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Research on Physical and Mechanical Performance and Formaldehyde Adsorption Characteristics of Self-adsorption fiber board

机译:自吸附纤维板的物理性能和甲醛吸附特性研究

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The composite element method (CEM) is utilized to mix wood fiber and activated carbon into the self-adsorption fiber board under certain process condition. The density, bending strength, elastic modulus, internal bond strength and water absorption are tested under the same condition, at the same time, the formaldehyde emission rate is measured with desiccator method. The result shows that all the mechanical properties of self-adsorption fiber board are a bit higher than that of ordinary fiber board. The effect of formaldehyde self-absorption is highly related to the amount of added activated carbon instead of the form. Under the test condition, the emission of formaldehyde of the self-adsorption fiber board added with 10% activated carbon grain can be reduced by 35%. Further more, it is easier for the self-adsorption fiber board added with powder activated carbon to obtain even physical and mechanical performance and absorption effect.
机译:在某些过程条件下,使用复合元素法(CEM)将木纤维和活性炭混合到自吸附纤维板中。在相同的条件下,测试密度,弯曲强度,弹性模量,内粘强度和吸水性,同时通过干燥器方法测量甲醛发射率。结果表明,自吸收光纤板的所有机械性能都比普通纤维板的所有机械性能高。甲醛自吸收的效果与添加的活性炭代替形式的量高度相关。在试验条件下,加入10%活性炭籽粒的自吸附纤维板的甲醛的排放可降低35%。此外,更容易加入粉末活性炭的自吸附纤维板更容易获得均匀的物理和机械性能和吸收效果。

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