils exhibited greater sorption capacity for lead (Pb) (1.37-1.61-fold) than cadmium (Cd) as estimated by the maximum sorption parameter (Q) from the Langmuir equation. The Langmuir bonding energy coefficient (b) and distribution coefficient (K (d)) were greater for Pb than for Cd, furthermore, b (binary) and K (d) (single) were greater than b (single) and K (d binary), indicating that competition for sorption sites promote the retention of both metals on more specific sorption sites. Both Cd and Pb desorption as a function of solution pH was characteristic of "S" pattern. The presence of LMWOAs inhibited Cd or Pb desorption at the low concentrations (≤0.1 mmol L(-1)) but promoted Cd and Pb desorption at higher concentrations (≥0.5 mmol L(-1) for citric acid and ≥1 mmol L(-1) for malic and oxalic acid). The two paddy soils had a greater d (Cd) than d (Pb) in the presence of LMWOAs, indicating that Cd desorption was more affected by the presence of LMWOAs in binary metal system.
重金属在环境中的生物有效性和最终归宿受吸附-解吸过程控制。通过批量平衡实验来评估 pH 值和低分子量有机酸(LMWOAs)对中国稻田土壤中镉和铅的竞争吸附和解吸的影响。结果表明,两种土壤对铅(Pb)的吸附能力均大于镉(Cd)(根据 Langmuir 方程的最大吸附参数(Q)估算,Pb 的吸附能力是 Cd 的 1.37-1.61 倍)。Pb 的 Langmuir 结合能系数(b)和分配系数(K(d))大于 Cd,此外,b(二元)和 K(d)(单)大于 b(单)和 K(d 二元),这表明竞争吸附位点促进了两种金属在更特定的吸附位点上的保留。Cd 和 Pb 的解吸随溶液 pH 的变化呈“S”型特征。LMWOAs 的存在抑制了低浓度(≤0.1 mmol L(-1))下的 Cd 或 Pb 解吸,但促进了高浓度(柠檬酸为≥0.5 mmol L(-1),苹果酸和草酸为≥1 mmol L(-1))下的 Cd 和 Pb 解吸。在 LMWOAs 的存在下,两种稻田土壤的 d(Cd)大于 d(Pb),这表明 Cd 解吸受二元金属体系中 LMWOAs 的存在影响更大。