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1.
采用盐酸溶液对蛭石进行浸渍处理,考察了盐酸溶液改性蛭石对气态单质汞的吸附能力。研究结果表明:盐酸溶液改性蛭石对气态单质汞的吸附效果好于未改性蛭石,盐酸浓度为4.0mol/L时,盐酸溶液改性蛭石对气态单质汞的吸附效果较佳;进气中气态单质汞的质量浓度越高,盐酸溶液改性蛭石对气态单质汞的去除率越低;适当提高吸附温度对盐酸溶液改性蛭石吸附气态单质汞较有利;降低蛭石粒径,盐酸溶液改性蛭石对气态单质汞的去除率提高。 相似文献
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以酸性矿山废水生成的铁絮体和秸秆生物炭为原料,采用化学改性和紫外辐射联用技术制备改性生物炭,并通过正交试验确定最佳改性条件,同时利用FTIR、SEM和BET等方法对吸附材料的形貌特征、孔隙结构及其表面化学性质进行表征.结果表明,通过改性使吸附材料比表面积增大,吸附位点增多,在25℃、pH为7时,吸附材料改性后比表面积为295.71 m2·g-1,对Pb(II)的拟合吸附量可达278 mg·g-1.改性材料对Pb(II)的吸附过程符合Langmuir吸附等温线模型和准二级动力学模型,主要为单分子层吸附,受化学吸附控制. 相似文献
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通过吸附与原位模拟实验,研究了镧铝改性凹凸棒粘土(La/Al@ACP)对水体有机磷的吸附性能及其覆盖对沉积物磷释放的影响,并通过沉积物磷分级、DGT技术、扫描电镜能谱技术探讨材料覆盖对沉积物磷形态影响机制.结果显示,La/Al@ACP添加后,上覆水及底泥间隙水中磷含量显著下降,并伴随沉积物有效磷通量的减少.有机磷形态分析表明,添加La/Al@ACP后活性态的Lab-Po不断向稳定态的Hum-Po转化,有效控制了底泥磷向上覆水释放的风险.La/Al@ACP作为一种控制湖泊富营养化的有效材料,可用于底泥内源磷的固定与控制. 相似文献
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Soil to plant transfer factor (TF) of60Co and 65Zn was determined fromradioisotope experiments on plants grown in pots underoutdoor ambient tropical conditions for three growingseasons (1995–1998). The TFs were obtained fordifferent plants/crops such as, rice, bean, peanutspineapple, cabbage, tomato, spinach and grass. Theaverage TF values of 60Co are found to be 0.087,0.15, 0.12, 0.67, 0.28, 0.79, 1.03 and 0.34respectively for the above mentioned plants/crops. Incase of 65Zn, the average TF values are found tobe 2.24, 1.17, 0.89, 1.09, 0.78, 1.34, 2.92 and 1.78,respectively, for the above mentioned plants/crops. Thedata will be useful to assess the radiation exposureto man associated with the releases of radionuclidesfrom nuclear facilities by means of radiologicalassessment models that require transfer factors asinput parameters to predict the contamination ofradionuclides in foodchain. 相似文献
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Sulphate leaching losses may reduce the long-term possibility of maintaining the S supply of crops in low input farming systems. The ability of catch crops (Italian ryegrass (Lolium multiflorum Lam), winter rape (Brassica napus L.) and fodder radish (Raphanus sativus L.)) to reduce soil sulphate concentrations in autumn and make it available to a succeeding crop was investigated in 1996–1998 on sandy loam soil in Denmark. All catch crops reduced soil sulphate concentrations in the autumn compared to bare soil. Especially, the cruciferous catch crops had the ability to deplete efficiently soil sulphate levels and thus, reduce the sulphate leaching potential. The S uptake in aboveground catch crop was 8, 22 and 36 kg S per ha for ryegrass, winter rape and fodder radish, respectively. In the following spring, sulphate levels of the autumn bare soil were low in the top 0.5 m and a peak of sulphate was found at 0.75–1 m depth. In contrast, where a fodder radish catch crop had been grown, high sulphate levels were present in the top 0.5 m, but only small amounts of sulphate were found at 0.5–1.5 m depth. In spring barley (Hordeum vulgare L.), that followed catch crops, S concentrations at heading and maturity revealed that the availability of soil S increased following winter rape and fodder radish, whereas there were indications that following ryegrass, the S availability was reduced compared to bare soil. This initial study showed that catch crops have a high potential for reducing sulphate leaching and may be used to synchronise S availability with plant demand in a crop rotation. 相似文献
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Toxic metals in sewage sludge-amended soils: has promotion of beneficial use discounted the risks? 总被引:1,自引:0,他引:1
M.B. McBride 《Advances in Environmental Research》2003,8(1):5-19
Land application of contaminated waste products has been defended as beneficial use by some scientists and regulators, based on the premise that the behavior of any toxins accumulated in soils from this practice is reasonably well understood and will not have detrimental agronomic or environmental impacts into the foreseeable future. In this review, I use the case of toxic metals in sewage sludges applied to agricultural land to illustrate that metal behavior in soils and plant uptake is difficult to generalize because it is strongly dependent on the nature of the metal, sludge, soil properties and crop. Nevertheless, permitted agricultural loadings of toxic metals from sewage sludges are typically regulated using the sole criterion of total metal loading or concentrations in soils. Several critical generalizing assumptions about the behavior of sludge-borne metals in soil-crop systems, built into the US EPA risk assessment for metals, have tended to underestimate risks and are shown not to be well justified by published research. It is argued that, in the absence of a basic understanding of metal behavior in each specific situation, a more precautionary approach to toxic metal additions to soils is warranted. 相似文献
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