首页> 外文期刊>Indonesian Journal of Forestry Research >EFFECT OF ACTIVATED CHARCOAL ADDITION ON FORMALDEHYDE EMISSION OF MEDIUM DENSITY FIBERBOARD
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EFFECT OF ACTIVATED CHARCOAL ADDITION ON FORMALDEHYDE EMISSION OF MEDIUM DENSITY FIBERBOARD

机译:活性炭添加对中密度纤维板甲醛释放的影响

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The manufacturing of medium density fiberboard (MDF) using dry forming process for interior purpose requires extensive amount of thermo-setting urea formaldehyde (UF) adhesive. Unfortunately, this adhesive brings about formaldehyde emission from the resulting MDF, which was potentially harmful to human beings. The use of activated charcoal can be effective to reduce such emission. As the relevance, this research aimed to investigate the effect of activated charcoal addition to the MDF pulp on formaldehyde emission from the MDF. The fibers for the MDF-mat forming were the pulp procured from the MDF factory, resulting from the thermo-mechanical pulping (TMP) conducted on the mixed mangium wood ( A caci a mangium ) and rubber wood ( H ev e a brasiliensis ) in 3:1 (w/w) proportion, respectively. Such mixed TMP pulping was also done in the factor y. The bonding between TMP pulp fiber during mat forming was assisted by the use of UF adhesive. Prior to the MDF mat forming , was added to the resulting TMP pulp-fibers activated charcoal in various amount, 2%, 4% and 6% based on fiber mass as well as based on UF adhesive mass. The activated charcoal was prepared by carbonizing candle nut shell into charcoal followed by activation process using phosphate solution. Meanwhile the forming of MDF mat employed air-dr y process. As the control, MDF forming with UF adhesive was performed without addition of activated charcoal. It turned out that the activated charcoal-added MDF exhibited effective reduction in formaldehyde emission and significant improvement in physical and mechanical properties, i.e. lower thickness swelling , and greater MOR , MOE and internal bond, compared to the control MDF. The use of activated charcoal at 4% based on the adhesive mass seemed to be the optimum amount. Physical and mechanical properties of the activated charcoal added MDF could mostly meet the JIS specification.
机译:使用干法成型工艺制造内部用途的中密度纤维板(MDF)需要大量的热固性脲醛(UF)粘合剂。不幸的是,这种粘合剂使所得的MDF释放出甲醛,这可能对人体有害。使用活性炭可以有效减少这种排放。与此相关的是,本研究旨在研究向中密度纤维板纸浆中添加活性炭对中密度纤维板甲醛释放量的影响。用于中密度纤维板毡的纤维是由中密度纤维板工厂采购的纸浆,是由3种混合锰木(A caci a mangium)和橡胶木(H ev ea brasiliensis)进行的热机械制浆(TMP)制成的。分别为:1(w / w)的比例。这种混合的TMP制浆也以因子y完成。使用UF胶粘剂有助于在毡垫成型过程中TMP纸浆纤维之​​间的粘合。在形成MDF垫之前,将以各种量基于纤维质量以及基于UF粘合剂质量的2%,4%和6%的量添加到所得的TMP纸浆纤维活性炭中。活性炭的制备方法是将烛果壳碳化成木炭,然后使用磷酸盐溶液进行活化。同时,中纤板的成型采用air-dr y工艺。作为对照,在不添加活性炭的情况下用UF粘合剂形成MDF。结果表明,与对照MDF相比,添加活性炭的MDF表现出甲醛释放的有效减少以及物理和机械性能的显着改善,即,较低的厚度溶胀以及较大的MOR,MOE和内部键。以粘合剂质量为基准,以4%的比例使用活性炭似乎是最佳用量。加入了活性炭的MDF的物理和机械性能大部分可以满足JIS规范。

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