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首页> 外文期刊>Journal of Hazardous Materials >Suppressive effects of magnesium oxide materials on cadmium uptake and accumulation into rice grains I: Characteristics of magnesium oxide materials for cadmium sorption
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Suppressive effects of magnesium oxide materials on cadmium uptake and accumulation into rice grains I: Characteristics of magnesium oxide materials for cadmium sorption

机译:氧化镁材料对镉吸收和累积到稻谷中的抑制作用I:氧化镁材料对镉的吸附特性

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摘要

The objective of this study is to assess the applicability of a commercial magnesium oxide (MgO) and a composite material containing MgO and natural minerals ('MgO-SH-A') as the soil amendments for suppression of cadmium (Cd) uptake and accumulation into rice grains. Firstly, the mineralogical and physicochemical properties, soil neutralizing capacities and Cd sorption characteristics of these materials were investigated. Both materials were strongly alkaline and possessed large surface areas. The X-ray diffraction pattern of MgO-SH-A indicated the presence of MgO and a magnesium-silicate mineral (antigorite) as the main components. MgO-SH-A showed a milder soil neutralizing capacity as compared to commercial MgO. The sorptions of Cd on commercial MgO and MgO-SH-A both fitted Langmuir isotherm. The maximum Cd sorption capacity of commercial MgO (46.8 mmol g~(-1) DW) was higher than that of MgO-SH-A (5.87 mmol g~(-1) DW), although the latter material showed higher affinity to Cd as compared to the former one. The dominant reaction involved in the Cd sorptions was suggested to be precipitation of Cd(OH)_2 on the material surface. About 40% of Cd sorbed on MgO-SH-A was resistant to desorption by 0.1 M HCl, implying that this portion was strongly retained on the material surface.
机译:这项研究的目的是评估商用氧化镁(MgO)和包含MgO和天然矿物的复合材料('MgO-SH-A')作为抑制镉(Cd)吸收和积累的土壤改良剂的适用性变成米粒。首先,研究了这些材料的矿物学和理化性质,土壤中和能力和镉的吸附特性。两种材料都是强碱性的,并具有大的表面积。 MgO-SH-A的X射线衍射图表明存在MgO和镁硅酸盐矿物(抗蛇纹石)作为主要成分。与商业化的MgO相比,MgO-SH-A显示出更温和的土壤中和能力。 Cd在商品MgO和MgO-SH-A上的吸附均符合Langmuir等温线。商用MgO的最大Cd吸附容量(46.8 mmol g〜(-1)DW)高于MgO-SH-A(5.87 mmol g〜(-1)DW),尽管后者对Cd的亲和力更高与前一个相比。提示与Cd吸附有关的主要反应是Cd(OH)_2在材料表面的沉淀。吸附在MgO-SH-A上的大约40%的Cd不能被0.1 M HCl解吸,这意味着该部分被牢固地保留在材料表面。

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