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首页> 外文期刊>International Journal of Environmental Science and Technology >Arsenic(III) removal from aqueous solution by raw and zinc-loaded pine cone biochar: equilibrium, kinetics, and thermodynamics studies
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Arsenic(III) removal from aqueous solution by raw and zinc-loaded pine cone biochar: equilibrium, kinetics, and thermodynamics studies

机译:原始和负载锌的松果生物炭从水溶液中去除砷(III):平衡,动力学和热力学研究

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摘要

The potential of raw pine cone (PC) biochar and its modified form (Zn-loaded biochar) was evaluated for the removal of trivalent arsenic [As(III)] from the aqueous solution. The influence of treatment of PC biochar with Zn(NO3)(2) on the physico-chemical properties of biochar was examined using elemental analyzer, surface area analyzer, thermo-gravimetric analyzer, Fourier transform infrared spectroscopy, and scanning electron microscopy. Experimental results revealed that the removal of As(III) was almost consistent (66.08 +/- A 3.94 and 87.62 +/- A 3.88 % on raw and Zn-loaded biochar, respectively) over an acidic pH range of 2-4 as a consequence of high affinity between the positively charged biochar surface and the predominant arsenic species (H3AsO3 and H2AsO4 (-)), followed by a decrease with increase in pH in the range of 4-12. Langmuir isotherm model was well fitted to the experimental equilibrium data (R (2) = 0.93) rendering the maximum adsorption capacity of 5.7 and 7.0 mu g g(-1) on raw and Zn-loaded PC biochar, respectively. The adsorption of As(III) was well represented by pseudo-second order with reaction rate constant (k (2)) of 0.040 and 0.282 mg g(-1) min on raw and zinc-loaded PC biochar, respectively, and was mainly controlled by boundary layer diffusion followed by some extent of intra-particle diffusion. The adsorption process was spontaneous with Gibb's free energy (Delta GA degrees, -4.42 +/- A 0.72 and -11.86 +/- A 1.78 kJ mol(-1)) and exothermic in nature with enthalpy (Delta HA degrees, 13.25 and 31.10 kJ mol(-1)) and entropy (Delta SA degrees, 0.058 and 0.141 kJ mol(-1) K-1) for raw and zinc-loaded adsorbent, respectively.
机译:对于从水溶液中去除三价砷[As(III)],评估了原始松果(PC)生物炭及其修饰形式(负载锌的生物炭)的潜力。使用元素分析仪,表面积分析仪,热重分析仪,傅立叶变换红外光谱和扫描电子显微镜检查了用Zn(NO3)(2)处理PC生物炭对生物炭的理化性质的影响。实验结果表明,在酸性pH范围为2-4的情况下,As(III)的去除几乎是一致的(分别对生和装载锌的生物炭分别为66.08 +/- A 3.94和87.62 +/- A 3.88%)。带正电的生物炭表面与主要的砷物质(H3AsO3和H2AsO4(-))之间具有高亲和力的结果,随后随着pH值的增加在4-12范围内降低。 Langmuir等温线模型很好地拟合了实验平衡数据(R(2)= 0.93),从而分别获得了5.7和7.0μg g(-1)的最大吸附能力,分别吸附在生料和含锌PC生物炭上。准二级反应很好地表示了As(III)的吸附,反应速率常数(k(2))分别为0.040和0.282 mg g(-1)min在载有PC和载有锌的PC生物炭上,主要是由边界层扩散控制,然后进行一定程度的粒子内扩散控制。吸附过程是自发的,具有吉布的自由能(ΔGA度,-4.42 +/- A 0.72和-11.86 +/- A 1.78 kJ mol(-1)),并且自然放热并具有焓(ΔHA度,13.25和31.10)。 kJ mol(-1))和熵(Delta SA度,0.058和0.141 kJ mol(-1)K-1)分别适用于载有锌的吸附剂和载有锌的吸附剂。

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