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31.
镉和硒染毒对大鼠体内一些营养元素的影响   总被引:1,自引:0,他引:1  
为了解染毒元素 Cd 和 Se 在生物体内对一些营养元素的影响,采用体内中子活化分析和原子吸收法分析了大鼠被高含量Cd或Se染毒后,不同组合的动物体内这些元素的平均含量的变化.结果表明,高含量 Cd 使大鼠体内N、Ca 、Zn 、Cu 的含量大幅度的降低,而高含量Se使大鼠体内 N、Ca、Zn 、Cu的含量有一定的降低;当高含量的 Cd和 Se 同时在大鼠体内作用时, Se 和 Cd 对 N、Ca 、Zn 、Cu 元素,的毒性作用有相互缓解作用,而Se 和 Cd 对 P、K、Mg 元素毒性却有相互加重作用.  相似文献   
32.
Abstract

Interaction of Se up to 8?mg?kg?1 soil and Cd at 5 and 15?mg?kg?1 soil in wheat at different salinities was evaluated. Se concentrations in wheat shoots were progressively increased in parallel to Se in soil but decreased by addition of Cd. With increasing salinity, Cd concentrations increased and Se decreased. At low salinity, low addition of Se to the soil reduced Cd accumulation. At moderate and high salinities, only high Se amendment led to decline in Cd uptake, at the expense of reduction in biomass yield. Se at 0.5?mg?kg?1 soil alleviated the negative effect of Cd on shoot yield.  相似文献   
33.
广东省土壤硒空间分布及潜在环境风险分析   总被引:2,自引:0,他引:2  
利用广东省260个土壤剖面数据,开展区域尺度下的土壤总硒(Se)质量分数的空间分布研究。结果表明,研究区内土壤硒含量变异性较强,符合对数正态分布特征,其几何质量分数为0.23 mg·kg-1,高于全国平均水平。表层土壤硒基线质量分数范围为0.13到0.41 mg·kg-1,处于硒缺乏与中等含量水平之间。土壤硒的空间分布格局与区域成土母质密切相关,表现为:高硒质量分数的土壤主要位于石灰岩和砂页岩区域,而低硒质量分数的土壤主要位于紫色页岩和花岗岩地区。土壤硒缺乏可能是影响研究区人体健康的重要问题。此外,研究区由土壤退化和土壤侵蚀引发的流入周边水体的土壤硒每年可高达23 t。  相似文献   
34.
硒是生物体必须的营养元素。但过量的硒能引起中毒。因此,准确测定土壤中硒的含量,意义重大。本文介绍了焙烧富集、原子荧光法测定土壤中硒的方法。并对灯电流、负高压、原子化器的高度和温度、载气流量、还原剂浓度、预处理时活性炭、MgO、捕集剂用量的选择等实验条件进行了讨论和优选。绘制了标准曲线,并对标准参考样进行了测定,在选定的最佳条件下,测得标准参考样结果与真值相吻合,精密度分别为5.3%和7.2%。获得令人满意的结果。  相似文献   
35.
广州市32种水产品的Se含量特征分析   总被引:1,自引:0,他引:1  
通过酸消解,原子荧光-氢化物发生法测定了广州市部分市售水产品中Se的含量,由标准物质(GBW 08551猪肝)和回收率控制检测质量.结果表明,不同水产品中Se含量有较大差异,含量范围为(34.-1117.)×10-9,平均含量为(345.±149.)×10-9,不同类型水产品中Se含量变化特征是:甲壳类(544.±107.)×10-9>海水鱼类(392.±86.)×10-9>软体类(244.±89.)×10-9>淡水鱼类(238.±97.)×10-9.  相似文献   
36.
外源硒对黄瓜抗性、镉积累及镉化学形态的影响   总被引:3,自引:1,他引:3  
采用盆栽试验,在土壤Cd(20 mg·kg-1)污染条件下,测定了不同浓度的Na2Se O3(Se水平为0、0.5和1.0 mg·L-1)处理对2个黄瓜(Cucumis satiuus L.)品种(低Cd富集植物品种津优1号和高Cd富集品种燕白)生物量、丙二醛(MDA)含量、抗氧化酶活性及黄瓜体内Cd形态和Cd积累量的影响.结果表明,叶面喷施硒(Na2Se O3)后,黄瓜叶、茎、根、果实、植株干重,以及Cd含量和积累量在两个品种间的差异达到了显著性水平.随硒浓度的增加,燕白叶的丙二醛(MDA)含量逐渐增加,津优1号叶的丙二醛含量则逐渐减少;燕白根的丙二醛含量先增后降,津优1号根的丙二醛含量先降后增.喷施Na2Se O3后,黄瓜叶和根的CAT、SOD和POD活性呈现不同变化趋势.喷施外源硒降低了2个品种果实中不同形态Cd含量.叶面喷施Na2Se O3使黄瓜叶、茎、根和果实中的Cd含量分别下降了3.2%~17.9%、14.6%~28.2%、5.1%~18.5%和60.6%~75.8%.比较2个供试黄瓜品种,无论喷施Na2Se O3与否,黄瓜植株中Cd积累量以津优1号燕白.  相似文献   
37.
胡斌  梁东丽  赵文龙  缪树寅 《环境科学》2012,33(8):2817-2824
采用土培盆栽试验和室内分析相结合的方法,研究了Cu、Se复合污染土壤中2种金属的形态转化及其对生物有效性的影响.结果表明,在未污染土壤中,Cu主要以残渣态存在,Se主要以有机结合态和残渣态存在.在外源Cu、Se污染土壤中,平衡后(14 d),外源Cu主要以铁锰氧化物结合态存在,Se主要以可交换态及碳酸盐结合态存在;小白菜收获后,土壤中的Cu向有机结合态转化,而Se向铁锰氧化物结合态转化.外源Cu与土壤结合程度(IR值)均随外源Cu和Se浓度升高而逐渐降低;而Se与土壤结合程度(IR值)与外源Cu浓度无关,随外源Se浓度升高而下降.S型曲线拟合方程表明,适量的Se(≤10mg.kg-1)可以促进小白菜对Cu的吸收,同样适量的Cu(≤400 mg.kg-1)能促进小白菜对Se的吸收.土壤的Cu、Se的IR值与小白菜体内Cu、Se含量呈显著负相关(P<0.05),小白菜种植前后土壤中可交换态和有机结合态铜和硒的变化量与小白菜地上、地下含量也呈显著相关(P<0.05).因此,土壤元素的IR值和作物种植前后该元素形态的变化量均可作为评价重金属生物有效性的指标.  相似文献   
38.
水体中硒含量过高会导致水生生态系统退化,而中国现有的地表水环境质量标准对硒的标准值设定并不是基于我国水生生物相关毒理学研究得出的,难以因地制宜地保护我国水生生物.为保护我国水生生物,本研究利用物种敏感度分布法,推导出基于最大无效应浓度(NOEC)、最低有效应浓度(LOEC)的慢性硒(无机)淡水水质一级基准值和基于半数致死效应浓度(LC50)、半数最大效应浓度(EC50)、半数抑制浓度(IC50)的急性硒(无机)淡水水质二级基准值分别为0.58 μg·L-1、0.52 mg·L-1,发现我国现有的水质标准可能会对我国水生生物造成欠保护.进一步推导出为保护我国鱼类的硒(无机)淡水水质一级、二级基准值分别为0.21 μg·L-1、1.60 mg·L-1,以及硒淡水鱼类饲料有机硒和无机硒含量一级基准值分别为97 μg·kg-1和98 μg·kg-1.本研究基于硒对水生生物的急性和慢性毒性效应,推导出硒的系列基准值,为保护我国淡水水生生物安全的标准制定提供数据支撑和科学依据.  相似文献   
39.
研究了硒化合物对长春花(C.roseus)细胞悬浮生长的影响.在pH5.5培养介质中,当Se(Ⅵ)>0.5ppm或Se(Ⅳ)>0.6ppm时,将抑制C.roseus细胞悬浮生长,其致死浓度分别是100ppm Se(Ⅵ)和2.0ppm Se(Ⅳ).C.roseus对硒化合物有效强的富集作用.硒化合物的毒性和培养介质的pH值有关.在本试验条件下,硒酸钠和亚硒酸钠对Hg~(2+)无拮抗作用.  相似文献   
40.
Background, aim, and scope  Selenium (Se) has been shown to reduce mercury (Hg) bioavailability and trophic transfer in aquatic ecosystems. The study of methylmercury (MeHg) and Se bioaccumulation by plankton is therefore of great significance in order to obtain a better understanding of the estuarine processes concerning Hg and Se accumulation and biomagnification throughout the food web. In the western South Atlantic, few studies have documented trace element and MeHg in fish tissues. No previous study about trace elements and MeHg in plankton has been conducted concerning tropical marine food webs. Se, Hg, and MeHg were determined in two size classes of plankton, microplankton (70–290 μm) and mesoplankton (≥290 μm), and also in muscle tissues and livers of four fish species of different trophic levels (Mugil liza, a planktivorous fish; Bagre spp., an omnivorous fish; Micropogonias furnieri, a benthic carnivorous fish; and Centropomus undecimalis, a pelagic carnivorous fish) from a polluted estuary in the Brazilian Southeast coast, Guanabara Bay. Biological and ecological factors such as body length, feeding habits, and trophic transfer were considered in order to outline the relationships between these two elements. The differences in trace element levels among the different trophic levels were investigated. Materials and methods  Fish were collected from July 2004 to August 2005 at Guanabara Bay. Plankton was collected from six locations within the bay in August 2005. Total mercury (THg) was determined by cold vapor atomic absorption spectrometry (CV-AAS) with sodium borohydride as a reducing agent. MeHg analysis was conducted by digesting samples with an alcoholic potassium hydroxide solution followed by dithizone-toluene extraction. MeHg was then identified and quantified in the toluene layer by gas chromatography with an electron capture detector (GC-ECD). Se was determined by AAS using graphite tube with Pin platform and Zeeman background correction. Results and discussion  Total mercury, MeHg, and Se increased with plankton size class. THg and Se values were below 2.0 and 4.8 μg g−1 dry wt in microplankton and mesoplankton, respectively. A large excess of molar concentrations of Se in relation to THg was observed in both plankton size class and both fish tissues. Plankton presented the lowest concentrations of this element. In fish, the liver showed the highest THg and Se concentrations. THg and Se in muscle were higher in Centropomus undecimalis (3.4 and 25.5 nmol g−1) than in Micropogonias furnieri (2.9 and 15.3 nmol g−1), Bagre spp (1.3 and 3.4 nmol g−1) and Mugil liza (0.3 and 5.1 nmol g−1), respectively. The trophic transfer of THg and Se was observed between trophic levels from prey (considering microplankton and mesoplankton) to top predator (fish). The top predators in this ecosystem, Centropomus undecimalis and Micropogonias furnieri, presented similar MeHg concentrations in muscles and liver. Microplankton presented lower ratios of methylmercury to total mercury concentration (MeHg/THg) (34%) than those found in mesoplankton (69%) and in the muscle of planktivorous fish, Mugil liza (56%). The other fish species presented similar MeHg/THg in muscle tissue (of around 100%). M. liza showed lower MeHg/THg in the liver than C. undecimalis (35%), M. furnieri (31%) and Bagre spp. (22%). Significant positive linear relationships were observed between the molar concentrations of THg and Se in the muscle tissue of M. furnieri and M. liza. These fish species also showed significant inverse linear relationships between hepatic MeHg and Se, suggesting a strong antagonistic effect of Se on MeHg assimilation and accumulation. Conclusions  Differences found among the concentrations THg, MeHg, and Se in microplankton, mesozooplankton, and fishes were probably related to the preferred prey and bioavailability of these elements in the marine environment. The increasing concentration of MeHg and Se at successively higher trophic levels of the food web of Guanabara Bay corresponds to a transfer between trophic levels from the lower trophic level to the top-level predator, suggesting that MeHg and Se were biomagnified throughout the food web. Hg and Se were positively correlated with the fish standard length, suggesting that larger and older fish bioaccumulated more of these trace elements. THg, MeHg, and Se were a function of the plankton size. Recommendations and perspectives  There is a need to assess the role of selenium in mercury accumulation in tropical ecosystems. Without further studies of the speciation of selenium in livers of fishes from this region, the precise role of this element, if any, cannot be verified in positively affecting mercury accumulation. Further studies of this element in the study of marine species should include liver samples containing relatively high concentrations of mercury. A basin-wide survey of selenium in fishes is also recommended.  相似文献   
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