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Environmental Science and Pollution Research - Despite their important role in the fight against global climate change, the coordination of green pharmaceutical supply chains (GPSC) has rarely been...  相似文献   
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对以天然气、食盐为原料生产基础化工产品的综合性化工企业的职工调查显示,恶性肿瘤已成为该企业职工死亡的主要原因之一,总死亡率为1.44‰,与当地对照有显著性,尤以肺癌、肝癌、食道癌为主.动态观察显示,职工恶性肿瘤死亡率从1971~的0.41‰上升为1996~的1.93‰,总体呈现逐年上升的趋势.1991~以来的男、女职工死亡性比率为1.90∶1,两者差异非常显著,目前3位死因都有统计学意义.这说明恶性肿瘤对该企业职工,特别是男性职工的生命健康威胁越来越大,应成为今后卫生工作的重点之一.  相似文献   
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The chemical characteristics, element contents, mineral compositions, and the ameliorative effects on acid soils of five biomass ashes from different materials were analyzed. The chemical properties of the ashes varied depending on the source biomass material. An increase in the concrete shuttering contents in the biomass materials led to higher alkalinity, and higher Ca and Mg levels in biomass ashes, which made them particularly good at ameliorating effects on soil acidity. However, heavy metal contents, such as Cr, Cu, and Zn in the ashes, were relatively high. The incorporation of all ashes increased soil pH, exchangeable base cations, and available phosphorus, but decreased soil exchangeable acidity. The application of the ashes from biomass materials with a high concrete shuttering content increased the soil available heavy metal contents. Therefore, the biomass ashes from wood and crop residues with low concrete contents were the better acid soil amendments.  相似文献   
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Adsorption of Cu(Ⅱ) on rice straw char from acidic aqueous solutions   总被引:1,自引:1,他引:0  
研究了稻草炭对Cu(Ⅱ)的吸附特征,探讨了Cu(Ⅱ)的吸附机制.结果表明,稻草炭对Cu(Ⅱ)有很高的吸附容量,Langmuir方程能很好地拟合Cu(Ⅱ)吸附等温线,因此可以描述稻草炭对Cu(Ⅱ)的吸附,其预测的Cu(Ⅱ)在pH 4.5和pH 5.0时的最大吸附量分别为0.628 mol.kg-1和0.763 mol.kg-1.稻草炭对Cu(Ⅱ)的吸附量随体系pH升高而增加,但吸附Cu(Ⅱ)的解吸率呈相反的变化趋势.当吸附体系pH≤4.5时,Cu(Ⅱ)解吸率大于55%,说明此时以静电吸附为主;在较高pH条件下Cu(Ⅱ)以非静电吸附机制为主.红外光谱的分析结果表明,稻草炭表面有丰富的—COOH和—OH等含氧官能团,Cu2+与含氧官能团形成有机络合物导致—COOH吸附峰位移.Cu(Ⅱ)吸附使稻草炭颗粒的Zeta电位向正值方向位移.结果说明Cu(Ⅱ)在稻草炭表面发生了专性吸附.  相似文献   
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To further improve the removal ability of layered double hydroxide(LDH) for iodide(I~-) anions from wastewater, we prepared hierarchically porous Cu_5Mg_(10)Al_5-LDH and used as a matrix for in suit growth of Cu/Cu_2O on its surface, forming Cu/Cu_2O-LDH, which was characterized and applied as an adsorbent.Results displayed high I~-saturation uptake capability(137.8 mg/g) of Cu/Cu_2O-LDH compared with Cu_5Mg_(10)Al_5-LDH(26.4 mg/g) even thermal activated LDH(76.1 mg/g).Thermodynamic analysis showed that the reaction between I~-anions and Cu/Cu_2O-LDH is a spontaneous and exothermic.Uptake kinetics analysis exhibited that adsorption equilibrium can be reached after 265 min.Additionally, the adsorbent showed satisfactory selectivity in the presence of competitive anions(e.g., SO_4~(2-)), and could achieve good adsorption performance in a wide pH range of 3–8.A cooperative adsorption mechanism was proposed on the basis of the following two aspects:(1) ion exchange between iodide and interlayer anions;(2) the adsorption performance of Cu, Cu(Ⅱ) and Cu_2O for I~-.Meanwhile, the difference between the adsorption mechanism of Cu/Cu_2O-LDH, Cu_5Mg_(10)Al_5-LDH and Cu_5Mg_(10)Al_5-CLDH adsorbents was also elaborated and verified.  相似文献   
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