Lin Q, Chen Y X, Chen H M, Yu Y L, Luo Y M, Wong M H
Department of Environmental Science, Zhejiang University, Huajiachi, Hangzhou 310029, China.
Chemosphere. 2003 Feb;50(6):755-61. doi: 10.1016/s0045-6535(02)00216-3.
Chemical behavior of Cd in rice rhizosphere as affected or not by Pb was investigated. The NH4OAc extractable Cd in the rhizosphere was distinctly lower than that in bulk soil. The depletion of Cd in the rhizosphere could not be simply attributed to Cd uptake by rice. The observed phenomena could be attributed to the decreasing pH in the rhizosphere and the complexing capabilities of soluble exudates for Cd. Extractable Cd increased in both the rhizosphere and bulk soil after the addition of Pb, which might be caused by the replacement of Pb for Cd. The extractable Cd in the non-rhizosphere varied with the distance from the root surface, especially within 0-1 mm, which was greatly affected by the combined effects of mass flow, activation and fixation, and had the lowest extractable Cd. Pb addition affected the distribution of extractable Cd in the non-rhizosphere, implying that the affinity of Pb for organic matter was greater than that of Cd. The difference of Cd species between rhizosphere and bulk soil demonstrated that the transformation of exchangeable Cd (EXC-Cd) to OM-Cd (bound to organic matter) and FMO-Cd (bound to iron and manganese oxide) occurred in the rice rhizosphere due to the exudations from the rice root, the activity of microorganisms on the root surface and the activation of Fe and Mn oxides. The interaction between Pb and Cd resulted in the content of EXC-Cd being higher in the presence of Pb, whereas the OM-Cd content was lower in the presence of Pb.
研究了铅对水稻根际镉化学行为的影响。根际中醋酸铵可提取镉明显低于原状土。根际镉的消耗不能简单归因于水稻对镉的吸收。观察到的现象可能归因于根际pH值的降低以及可溶性分泌物对镉的络合能力。添加铅后,根际和原状土中的可提取镉均增加,这可能是由于铅对镉的置换所致。非根际中可提取镉随距根表面距离而变化,尤其是在0-1毫米范围内,受质量流、活化和固定的综合影响很大,且可提取镉含量最低。添加铅影响了非根际中可提取镉的分布,这意味着铅对有机质的亲和力大于镉。根际和原状土中镉形态的差异表明,由于水稻根系分泌、根表微生物活动以及铁锰氧化物的活化作用,水稻根际中可交换态镉(EXC-Cd)向有机结合态镉(OM-Cd)和铁锰氧化物结合态镉(FMO-Cd)发生了转化。铅和镉之间的相互作用导致在有铅存在时EXC-Cd含量较高,而在有铅存在时OM-Cd含量较低。