首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Sorption of Chromium(VI), Cadmium(II) Ions and Methylene Blue Dye by Pristine, Defatted and Carbonized Nigella sauva L. Seeds from Aqueous Solution
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Sorption of Chromium(VI), Cadmium(II) Ions and Methylene Blue Dye by Pristine, Defatted and Carbonized Nigella sauva L. Seeds from Aqueous Solution

机译:铬(VI),镉(II)离子和亚甲基蓝染料的原始,脱脂和碳化Nigella Sauva L.种子来自水溶液的铬(II)和亚甲基蓝染料

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Present study reports on the sorption study of chromium(VI), cadmium(n) ions and methylene blue dye by pristine, defatted and carbonized Nigella sativa L. seeds from aqueous solution. The removal of oil from pristine Nigella sativa L. (PNS) seeds was carried out by defatting the Nigella sativa with acetone and TV-dimethylformamide and then labelled ANS and DNS, respectively. Thereafter the defatted ANS and DNS adsorbents were carbonized at 600 °C for 2 h under nitrogen and labelled as CANS and CDNS. The results of pristine, defatted and carbonized seeds were compared. The removal of Cr(VI), Cd(TJ) and methylene blue dye from aqueous solutions was investigated by varying adsorbate concentration, solution pH, reaction contact time and temperature of the solution. The SEM images indicated that the surface morphology of PNS was irregular, whilst ANS and DNS had pores and cavities. CANS and CDNS was heterogeneous and had pores and cavities. FTIR spectroscopy showed that the adsorbents surfaces had bands that indicated a lot of oxygen containing groups. The pH of the solution had an influence on the removal uptake of Cr(VI), Cd(ll) and methylene blue. The sorption of Cr(VI) decreased when pH of the solution was increased due to different speciation of Cr(VI) ions whilst the removal of Cd(H) and methylene blue increased when solution pH was increased. Pseudo first order kinetic model well described the adsorption of Cr(VI), Cd(II) and methylene blue onto PNS. On the other hand, the kinetic data for ANS, CANS, DNS and CDNS was well described by pseudo second order. Furthermore, the removal mechanism onto PNS and ANS was better described by Freundlich multilayer model. The CANS, DNS and CDNS fitted Langmuir monolayer model. Thermodynamic parameters indicated that the sorption processes of Cr(VI), Cd(JJ) and methylene blue was endothermic and effective at high temperatures for all adsorbents. The AS° and AH° had positive values this confirmed that the sorption of Cr(VI), Cd(II) and methylene blue onto all adsorbents was random and endothermic, respectively. The values of AG° confirmed that the sorption of Cr(VI), Cd(H) and methylene blue on all adsorbents was spontaneous and predominated by physical adsorption process. The CANS had highest adsorption capacity of 99.82 mg/g for methylene blue, 96.89 mg/g for Cd(II) and 87.44 mg/g for Cr(VI) followed by CDNS with 93.90, 73.91 and 65.38 mg/g for methylene blue, Cd(II) and Cr(VI), respectively. The ANS capacities were 58.44,45.28 and 48.96 mg/g whilst DNS capacities were 48.19,32.69 and 34.65 mg/g for methylene blue, Cd(II) and Cr(VI), respectively. PNS had the lowest sorption capacities at 43.88, 36.01 and 19.84 mg/g for methylene blue, Cd(II) and Cr(VI), respectively.
机译:本研究报告了原始、脱脂和炭化的黑种草种子在水溶液中对铬(VI)、镉(n)离子和亚甲基蓝染料的吸附研究。通过用丙酮和TV-二甲基甲酰胺脱脂黑种草种子,然后分别标记ANS和DNS,从原始黑种草种子(PNS)中去除油。此后,脱脂ANS和DNS吸附剂在600°C氮气下炭化2小时,并标记为罐和CDN。比较了原始种子、脱脂种子和炭化种子的结果。通过改变吸附质浓度、溶液pH值、反应接触时间和溶液温度,研究了从水溶液中去除Cr(VI)、Cd(TJ)和亚甲基蓝染料的过程。SEM图像显示PNS的表面形态不规则,而ANS和DNS则有孔隙和空腔。CAN和CDN是不均匀的,有孔隙和空腔。FTIR光谱显示,吸附剂表面有表明大量含氧基团的条带。溶液的pH值对Cr(VI)、Cd(ll)和亚甲基蓝的去除率有影响。由于铬(VI)离子的不同形态,当溶液pH值增加时,铬(VI)的吸附减少,而当溶液pH值增加时,镉(H)和亚甲基蓝的去除增加。拟一级动力学模型很好地描述了PNS对Cr(VI)、Cd(II)和亚甲基蓝的吸附。另一方面,ANS、CANS、DNS和CDN的动力学数据用伪二阶描述得很好。此外,Freundlich多层模型更好地描述了PNS和ANS的去除机理。CAN、DNS和CDN均符合Langmuir单层模型。热力学参数表明,Cr(VI)、Cd(JJ)和亚甲基蓝的吸附过程是吸热的,在高温下对所有吸附剂都有效。AS°和AH°为正值,这证实了所有吸附剂对Cr(VI)、Cd(II)和亚甲基蓝的吸附分别是随机的和吸热的。AG°值证实,所有吸附剂对Cr(VI)、Cd(H)和亚甲基蓝的吸附都是自发的,且主要通过物理吸附过程进行。罐头对亚甲基蓝的吸附量最高,为99.82 mg/g,对镉(II)的吸附量为96.89 mg/g,对铬(VI)的吸附量为87.44 mg/g,其次是对亚甲基蓝、镉(II)和铬(VI)的吸附量分别为93.90、73.91和65.38 mg/g。ANS容量分别为58.44、45.28和48.96 mg/g,而亚甲基蓝、镉(II)和铬(VI)的DNS容量分别为48.19、32.69和34.65 mg/g。PNS对亚甲基蓝、Cd(II)和Cr(VI)的吸附量最低,分别为43.88、36.01和19.84 mg/g。

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