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首页> 外文期刊>Journal of Environmental Health Science and Engineering >Preparation and application of oyster shell supported zero valent nano scale iron for removal of natural organic matter from aqueous solutions
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Preparation and application of oyster shell supported zero valent nano scale iron for removal of natural organic matter from aqueous solutions

机译:牡蛎壳载零价纳米铁从水溶液中去除天然有机物的制备及应用

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BackgroundIn this Research, oyster shell supported zero valent iron nanoparticles were prepared and applied for the removal of natural organic matters (NOMs) from aqueous solutions under different experimental conditions.MethodsThe nanoadsorbents prepared by wet impregnation method, then characterized using Scanning Electron Microscopy, Energy Dispersive Spectroscopy, X-Ray Fluorescence and BET analysis. Adsorption test was done in a batch reactor and the effects of different parameters such as initial adsorbate concentration, adsorbent dose, adsorption kinetic, pH, and temperature on removal of NOMs (humic acid as the indicator) were studied.ResultsResults showed that particle size of nanoadsorbent was in the range of 60-83?nm, and surface area and micropore volume as 16.85?m2/g and 0.021?m3/g, respectively; the main elements of adsorbent were Ca, O, Fe and Na and lime, as high as about 94.25% was the main structural component of the total weight. Produced nanoadsorbent was not soluble in water. It was also shown that by increasing the nanoadsorbent dose from 0.5 to 5?g/100?ml, the removal of humic acid increased from 62.3% to 97.4%. An inverse relationship was found between initial concentration and adsorption capacity, so that a decreasing rate of 33% for humic acid removal was observed by increasing pH from 5 to 10. Temperature increase from 25°C to 40°C, resulted in an increase in humic acid removal from 76.8% to 91.4% and its adsorption on the adsorbent could be better described by Freundlich isotherm (n?=?0.016, Kf?=?0.013 and R2?=?0.74). The most fitted adsorption kinetic model was pseudo-second order model.ConclusionsThe chemical structure of nanoadsorbent was proper and free from harmful substances. Despite the relative good condition of the effective surface, due to the large size of the shell, the overall micropore volume was low. Hence the qualitative characteristics the adsorbent caused the absorption capacity of humic acid to be low (0.96?mg/g).
机译:背景技术在本研究中,制备了牡蛎壳负载的零价铁纳米颗粒,并用于在不同实验条件下从水溶液中去除天然有机物(NOMs)。光谱,X射线荧光和BET分析。在间歇式反应器中进行吸附试验,研究了不同参数(如初始吸附物浓度,吸附剂剂量,吸附动力学,pH和温度)对NOMs(以腐殖酸为指示剂)去除的影响。纳米吸附剂的范围为60-83?nm,表面积和微孔体积分别为16.85?m2 / g和0.021?m3 / g。吸附剂的主要元素是钙,氧,铁和钠以及石灰,高达总重量的主要结构成分高达约94.25%。产生的纳米吸附剂不溶于水。还显示出,通过将纳米吸附剂剂量从0.5增加到5?g / 100?ml,腐殖酸的去除率从62.3%增加到97.4%。发现初始浓度与吸附容量之间存在反比关系,因此,通过将pH从5升高到10,可以观察到腐殖酸去除率降低了33%。温度从25°C升高到40°C,导致了Hg的升高。腐殖酸的去除率从76.8%提高到91.4%,并且其在吸附剂上的吸附可以用Freundlich等温线更好地描述(n = 0.016,Kf = 0.013,R2 = 0.74)。最适合的吸附动力学模型是拟二阶模型。结论纳米吸附剂的化学结构合理,无有害物质。尽管有效表面条件相对良好,但是由于壳的尺寸较大,所以总的微孔体积很小。因此,吸附剂的定性特性导致腐殖酸的吸收能力低(0.96?mg / g)。

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