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Adsorption of water contaminants onto kenaf fibers.

机译:水污染物在洋麻纤维上的吸附。

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In this research, the adsorptive capacities of kenaf in the forms of chopped whole stalk, chopped core, and bast materials were evaluated for the removal of lead, zinc, and toluene from contaminated synthetic waste streams using traditional adsorption isotherm techniques. The effect of surface oxidation using ozone was observed with respect to the adsorption of metals. Hydraulic conductivity experiments were conducted to evaluate the head loss associated with packing a column with kenaf fibers and to determine the suitability of its use in dynamic packed column systems. B.E.T. surface areas were determined as well. Under increasingly stringent regulatory requirements, even low level organic and inorganic contamination (under 100 ppm) in surface and ground waters must be treated. This study is part of an ongoing multi-year research effort aiming to develop a kenaf-based biosorptive process to improve treatment of contaminated aqueous streams at reduced costs and technical complexity.
机译:在这项研究中,使用传统的吸附等温线技术评估了洋麻切碎的整个茎,切碎的芯和韧皮材料形式的吸附能力,以从污染的合成废料中去除铅,锌和甲苯。就金属的吸附而言,观察到使用臭氧的表面氧化作用。进行了水力传导率实验,以评估与洋麻纤维填充色谱柱相关的压头损失,并确定其在动态填充色谱柱系统中的适用性。打赌。还确定表面积。在日益严格的法规要求下,甚至必须处理地表水和地下水中的低水平有机和无机污染物(低于100 ppm)。这项研究是正在进行的一项多年研究工作的一部分,该工作旨在开发基于洋麻的生物吸附工艺,从而以降低的成本和技术复杂性来改善对污水流的处理。

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