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土壤-植物体系中锌镉稳定同位素分馏研究进展 被引量:2
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作者 张鹏 杨文俊 +4 位作者 邓腾灏博 晁元卿 王诗忠 仇荣亮 汤叶涛 《科学通报》 EI CAS CSCD 北大核心 2018年第28期2944-2953,共10页
稳定同位素分馏技术对于示踪土壤-植物体系中重金属的迁移转化过程具有重要作用.本文阐述了土壤-植物体系中锌镉迁移转化主要涉及的土壤根际过程、根系吸收过程和根部-地上部转运过程及其对应产生的同位素分馏特征.在土壤根际过程,土壤... 稳定同位素分馏技术对于示踪土壤-植物体系中重金属的迁移转化过程具有重要作用.本文阐述了土壤-植物体系中锌镉迁移转化主要涉及的土壤根际过程、根系吸收过程和根部-地上部转运过程及其对应产生的同位素分馏特征.在土壤根际过程,土壤固相对锌、镉的吸附解吸反应影响重金属在土壤溶液中的移动性和同位素组成:锌轻同位素、镉重同位素倾向于被土壤固相释放进入土壤溶液;植物根系活化作用则导致土壤固相结合的锌重同位素的释放.根系吸收过程影响土壤-植物间的同位素分馏:质外体吸附锌重同位素,共质体吸收过程中低亲合力转运系统产生锌轻同位素富集,高亲合力转运系统基本不产生分馏或略产生锌轻同位素富集;植物根系存在含硫基团结合镉,并且仅有低亲合力转运系统对镉轻同位素进行吸收转运.在根部-地上部转运过程,根部区室化作用影响植物体内重金属的迁移和地上部同位素组成:锌重同位素、镉轻同位素倾向于在根部储存,导致锌轻同位素、镉重同位素向地上部迁移.在土壤-植物体系中,锌镉同位素分馏现象存在明显差异,反映出植物对锌镉元素不同的吸收、转运和储存机制. 展开更多
关键词 土壤 植物 稳定同位素分馏
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The effect of interaction between Bacillus subtilis DBM and soil minerals on Cu(Ⅱ) and Pb(Ⅱ) adsorption 被引量:5
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作者 Jun Bai yuanqing chao +2 位作者 Yanmei Chen Shizhong Wang Rongliang Qiu 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2019年第4期328-337,共10页
The effects of interaction between Bacillus subtilis DBM and soil minerals on Cu(Ⅱ)and Pb(Ⅱ)adsorption were investigated.After combination with DBM,the Cu(Ⅱ)and Pb(Ⅱ)adsorption capacities of kaolinite and goethite... The effects of interaction between Bacillus subtilis DBM and soil minerals on Cu(Ⅱ)and Pb(Ⅱ)adsorption were investigated.After combination with DBM,the Cu(Ⅱ)and Pb(Ⅱ)adsorption capacities of kaolinite and goethite improved compared with the application of the minerals independently.The modeling results of potentiometric titration data proved that the site concentrations of kaolinite and goethite increased by 80%and 30%,respectively after combination with DBM.However,the involvement of functional groups in the DBM/mineral combinations resulted in lower concentrations of observed sites than the theoretical values and led to the enhancement of desorption rates by NH_4NO_3 and EDTA-Na_2.The DBM-mineral complexes might also help to prevent heavy metals from entering DBM cells to improve the survivability of DBM in heavy metal-contaminated environments.During the combination process,the extracellular proteins of DBM provided more binding sites for the minerals to absorb Cu(Ⅱ)and Pb(Ⅱ).In particular,an especially stable complexation site was formed between goethite and phosphodiester bonds from EPS to enhance the Pb(Ⅱ)adsorption capacity.So,we can conclude that the DBM–mineral complexes could improve the Cu(Ⅱ)and Pb(Ⅱ)adsorption capacities of minerals and protect DBM in heavy metal-contaminated environments. 展开更多
关键词 Bacillus SUBTILIS DBM GOETHITE KAOLINITE CU PB
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