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1.
土壤样品中亚硒酸盐Se(Ⅳ)和硒酸盐Se(Ⅵ)的形态分析中,提取剂的选择和检测方法是技术的关键。以往的提取剂容易导致硒形态发生转变或无法同时提取Se(Ⅳ)和Se(Ⅵ),常用的氢化物发生原子荧光光谱法无法直接测定Se(Ⅵ),而是通过差减法得出Se(Ⅵ)含量。本文对比了不同提取剂的提取能力,确定使用0. 1 mol/L氢氧化钠溶液作为提取剂,在55℃超声萃取土壤样品30 min,提取液经高效液相色谱分离,电感耦合等离子体质谱检测,建立了土壤中Se(Ⅳ)和Se(Ⅵ)的形态分析方法。采用Hamilton PRP X-100色谱柱,以6 mmol/L柠檬酸为流动相,pH=5. 5,在8 min内可完全分离Se(Ⅳ)和Se(Ⅵ),两者的检出限分别为0. 15μg/L、0. 16μg/L,线性相关系数(r~2)均大于0. 999。以土壤为基体进行加标回收试验,Se(Ⅳ)和Se(Ⅵ)的回收率在84. 2%~95. 8%之间,相对标准偏差为1. 4%~5. 3%(n=6)。该方法简单快速,具有良好的精密度和准确度,适用于土壤中无机硒的形态分析。  相似文献   
2.
ThisworksupportedbytheScienceandTechnologyCommitteeofShandongProvince.Grant(95)50.INTRODUCTIONManyinvestigationsindicatalthatsupplementation0fsuitableseleniumleveIstolowordefidentinseleniumdietcanpreventoccurrenceofvarioustumots(Chen,l990),enhanceorganisminimneability(Wu,l992),maintainthenormalfunCtion0fheart,liv-er,lungandstomach(Schwarzetal,l957),andisgoodpareuti0nsagainstcardiovascularandcerebrovascu1arproblemsinoldpeople.Seleniumisanessentialtraeeelernentfornonnalhumanlife(Balassa…  相似文献   
3.
Cr(III) sorbed at the solid/water interface of latex and hectorite was studied by ESR spectroscopy in the presence of different inorganic ligands. The ESR spectra of the surface obtained in the presence of selenite, phosphate and fluoride can be explained in terms of ternary surface complex formation. This is contrasted by the behaviour of sulfate and selenate ions which were found to have no effect on the ligand field of Cr(III), either in the adsorbed state or in solution.  相似文献   
4.
利用从油藏中分离的芽孢杆菌HBS4在兼性厌氧情况下作用于剧毒物质亚硒酸钠,36 h后1~11mM的样品中均出现了大量红色颗粒沉淀物.生物显微镜观察发现,在很多细菌内部出现一颗到多颗红色的圆形颗粒,排列方式有单链、双链、弧线和无规则排列,并且在细胞周围释放有游离态的红色颗粒.XPS测试红色沉淀物发现四价硒全部还原为零价硒.实验还发现添加葡萄糖对单质硒的产量有很大的促进作用.  相似文献   
5.
Any progress in our understanding of low-temperature mineral assemblages and of quantitative physico-chemical modeling of stability conditions of mineral phases, especially those containing toxic elements like selenium, strongly depends on the knowledge of structural and thermodynamic properties of coexisting mineral phases. Interrelation of crystal chemistry/structure and thermodynamic properties of selenium-containing minerals is not systematically studied so far and thus any essential generalization might be difficult, inaccurate or even impossible and erroneous. Disagreement even exists regarding the crystal chemistry of some natural and synthetic selenium-containing phases. Hence, a systematic study was performed by synthesizing ferric selenite hydrates and subsequent thermal analysis to examine the thermal stability of synthetic analogues of the natural hydrous ferric selenite mandarinoite and its dehydration and dissociation to unravel controversial issues regarding the crystal chemistry. Dehydration of synthesized analogues of mandarinoite starts at 56–87?°C and ends at 226–237?°C. The dehydration happens in two stages and two possible schemes of dehydration exist: (a) mandarinoite loses three molecules of water in the first stage of the dehydration (up to 180?°C) and the remaining two molecules of water will be lost in the second stage (>180?°C) or (b) four molecules of water will be lost in the first stage up to 180?°C and the last molecule of water will be lost at a temperature above 180?°C. Based on XRD measurements and thermal analyses we were able to deduce Fe2(SeO3)3·(6-x)H2O (x?=?0.0–1.0) as formula of the hydrous ferric selenite mandarinoite. The total amount of water apparently affects the crystallinity, and possibly the stability of crystals: the less the x value, the higher crystallinity could be expected.  相似文献   
6.
研究两种硒化物在文蛤富集、排出镉过程中的作用,对文蛤进行转录组测序,并进行生物信息学分析,以探讨硒化物对Cd2+代谢相关机制。硒化卡拉胶组和亚硒酸钠组共产出587 855条高质量reads。基因本体分析功能注释到15 380条unigenes, KEGG通路注释到18 866条unigenes。差异基因主要富集到肌球蛋白复合物(myosin complex)、离子通道抑制(ion channel suppression)等基因本体分析功能中。差异基因KEGG通路富集显示,在嘌呤代谢(purinemetabolism)、ECM受体相互作用(extracellularmatrix receptor interaction)、硒化合物代谢(metabolism of selenium compounds)等通路显著富集。从结果分析Cd2+可以使文蛤体内蛋白转录修饰出现异常;有机硒可以通过调控金属离子通道活性来排出细胞内的Cd2+;无机硒主要作用于文蛤细胞表面,增强其表面活性抵御Cd2+进入细胞;差异基因KEGG注释结果表明有机硒与无机硒在文蛤重金属代谢中作用机制以及途径不相同。  相似文献   
7.
本文对产自湖北省恩施市双河硒矿鱼塘坝矿段氧化带中的极其少见的富铜亚硒酸盐矿物——蓝硒铜矿进行了详细的矿物学特征研究.蓝硒铜矿呈蓝色或天蓝色,透明,玻璃光泽,柱状晶体,一般颗粒非常细小,粒径大多在20~100μm,个别可>200μm.分散状,偶见穿插状、放射状聚晶体分布在碳质硅质页岩或粘土化火山碎屑岩的岩石裂缝中或岩层表面.与蓝硒铜矿共生矿物主要为星染状黄铁矿、微晶石英、伊利石、白云石和硒铜蓝等.利用电子探针(EMPA)和背散射电子衍射仪(EBSD)分析的蓝硒铜矿的化学组分表明,仅含Cu,Se和O元素,成分单一,其中SeO244.355%~49.778%(平均值47.684%),CuO37.419%~41.354%(平均值39.479%).计算的化学分子式为:Cu5.35~6.5[SeO3]5·6.2~9.95H2O,属于富铜的蓝硒铜矿,实际晶体化学式为:Cu[SeO3]·2H2O.蓝硒铜矿在显微镜下呈菱形横切面,平行消光,显示出正交晶系的光学特征.本文首次对蓝硒铜矿单晶体进行了“原位”拉曼光谱的测试分析,获得了清晰的拉曼谱线,其主要位移谱线为3506cm-1、3182cm-1、2917cm-1、1600cm-1、1328cm-1、814cm-1、727cm-1、555cm-1、378cm-1、288cm-1.蓝硒铜矿的傅里叶红外光谱主要特征吸收峰则与Sathi-anandan等(1964)合成的化合物相类似.根据蓝硒铜矿的产出地质特征、矿物组合和成矿环境条件,笔者认为蓝硒铜矿的形成是由于风化和淋滤富集作用所致.  相似文献   
8.
【目的】探索富硒长茎葡萄蕨藻(Caulerpalentillifera)的培养条件。【方法】以亚硒酸钠(Na_2SeO_3)为硒源,采用单因素实验,研究不同硒浓度对长茎葡萄蕨藻的生长、光合色素和硒富集量的影响,通过正交实验,找出适宜长茎葡萄蕨藻富硒的最佳温度、照度和氮磷比组合条件。【结果】在亚硒酸钠0、0.5、1.0、2.0、4.0、8.0mg/L条件下,随亚硒酸钠添加量增加,藻体硒质量分数(干基)从1.70μg/g增加至50.10μg/g,且各组间差异均有统计学意义(P<0.05);亚硒酸钠添加量2.0 mg/L时,藻体硒质量分数达到11.7μg/g;添加量大于2.0 mg/L时,显著抑制藻体的生长(P<0.05),藻体叶绿素a和叶绿素b含量显著性降低(P<0.05);添加量低于2.0 mg/L时,藻体的生长、叶绿素a和叶绿素b含量均无显著性差异;类胡萝卜素含量各组间无明显变化。在培养液亚硒酸钠质量浓度为2.0 mg/L的条件下,藻体最适的生长条件组合是温度28℃、照度2 000 lx、氮磷比10∶1,藻体的最优富硒条件是温度24℃、照度2 000 lx、氮磷比8∶1。【结论】长茎葡萄蕨藻在开发含硒安全性功能海藻食品方面有较大应用潜力。  相似文献   
9.
The toxicity and bioaccumulation of selenite in four microalgae, Spirulina platensis,Dunaliella salina, DunalieUa bardawill and Phaeodactylum tricornutum cultured in the presence of selenite were investigated. Lower concentrations of selenite were generally nontoxic and frequently stimulated algal growth, while higher concentrations of selenite inhibited algal growth. Selenite was more toxic to D. salina and D. bardawill than to S. platensis and P. tricornutum. All algae cultured in selenite were able to incorporate Se to different degrees, which depended on algal species. The distributions of selenite among intracellular macromolecular compounds were different among algal species : most of the selenite was associated with proteins in S. platensis, D. salina and D. bardawill, while most of the selenite was associated with lipids in P. tricornutum, which reflected the physiological differences among the algae. These observations suggest that algae are able to accumulate selenite and bind it with intracell~ar macromolecular compounds when exposed to high concentration of selenite. This may represent a form of storage or detoxification of selenite by the algae.  相似文献   
10.
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