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Influence of porosity and composition of porous carriers on the uptake of nutrients

机译:孔隙率和多孔载体组成对养分吸收的影响

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The current paper assesses the potential of industrial solid wastes utilization such as blast furnace slag (BFS) and zeolite synthesized from fly ash (ZFA), which are effective as well as economically attractive for the uptake of phosphate and ammonium from polluted seawater. The solidification of BFS and ZFA has been developed in different proportions of BFS/ZFA (30/70, 50/50 and 70/30 (w/w)) with different porosities (25%, 40% and 52%, respectively) to cylindrical porous carriers using a Hydrothermal Hot-Pressing (HHP) method. The concentrations of heavy metals in ZFA and BFS were too low to affect the aquatic environment. The main finding is that the high rate of BFS (70%) in porous carriers enhanced phosphate uptake explained by the higher percentage of calcium (35.7%) in porous carriers and high pH conditions. The efficient ammonium uptake was observed with high rate of ZFA (70%) in porous carriers. Results found through this experimental work imply that porous carriers with BFS/ZFA proportion of 70/30 are suitable for potential practical application in the aquatic environment due to their efficient uptake of phosphate and ammonium. The choice was made upon their porosity (40%) and their compressive strength (56 kgf/cm(2)) which are relatively higher than those with BFS/ZFA proportion of 30/70 and 50/50. [References: 15]
机译:本文评估了工业固体废物的利用潜力,例如高炉矿渣(BFS)和由粉煤灰(ZFA)合成的沸石,它们对于从受污染的海水中吸收磷酸盐和铵盐均有效且在经济上具有吸引力。 BFS和ZFA的固化已按照不同孔隙率(分别为25%,40%和52%)的BFS / ZFA比例(分别为30 / 70、50 / 50和70/30(w / w))进行了开发,使用热液热压(HHP)方法的圆柱形多孔载体。 ZFA和BFS中的重金属浓度太低,无法影响水生环境。主要发现是,多孔载体中BFS的高比率(70%)提高了磷酸盐的吸收,这可以解释为多孔载体中钙的百分比较高(35.7%)和高pH条件。在多孔载体中,高ZFA率(70%)观察到有效的铵吸收。通过该实验工作发现的结果表明,由于BFS / ZFA比例为70/30的多孔载体有效地吸收了磷酸盐和铵盐,因此适合在水生环境中进行潜在的实际应用。选择它们的孔隙率(40%)和抗压强度(56 kgf / cm(2))相对高于BFS / ZFA比例为30/70和50/50的那些。 [参考:15]

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