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Influence of sulfur-crosslinking in vulcanized rubber chips on mercury(II) removal from contaminated water

机译:硫化橡胶碎片中的硫交联对污水中汞(II)去除的影响

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The adsorption of Hg(II) by natural rubber chips was investigated. First, the effect of chip size (5 mm x 5 mm and 10 mm × 10 mm) on the adsorption kinetics was studied. The pseudo-second-order modeling was found to explain the kinetics well. The smaller chips had higher adsorption rate so they were used for the rest of the research. Next the effects of sulfur, zinc oxide and carbon black on the adsorption capacity of Hg(II) at equilibrium conditions were investigated. The effect of sulfur was studied through different standard vulcanizing systems. The amount of zinc oxide was varied to be 3, 4 and 5 part per hundred parts of rubber (phr) while the carbon black (N-330) loading was varied to be 0, 30 and 50 phr, respectively. It was found that adsorption capacity increased with the degree of crosslink density, generated by sulfur reacting with rubber molecules. In addition, the adsorption capacities of various amounts of zinc oxide corresponded with their crosslink densities while the addition of carbon black seemed to obstruct Hg(II) adsorption.
机译:研究了天然橡胶碎片对Hg(II)的吸附。首先,研究了切屑尺寸(5 mm x 5 mm和10 mm x 10 mm)对吸附动力学的影响。发现伪二级建模很好地解释了动力学。较小的切屑具有较高的吸附速率,因此将它们用于其余的研究。接下来研究了硫,氧化锌和炭黑在平衡条件下对Hg(II)吸附容量的影响。通过不同的标准硫化系统研究了硫的影响。氧化锌的量变化为每100份橡胶(phr)3、4和5份,而炭黑(N-330)的加载量分别变化为0、30和50 phr。已发现,硫与橡胶分子反应产生的吸附能力随交联密度的增加而增加。此外,各种量氧化锌的吸附能力与其交联密度相对应,而炭黑的添加似乎阻碍了Hg(II)的吸附。

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