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首页> 外文期刊>Environmental Science and Pollution Research >Fluoride removal studies using virgin and Ti (IV)-modified Musa paradisiaca (plantain pseudo-stem) carbons
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Fluoride removal studies using virgin and Ti (IV)-modified Musa paradisiaca (plantain pseudo-stem) carbons

机译:使用处女和Ti(IV)制定的Musa Paradisiaca(Plantain伪茎)碳的氟化物去除研究

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摘要

The preparation of carbons in virgin and Ti-modified forms under controlled conditions at low temperature from plantain pseudo-stem (Musa paradisiaca) was achieved. These prepared carbons were characterized for instrumental studies such as BET, FTIR, XRD, SEM with EDS and TGA to understand the chemistry and modification. The determination of IEP and pH(ZPC) established the presence of positive surface sites on the virgin (VMPC) and Ti-modified (TiMPC) carbons to facilitate the sorption of fluoride. The fluoride removal efficiency as a function of time, pH, dose, initial fluoride concentration, temperature, and co-ion intervention was studied. The maximum fluoride removal of about 81.2 and 97.7% was achievable with VMPC and TiMPC, respectively, after 20min at the pH of 2.04 and continued for the equilibrium of 60min. Temperature was found to be influential both by way of initial increase followed by a decrease in the fluoride uptake of MPCs. Regeneration was very consistent up to 7cycles with the residual fluoride concentration below the WHO guide line of 1.5mgL(-1). Highest intervention due to hydrogen carbonate ions was observed during the fluoride removal process. Kinetic (pseudo-first-order, pseudo-second-order, and intra-particle diffusion) and isotherm models (Langmuir, Freundlich, and DKR) were checked for their compliance with the present sorption system. These low temperature synthesized MPCs are found to be effective candidates in the process of fluoride abatement in water.
机译:达到了来自植物伪茎(Musa Paradisiaca)的低温下的处女和Ti改性形式的碳的制备。这些准备好的碳的特征在于仪器研究,例如BET,FTIR,XRD,SEM,具有EDS和TGA,以了解化学和改性。 IEP和pH(ZPC)的测定建立了处于处女(VMPC)和Ti改性(TIMPC)碳的阳性表面位点的存在,以促进氟化物的吸附。研究了作为时间,pH,剂量,初始氟化物浓度,温度和共离子介入的函数的氟化物去除效率。最大除氟大约81.2和97.7%,与分别VMPC和TiMPC,可实现,在2.04 pH值后20分钟并持续60分钟的平衡。通过初始增加,发现温度是影响的,然后减少MPC的氟化物吸收。再生在最高可达7循环的氟化物浓度低于1.5mg1(-1)。在氟化物去除过程中观察到碳酸氢氢离子引起的最高干预。检查动力学(伪一阶,伪二阶和粒子扩散)和等温模型(Langmuir,Freundlich和DKR)符合本发明吸附系统。发现这些低温合成的MPC在水中氟化物的过程中是有效的候选者。

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