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Synthesis and characterization of a magnetic adsorbent from negatively-valued iron mud for methylene blue adsorption

机译:负值铁泥磁吸附剂的合成与表征

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摘要

With increasing awareness of reduction of energy and CO2 footprint, more waste is considered recyclable for generating value-added products. Here we reported the negatively-valued iron mud, a waste from groundwater treatment plant, was successfully converted into magnetic adsorbent. Comparing with the conventional calcination method under the high temperature and pressure, the synthesis of the magnetic particles (MPs) by Fe2+/Fe3+ coprecipitation was conducted at environment-friendly condition using ascorbic acid (H2A) as reduction reagent and nitric acid (or acid wastewater) as leaching solution. The MPs with major component of Fe3O4 were synthesized at the molar ratio (called ratio subsequently) of H2A to Fe3+ of iron mud ≥ 0.1; while amorphous ferrihydrite phase was formed at the ratio ≤ 0.05, which were confirmed by vibrating sample magnetometer (VSM), X-ray diffraction (XRD) and X-ray photoelectron spectroscopy (XPS). With the ratio increased, the crystalline size and the crystallization degree of MPs increased, and thus the Brunauer-Emmett-Teller (BET) surface and the cation-exchange capacity (CEC) decreased. MPs-3 prepared with H2A to Fe3+ ratio of 0.1 demonstrated the highest methylene blue (MB) adsorption of 87.3 mg/g and good magnetic response. The adsorption of MB onto MPs agreed well with the non-linear Langmuir isotherm model and the pseudo-second-order model. Pilot-scale experiment showed that 99% of MB was removed by adding 10 g/L of MPs-3. After five adsorption-desorption cycles, MPs-3 still showed 62% removal efficiency for MB adsorption. When nitric acid was replaced by acid wastewater from a propylene plant, the synthesized MPs-3w showed 3.7 emu/g of saturation magnetization (Ms) and 56.7 mg/g of MB adsorption capacity, 2.8 times of the widely used commercial adsorbent of granular active carbon (GAC). The major mechanism of MPs adsorption for MB was electrostatic attraction and cation exchange. This study synthesized a magnetic adsorbent from the negatively-valued iron mud waste by using an environment-friendly coprecipitation method, which had a potential for treatment of dye wastewater.
机译:随着人们对减少能源和二氧化碳排放量的认识日益提高,更多的废物被认为可回收用于生产增值产品。在这里,我们报道了地下水处理厂产生的负值铁泥已成功转化为磁性吸附剂。与高温高压下的常规煅烧方法相比,Fe 2 + / Fe 3 + 共沉淀法在室温下进行了磁性粒子的合成。使用抗坏血酸(H2A)作为还原剂和硝酸(或酸性废水)作为浸出液的友好条件。以H2A与铁泥中Fe 3 + 的摩尔比≥0.1合成了以Fe3O4为主成分的MP。非晶态水铁矿相的形成比例≤0.05,这通过振动样品磁力计(VSM),X射线衍射(XRD)和X射线光电子能谱(XPS)得以确认。随着比率的增加,MP的晶体尺寸和结晶度增加,因此Brunauer-Emmett-Teller(BET)表面和阳离子交换容量(CEC)降低。以H2A与Fe 3 + 的比例为0.1制备的MPs-3表现出最高的亚甲基蓝(MB)吸附量,为87.3 mg / g,并具有良好的磁响应。 MB吸附在MP上与非线性Langmuir等温模型和伪二级模型非常吻合。中试实验表明,通过添加10 g / L的MPs-3可以去除99%的MB。经过五个吸附-解吸循环后,MPs-3仍显示出62%的MB吸附去除率。当用丙烯工厂的酸性废水代替硝酸时,合成的MPs-3w的饱和磁化强度(Ms)为3.7 emu / g,MB的吸附容量为56.7 mg / g,是广泛使用的颗粒状活性剂商业吸附剂的2.8倍碳(GAC)。 MPs吸附MB的主要机理是静电吸引和阳离子交换。本研究采用环保共沉淀法,从负值铁泥废料中合成了一种磁性吸附剂,具有处理染料废水的潜力。

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