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Influences of organic matters of soil and water on speciation and biological utilization of selenium are discussed. Humic acid is found to be the main pool of selenium in soil and affects the bio-availability of the element in soil-plant system. Fulvic acid from drinking water inhibits the absorption of selenium taken from diet. The relationship between high content of organic matters of water and selenium deficiency on the causes of KBD could be reflected in the limited synthesis of glutathione peroxidase, which is generally stimulated by fulvic acid from drinking water. 相似文献
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In order to provide further references for studing on the causes of Kaschin-Beck discase (KBD) and measuring for its prevention and treatment from a macroscopic view, we analyzed the natural growth and declineof KBD and the effects of selenium and humic acid on its occurrence from an epidemiologic angle. In this article through a retrospective survey on the spots of disease areas by comparison between a change in water sources and that without. It was proved that a change in water sources was an effective measure for the prevention of KBD occurrence, and the pathogenic factor of KBD was one (or several kinds) of organic compounds or active radicals related to water. 相似文献
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Kaschin-Beck disease (KBD) could be exogeneous free radical induced endemic osteoarthropathy under conditions of lacking necessary antioxidant defences.especially selenium-cored defence in Chinese eco-en-vironment. Experimental evidences have been provided for the internal relations among previously suggested pathologic factors, i.e., selenium deficiency, organic matters of drinking waterand mycotoxins from contaminated grains, based on the facts that the former is a preventory factor while the others are exogenous freeradical carriers. ESR spectrum shows that these exogenous free radical carriers have a property of semi-quinone compounds and are toxic in in-vitro cartilage cell culture and animal tests in inducing lipid peroxidation process. 相似文献
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不同来源腐殖酸的光解及过氧化氢对其影响 总被引:7,自引:0,他引:7
为探讨腐殖酸在环境中的行为及光解除去腐殖酸的可能性,利用大于290nm的模拟日光辐照,探讨了大骨节病病区、非病区腐殖酸和泥炭腐殖酸的光解过程和光解机理及过氧化氢对其光解的影响,发现随着光照时间的延长,腐殖酸水体系的总有机碳(TOC)含量降低,pH值下降,过氧化氢可以促进腐殖酸的光解,其光解过程遵循一级动力学规律。计算了不同来源腐殖酸光解的速率及光解半衰期,发现土壤和泥炭腐殖酸比大骨节病病区饮水中腐 相似文献
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通过测定贵州丹寨县主要水稻种植区30件水稻土及对应的水稻中硒和重金属的含量,分析硒和重金属Cd、Hg、As、Pb在根系土及对应水稻中的分布特征,研究了土壤有机质和pH对硒和重金属在土壤-水稻系统中迁移的影响。结果表明:该地区水稻根系土中硒含量变化范围为0.27~0.98 mg/kg,平均值为0.65 mg/kg, 70%的样品达到富硒土壤标准,但是仅23.3%水稻籽实样品达富Se大米标准。土壤重金属污染风险较大,特别是Hg和Cd,其中80%的样品Hg超《土壤环境质量农用地土壤污染风险管控标准(试行)》(GB 15618—2018)中污染风险筛选值,但水稻籽实中尚无重金属超标现象。水稻根系对硒的富集能力相对最强,其次为茎、叶和籽实。重金属也主要积累在根系中。水稻籽实Se含量与土壤Se总量的相关性不显著,与土壤pH和有机质含量呈显著负相关。水稻籽实中Cd与土壤Se和pH呈显著的负相关关系。土壤中As和Hg向水稻的迁移则主要受总量的控制。水稻各部位Se的吸收能力与土壤重金属存在极显著负相关性,据此可采取措施如降低土壤中的重金属尤其是Cd和Hg的含量及减少有机肥的施用来提高Se在籽实中的积累。 相似文献
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张瑞华 《辽宁城乡环境科技》2004,24(5):16-18
从硒的生物学作用和防治疾病等方面剖析了硒与人体健康的关系;从元素地球化学、生物地球化学和化学地理等方面探讨了我国缺硒区的形成、分布和等级的划分;从环境地球化学物质场和元素生物地球化学营养链等方面.阐明了作物、禽畜和人体缺硒的原因、危害及其人体补硒的途径和方法,提出了在缺硒区运用元素生物地球化学营养链营养结构模式的原理、和技术方法,从土壤中获取富硒有机食品,供居民食用,是进行食物补硒、提高人体摄硒量、提高人体免疫功能和防治缺硒病症的根本措施。 相似文献
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本文概述了硒的物理、化学性质 ,形态和存在形式以及硒的地球化学循环和富集作用。硒呈四种主要的无机形态存在于自然界中 :硒化物 ( -2价 )、元素硒 ( 0价 )、亚硒酸盐 ( +4价 )和硒酸盐 ( +6价 )。不同硒形态的存在 ,很大程度上取决于 pH和Eh条件。硒的天然的、总的地球化学循环主要涉及壳岩源和海洋沉积物。次一级的循环涉及其它无机源和沉积物。另外 ,整个硒的壳循环 (岩石圈、生物圈、水圈和大气圈 )也强烈受到生物化学反应的影响 ,这些反应使硒在有机组分中固定或迁移。人类活动向环境中排放的硒极大地改变了硒天然的地球化学循环 ,主要是煤的燃烧、硫化物矿床的开采及工业上利用硒所产生的废料。岩浆期后热液活动阶段是硒最主要的活动、富集阶段 ,硒能大量地呈分散形式 (类质同像 )或独立矿物形式存在于这一阶段中 ;在火山及喷气活动产物 (有关热泉 )中硒的富集程度也很高。另外 ,硒在页岩特别是海相黑色页岩中的富集作用与生物活动有密切的关系。 相似文献
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通过对青阳县富硒土壤中各形态硒的含量及种植水稻中硒的含量测定,研究青阳县富硒土壤中各形态硒的赋存分布特征,探讨水稻中硒含量及分布特点,同时对土壤中各形态的硒与水稻中硒的相关性进行研究。研究结果显示:青阳县富硒土壤中各形态硒的含量差异较大,其中强有机结合态、腐殖酸态和残渣态的硒,含量较高,占到总量的10%以上;而水溶态、离子态、铁锰态、碳酸盐态的硒含量较低,占总量比例皆低于5%;研究区水稻籽粒中硒的含量均值为0. 063 8 mg/kg高于全国平均水平0. 032 mg/kg,达到了国家富硒水稻的标准;水稻对土壤中硒的富集利用与土壤中硒的形态关系密切,当地土壤中水溶态和腐殖酸态的硒与水稻中硒的含量呈显著相关,而其它形态的硒相关性不明显,说明水稻吸收利用的主要是土壤中水溶态与腐殖酸态的硒。据此可以通过施加有机生物质的生产措施,增大土壤腐殖酸态硒的含量,提高土壤中有效硒的供给含量,以有利于水稻对土壤中硒的吸收富集,提高水稻中硒的含量。 相似文献
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采集雄安新区表层土壤样品(0~20cm)、大宗农作物(小麦籽实)及根系土样品,利用GIS空间分析、相关分析等方法对土壤硒含量分布、富集特征及影响因素进行分析,基于生态位适宜性评价理论模型开展富硒土地资源开发利用适宜性评价.结果表明:新区表层富硒土地16993hm2,土壤中硒赋存形态以强有机结合态为主,其次为残渣态和腐殖酸结合态,三者占土壤硒总量的87%以上,生物可利用态硒含量所占比例相对较小(水溶态硒占比4.44%、离子交换态硒占比3.43%).小麦籽实样品富硒率28.45%,籽实中硒含量与根系土壤中硒含量具有显著相关性(r=0.77,P<0.01).土壤硒富集主要受第四纪沉积地貌环境的影响,此外灌溉水、化肥和大气干湿沉降(燃煤降尘)等外源输入也影响贫化富集.土壤硒含量与沉积地貌环境“标志性”土壤指标Al2O3、Fe2O3、MgO和K2O含量,土壤有机碳(Corg.)、阳离子交换量(CEC)、黏粒和粉粒含量等具有显著正相关关系,与SiO2、Na2O含量和土壤砂粒含量等具有显著负相关关系(P<0.01).基于生态位评价理论模型,新区富硒土地资源开发利用适宜性评价结果表明:高适宜区(Ⅰ级)和中适宜区(Ⅱ级)主要位于新区西北容城县南张镇和小里镇、安新县寨里乡和老河头镇等地,土地面积为14397.35hm2,占新区规划总面积的8.13%. 相似文献
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The photocatalytic degradation of reactive dyes with solar-irradiated TiO2 was investigated in these experiments which showed that: (1)the decolourization efficiency are determined by pH value, catalyst amount and light intensity; (2) the reactive dyes decolourized rapidly (cleavageld be biologically degradated more easily, the toxicity decreased considerably after photodegradation.The results demonstrated that the photocatalytic process would become an efficient and safe method for colour wastewater treatment and would be very useful for explaining the reaction mechanism and decolourising structure-reactivity relationship. of the azo linkage), but the intermediates needed more time to transform to further degradation products, and finally to produce CO2; (3) the main products were identified to be alkanes and alkyl amines which cou 相似文献
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采用溶胶-凝胶方法制备光催化性能优良的TiO2纳米膜,应用X射线衍射仪分析了TiO2纳米膜的结构,探讨了铁离子和贵金属Ag、Pt掺杂对TiO2纳米膜光催化降解性能的影响,研究了TiO2纳米膜及掺杂改性TiO2纳米膜对生物二级处理系统出水中有机物光催化去除的性能。贵金属Ag、Pt掺杂提高了TiO2纳米膜光催化性能,而铁离子掺杂则降低了其催化性能。未掺杂的TiO2纳米膜使二级出水的COD下降8.9%,而贵金属Ag、Pt掺杂的TiO2纳米膜则使COD分别下降19.4%和22.3%。实验结果表明TiO2纳米膜有优良的光催化降解性能,TiO2纳米膜有广阔的应用前景。 相似文献
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Shunjiang Li Wei Li Xia Hu Linsheng Yang Ruodeng Xirao 《Frontiers of Environmental Science & Engineering in China》2009,3(1):62-68
In order to investigate the correlation between the prevalence of Kashin-Back disease (KBD) and Se concentrations, natural
soil samples and cultivated soil samples were collected from southeastern Tibet, China; and the soil Se concentrations were
measured by atomic fluorescent spectrophotometer. It was found that the mean Se concentrations of natural soil samples in
KBD areas, from the first layer to the third layer, were 0.17 mg/kg, 0.11 mg/kg, and 0.10 mg/kg, respectively, and in nondisease
areas were 0.21 mg/kg, 0.24 mg/kg, and 0.13mg/kg, respectively. The mean Se concentrations of cultivated soil samples were
0.10 mg/kg in KBD areas and 0.23 mg/kg in non-disease areas, respectively. Soil Se concentrations in KBD areas were lower
than that in non-disease areas, and the mean concentrations of soil Se in Tibet were lower than the average of China (0.29
mg/kg). Therefore, there is a close relationship between soil Se concentrations and KBD in Tibet. More studies should be concentrated
on the impacts of Se deficiency in soils and its relationship with Se concentrations in food-grain and the human body in Tibet
areas. 相似文献
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太湖藻源性颗粒物降解过程中营养盐转化及其生态效应 总被引:4,自引:0,他引:4
以太湖水体中藻源性颗粒有机物作为切入点,研究了不同环境条件下(有光,无光)藻源性颗粒有机物降解过程中C,N,P等营养元素的形态变化过程,分析了藻源性颗粒有机物对水体营养盐循环和浮游植物生长中的作用.实验结果显示,蓝藻水华过程中,藻源性颗粒有机物最高可占水体总C,N,P比例的81.51%,94.60%,97.47%,是水体营养元素的重要组成部分;有光组颗粒物APA显著高于无光组,说明有光组中颗粒态P降解和转化速率显著高于无光组,但有光组水体中SRP浓度低于无光组,Chl-a浓度高于无光组,说明有光组中藻源性颗粒物降解的同时伴随着藻类的生长,颗粒物释放的SRP被浮游植物吸收并转化为生物量;光照对C,N,P的降解过程有明显影响,无光组颗粒物中C,N,P降解速率是有光组的2倍,可降解比例是有光组的(2.5±0.1)倍;实验中还发现前7d各元素的降解速率要高于之后的降解速率.综上,藻源性颗粒物营养盐总量大,生物可利用性高,降解迅速,且降解产物可被浮游植物吸收,是藻类生长和水华发生重要的营养盐来源. 相似文献
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矿业废弃地复垦土壤-作物硒吸收特征及其对重金属拮抗效应 总被引:6,自引:4,他引:2
针对矿业废弃地复垦土壤硒与重金属"双高"现象,为充分开发其富硒土地资源,确保作物安全,本文基于"点对点"采集的土壤和玉米样品,利用反距离权重(inverse distance weighted,IDW)、多元线性回归(multiple linear regression,MLR)、偏最小二乘回归(partial least squares regression,PLSR)和随机森林回归(random forest regression,RFR)等方法,开展了西南某硫磺矿复垦区玉米硒元素吸收预测的同时,分析硒(Se)对重金属(Hg、As、Cd和Cr)的拮抗效应.结果表明研究区土壤中硒资源丰富,土壤Se平均含量达到0.83mg·kg-1,是中国土壤Se平均含量的2.87倍,玉米籽粒硒含量处于0.02~0.16mg·kg-1之间.由相关性分析和模型预测可知,研究区玉米籽粒硒含量主要影响因素为土壤硒、pH值、有机质和重金属As等,多元线性回归(MLR)对其预测最为有效,决定系数R2为0.52.通过比较研究区土壤硒不同含量梯度下玉... 相似文献