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1.
介绍了无机纳米材料特殊的理化性质,综述了纳米氧化物、纳米含氧酸盐和碳纳米管等无机纳米材料在放射性核素吸附分离中的研究进展。提出应对纳米材料进行负载、修饰或功能化研究,制备高性能的复合纳米材料,提高其稳定性和选择性;寻求更经济可行的制备方法,降低纳米材料的生产成本,逐步实现产业化;深入研究纳米材料对放射性核素的吸附机理;在辐射效应对纳米吸附剂的结构稳定性影响方面开展研究,并与现有方法作比较,评价其应用的有效性和可靠性。  相似文献   

2.
改性泥炭对重金属离子的吸附   总被引:4,自引:0,他引:4  
为了研究泥炭对重金属离子(Pb^2+、Cu^2+、Cd^2+、Cr^6+、Ni^2+)吸附率的各种影响因素,依次进行了溶液pH、振荡时间、改性泥炭投加量、溶液初始浓度等条件试验。结果表明,改性后的泥炭在最适合的条件下,对这5种金属离子都有较强的去除效果,5种金属离子的最大吸附效率均在9096以上。  相似文献   

3.
纳米氧化铝是应用非常广泛的一类人工纳米材料。当它被释放到水环境中后,会与环境中原有的重金属发生相互作用并对其毒性产生影响。文章研究了不同亲疏水性质的纳米氧化铝存在下铜对斜生栅藻的毒性效应,测定了藻细胞的生长抑制、金属积累及超氧化物歧化酶、谷胱甘肽、丙二醛等生化指标的变化。结果表明,纳米氧化铝显著降低了铜离子对藻细胞的生长抑制,藻细胞内铜的积累量及氧化损伤降低。但不同亲疏水性质的纳米氧化铝之间并不存在显著差别。这可能是由于纳米氧化铝对水中的铜离子发生了吸附,间接降低了藻液中的不稳态铜的浓度,从而减轻了铜对藻细胞的毒害。而纳米氧化铝的不同亲疏水性质对吸附水中铜离子的能力没有显著的影响。  相似文献   

4.
膜技术去除废水中重金属离子   总被引:10,自引:1,他引:10  
介绍了应用微滤膜、超滤膜、反渗透膜技术处理含重金属离子废水的方法、过程和效果。利用膜技术再配以适当的预处理方法,如氧化、还原、吸附等,对重金属离子可处理到0.1mg/L以下。  相似文献   

5.
重金属离子Pb2+在石油污染土壤中的吸附作用   总被引:3,自引:0,他引:3  
对比研究了3种土壤(新疆砂土、粘土和东北黑土)及其被石油不同程度污染后对水中重金属离子Pb^2 的吸附作用。结果表明,3种原土壤及油污土壤对Pb^2 的吸附均符合Langmuir等温式;原土壤上Pb^2 的饱和吸附量为黑土>>粘土>砂土;在一定范围内,砂土、粘土中石油的存在对其吸附重金属离子Pb^2 的能力影响较小,而黑土对Pb^2 的吸附能力则随所含石油量的增大而迅速减少。  相似文献   

6.
城市区域大气颗粒物的健康效应研究   总被引:14,自引:5,他引:9  
从大气颗粒物的来源和转化、人体损伤及毒理学角度3个方面探讨了其对人体健康效应的影响。结果表明,次微米和纳米粒径级别的大气颗粒物及其化学组成能在最大程度上损伤人体机能。粒径不一的颗粒物有不同的沉积机制、沉积部位和沉积量,化学价态是重金属离子毒性大小的首要因子。从次微米级水平来研究颗粒物的毒性,才能为制定更为有效的大气颗粒物污染防治措施以及在研究大气颗粒物对人体损伤机理方面提供相应的科学依据。  相似文献   

7.
采用二乙基二硫代氨基甲酸钠(NaDDC)为螯合剂,对Cu(Ⅱ)、Hg(Ⅱ)、Pb(Ⅱ)、Zn(Ⅱ)、Cd(Ⅱ)、Cr(Ⅵ)六种重金属离子进行了螯合萃取分离体系的方法研究,用HPLC方法建立了上述金属离子的最佳分离条件及定性定量分析方法.结果表明,用C18反相柱(5μm,150×4.6mmi.d.)和流动相(V(乙腈):V(甲醇):V(水)=55:15:30)能有效分离上述重金属离子,最低检测限在0.1~1.6ng范围内,线性范围及线性关系满足定量分析要求.  相似文献   

8.
江蓠对水体重金属铅镍的蓄积及生物修复研究   总被引:1,自引:0,他引:1       下载免费PDF全文
以活体细基江篱繁枝变型(Gracilariatunuistipitata var)作为研究材料,以Pb、Ni重金属离子为污染因子,通过室内静态模拟实验,综合利用等离子发射光谱仪,超速离心机.差速离心机等实验手段研究在单一离子污染胁迫下,江蓠对Pb、Ni重金属离子的短期去除效果,各重金属离子在其体内蓄积效应,江蓠质外体、...  相似文献   

9.
对天然水中痕量元素的分析,目前国内外已采用了有机溶剂萃取、离子交换等富集技术。近年来,有关文献报导了利用8-羟基喹啉螯合,活性炭吸附富集水中金属离子的方法。活性炭吸附富集因数一般达100~10000,而有机溶剂萃取富集因数为20~50,因此,利用活性炭预富集痕量金属,是一个值得探讨的途径。  相似文献   

10.
绿色安全处理剂—氢氧化镁的应用概述   总被引:2,自引:0,他引:2  
介绍了氢氧化镁在处理酸性废水、印染废水、废水中的重金属离子、烟气中的硫、废水中的氮磷及其它有害物质等方面的优越性。由于我国的镁矿资源丰富,随着生产技术和应用研究的完善,氢氧化镁产品在国内外市场具有广阔的发展前景。  相似文献   

11.
用ICP—AES检测离子浓度方法研究了不同形态MnO2在不同pH下对污水中重金属离子Pb2+和Cd2+的吸附效果。结果表明:当溶液的pH=7时最有利于吸附,且α形态MnO2对重金属离子的吸附效果最好,其中对Pb2+最高吸附效率可达99.84%,对Cd2+的最高吸附效率可达71.54%。  相似文献   

12.
The adsorption behavior of natural Jordanian zeolites with respect to Cd(2 + ), Cu(2 + ), Pb(2 + ), and Zn(2 + ) was studied in order to consider its application to purity metal finishing drinking and waste water samples under different conditions such as zeolite particle size, ionic strength and initial metal ion concentration. In the present work, a new method was developed to remove the heavy metal by using a glass column as the one that used in column chromatography and to make a comparative between the batch experiment and column experiment by using natural Jordanian zeolite as adsorbent and some heavy metals as adsorbate. The column method was used using different metal ions concentrations ranged from 5 to 20 mg/L with average particle size of zeolite ranged between 90 and 350 mum, and ionic strength ranged from 0.01 to 0.05. Atomic absorption spectrometry was used for analysis of these heavy metal ions, the results obtained in this study indicated that zeolitic tuff is an efficient ion exchanger for removing heavy metals, in particular the fine particle sizes of zeolite at pH 6, whereas, no clear effect of low ionic strength values is noticed on the removal process. Equilibrium modeling of the removal showed that the adsorption of Cd(2 + ), Cu(2 + ), Pb(2 + ), and Zn(2 + ) were fitted to Langmuir, Freundlich and Dubinin-Kaganer-Radushkevich (DKR). The sorption energy E determined in the DKR equation (9.129, 10.000, 10.541, and 11.180 kJ/mol for Zn(2 + ), Cu(2 + ), Cd(2 + ) and Pb(2 + ) respectively) which revealed the nature of the ion-exchange mechanism.  相似文献   

13.
Multivariate analysis of heavy metals concentrations in river estuary   总被引:1,自引:0,他引:1  
Multivariate statistical techniques such as multivariate analysis of variance (MANOVA) and discriminant analysis (DA) were applied for analyzing the data obtained from two rivers in the Penang State of Malaysia for the concentration of heavy metal ions (As, Cr, Cd, Zn, Cu, Pb, and Hg) using a flame atomic absorption spectrometry (F-AAS) for Cr, Cd, Zn, Cu, Pb, As and cold vapor atomic absorption spectrometry (CV-AAS) for Hg. The two locations of interest with 20 sampling points of each location were Kuala Juru (Juru River) and Bukit Tambun (Jejawi River). MANOVA showed a strong significant difference between the two rivers in terms of heavy metal concentrations in water samples. DA gave the best result to identify the relative contribution for all parameters in discriminating (distinguishing) the two rivers. It provided an important data reduction as it used four parameters (Zn, Pb, Cd and Cr) affording 100% correct assignations. Results indicated that the two rivers were different in terms of heavy metals concentrations in water, and the major difference was due to the contribution of Zn. A negative correlation was found between discriminate functions (DF) and Cr and As, whereas positive correlation was exhibited with other heavy metals. Therefore, DA allowed a reduction in the dimensionality of the data set, delineating a few indicator parameters responsible for large variations in heavy metal concentrations. Correlation matrix between the parameters exhibited a strong evidence of mutual dependence of these metals.  相似文献   

14.
以某大型火法铜冶炼企业竣工环保验收监测项目为例,从监测因子的选择,监测、分析过程中的质量保证,固体废物检查,周边环境质量监测等方面,对铜冶炼项目环保验收监测中发现的问题进行了分析。提出,应开展重金属元素Sb的毒理方面的研究,并出台相关排放标准;在监测项目的选择时,考虑金属元素在矿材中的伴生问题;重视验收监测中的质量控制,尤其是分析过程中的空白扣除和加标回收;对涉及重金属及As的项目,适时开展环境影响后评价及跟踪监测。  相似文献   

15.
电镀企业产生的漂洗水中含有大量的重金属,处理后生成的电镀重金属污泥属于危废,国家有相关的处置规定,若处置不当,会对环境造成二次污染,并且造成重金属的流失。介绍了利用离子交换法、电解法、膜分离技术、电去离子法等相关方法回收电镀漂洗废水中重金属的国内外的研究进展;从源头抓起,减少了电镀企业重金属元素的排放量,同时对废水的合理回用提供一些可行性方案。  相似文献   

16.
Various aquatic plant species are known to accumulate heavy metals through the process of bioaccumulation. World’s most troublesome aquatic weed water hyacinth (Eichhornia crassipes) has been studied for its tendency to bio-accumulate and bio-magnify the heavy metal contaminants present in water bodies. The chemical investigation of plant parts has shown that it accumulates heavy metals like lead (Pb), chromium (Cr), zinc (Zn), manganese (Mn) and copper (Cu) to a large extent. Of all the heavy metals studied Pb, Zn and Mn tend to show greater affinity towards bioaccumulation. The higher concentration of metal in the aquatic weed signifies the biomagnification that lead to filtration of metallic ions from polluted water. The concept that E. crassipes can be used as a natural aquatic treatment system in the uptake of heavy metals is explored.  相似文献   

17.
A selective method has been developed for the determination of trace amount of metal ions after preconcentration on 1-(2-pyridylazo)-2-naphthol loaded Amberlite XAD-4 resin. The chelating resin was characterized on the basis of infra red spectra, thermal and chemical stability, and hydrogen ion capacity. High preconcentration factor of 160?C400 up to a low preconcentration limit of 10 ??g L???1 has been achieved for almost all the metals. The chelating resin was highly selective even in the presence of large concentrations of alkali and alkaline earth metals and various matrix components. Chromatographic separation of metal ions in binary mixtures has been accomplished. The analytical utility of the resin for metal ions was explored by analyzing natural water and standard reference materials.  相似文献   

18.
In this study, we explored the multiple heavy metal-resistant yeast isolated from heavy metal-polluted environment. The isolated yeast showed maximum growth at 30 °C, pH 7.0, and the strain was identified as Candida tropicalis through 18S ribosomal RNA (rRNA) gene sequence analysis. Yeast cells grew well in medium containing different concentrations of heavy metal ions [CdCl2, Pb(NO3)2, NaAsO2, CuSO4 and K2Cr2O7]. Minimum inhibitory concentration (MIC) against different metal ions was ranged from 5 to 19 mM, and the metal resistance value against each metal observed by yeast cells was 5 mM (Cr), 10 mM (Cd), 15 mM (As), 14 mM (Cu) and 19 mM (Pb) and increased in the following order: Pb > Cu > As ≥ Cd > Cr. The total cellular glutathione, GSH/GSSG redox couple and metallothioneins like protein (MT) were assayed by growing cultures for 24 h and exposed to 100 mg/L of each heavy metal ion. Remarkable increase in γ-glutamylcysteinylglycine (GSH) level was determined in arsenic and cadmium treatment followed by chromium, lead and copper. Stressed cells had much more oxidized GSH than unstressed cells. GSH/GSSG ratio was significantly increased in cadmium and copper treatment in contrast to chromium, arsenic and lead. Statistical analysis revealed significantly higher cysteine level in all metal-treated samples as compared to control. Antioxidant glutathione transferase activity was not detected in metal-treated and untreated yeast samples. One-dimensional electrophoresis of proteins revealed marked differences in banding pattern of heavy metal-exposed yeast samples. A prominent 20 kDa band was observed in all treated samples suggesting that some differential proteins could be over-expressed during heavy metal treatment and might be involved in cell resistance mechanisms.  相似文献   

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