• 제목/요약/키워드: desiccator method

검색결과 24건 처리시간 0.019초

Comparison of Formaldehyde Emission of Wood-based Panels with Different Adhesive-hardener Combinations by Gas Chromatography and Standard Methods

  • Eom, Young Geun;Kim, Sumin;Baek, In-Chan;Kim, Hyun-Joong
    • Journal of the Korean Wood Science and Technology
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    • 제33권2호통권130호
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    • pp.29-39
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    • 2005
  • Formaldehyde emissions from wood-based panels bonded with pine and wattle tannin-based adhesives, urea-formaldehyde resin (UF), melamine-formaldehyde resin (MF), and co-polycondensed resin of urea-melamine-formaldehyde (UMF) were measured by the Japanese standard method using a desiccator (JIS A 1460) and the EN 120 (European Committee For Standardization, 1991) method using the perforator value. In formaldehyde emission, all particleboards made using the wattle tannin-based adhesive with three different hardeners, paraformaldehyde, hexamethylenetetramine, and tris(hydroxyl)nitromethan (TN), satisfied the requirements of grade $E_1$. But only those made using the pine tannin-based adhesive with the hexamine as hardener met the grade $E_1$ requirements. Hexamine was effective in reducing formaldehyde emission in tannin-based adhesives when used as the hardener. While the UF resin showed a desiccator value of $7.1mg/{\ell}$ and a perforator value of 12.1 mg/100 g, the MF resin exhibited a desiccator value of $0.6mg/{\ell}$ and a perforator value of 2.9 mg/100 g. According to the Japanese Industrial Standard and the European Standard, the formaldehyde emission level of the MDF panels made with UF resin in this study came under grade $E_2$. The formaldehyde emission level was dramatically reduced by the addition of MF resin. The desiccator and perforator methods produced proportionally equivalent results. Gas chromatography, a more sensitive and advanced method, was also used. The samples for gas chromatography were gathered during the experiment involving the perforator method. The formaldehyde contents measured by gas chromatography were directly proportional to the perforator values.

가속 포집방법을 이용한 목질보드류의 폼알데하이드 방출량 평가 (Evaluation of Formaldehyde Emission from Wood-Based Panels Using Accelerated Collection Method)

  • Han, Hyun-jo;Lee, Seog-eon;Yang, Seung-min;Choi, Chul;Kang, Seog-goo
    • Journal of the Korean Wood Science and Technology
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    • 제47권2호
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    • pp.129-144
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    • 2019
  • 본 연구는 목질보드류 및 가구 생산 현장에서 주로 품질 관리를 위해 사용되는 데시케이터 방법을 개선 및 보완함으로써 측정 및 포집 시간을 단축하는 가속 포집 공정을 개발하기 위해 수행되었다. 먼저 등급별 목질 보드류에 대해 데시케이터 방법에 의한 포름알데히드를 측정하였다. 이어 개발된 공정을 가지고 데시케이터 방법과 비교하였을 때 최적 온도와 시간, 노출면적 등을 선정하여 시험한 후 그 상관성을 분석하였다. 그 결과 온도는 $100^{\circ}C$, 시간은 1시간, 시편은 2개일 때 데시케이터 방법과 비교적 유사한 결과값을 나타내었으며 그 상관성도 높은 것으로 나타났다. 개발된 시험 공정을 검증하기 위해서 설정된 표준화된 온도 및 시간, 시편의 매수를 가지고 Korea Conformity Laboratories (KCL)에 의뢰되어 실제 시험에 쓰이지 않았던 시료를 가지고 비교하였다. 그 결과 데시케이터 방법과의 상관성은 매우 높은 것으로 나타났다. 그러나 가속 포집 공정에서의 포름알데히드 방출량 결과값은 데시케이터 방법보다 대부분 높게 나타났다. 몇 개 시료의 포름알데히드 방출 등급은 한단계 더 높게 나타나는 경우도 있었다. 하지만 품질관리의 관점에서는 본 연구에서 설계된 가속 포집 공정 방법에 의해 충분히 적용될 수 있다고 판단되었다.

Application of Field and Laboratory Emission Cell (FLEC) to Determine Formaldehyde and VOCs Emissions from Wood-Based Composites

  • Kim, Sumin;Kim, Jin-A;Kim, Hyun-Joong
    • Journal of the Korean Wood Science and Technology
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    • 제35권5호
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    • pp.24-37
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    • 2007
  • The Korean Ministry of Environment started controlling indoor air quality (IAQ) in 2004 through the introduction of a law regulating the use of pollutant emitting building materials. The use of materials with formaldehyde emission levels above $1.25 mg/m^2{\cdot}h$ (JIS A 1901, small chamber method) has been prohibited. This level is equivalent to the $E_2$ grade ($>5.0mg/{\ell}$) of the desiccator method (JIS A 1460). However, the $20{\ell}$ small chamber method requires a 7-day test time to obtain the formaldehyde and volatile organic compound (VOC) emission results from solid building interior materials. As a approach to significantly reduce the test time, the field and laboratory emission cell (FLEC) has been proposed in Europe with a total test time less than one hour. This paper assesses the reproducibility of testing formaldehyde and TVOC emissions from wood-based composites such as medium density fiberboard (MDF), laminate flooring, and engineered flooring using three methods: desiccator, perforator and FLEC. According to the desiccator and perforator standards, the formaldehyde emission level of each flooring was ${\le}E_1$ grade. The formaldehyde emission of MDF was $3.48 mg/{\ell}$ by the desiccator method and 8.57 g/100 g by the perforator method. To determine the formaldehyde emission, the peak areas of each wood-based composite were calculated from aldehyde chromatograms obtained using the FLEC method. Formaldehyde, acetaldehyde, propionaldehyde, butyraldehyde and benzaldehyde were detected as aldehyde compounds. The experimental results indicated that MDF emitted chloroform, benzene, trichloroethylene, toluene, ethylbenzene, m,p-xy-lene, styrene, and o-xylene. MDF emitted significantly greater amounts of VOCs than the floorings did.

Comparison of Formaldehyde Emission Rate and Formaldehyde Content from Rice Husk Flour Filled Particleboard Bonded with Urea-Formaldehyde Resin

  • Lee, Young-Kyu;Kim, Sumin;Kim, Hyun-Joong;Lee, Hwa Hyoung;Yoon, Dong-Won
    • Journal of the Korean Wood Science and Technology
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    • 제34권5호
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    • pp.42-51
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    • 2006
  • The this study, the effect of rice husk flour (RHF) as scavenger on formaldehyde emission rate and formaldehyde content from urea-formaldehyde (UF) resin bonded RHF content wood particleboards (PB). Two type of particle size ($30{\mu}m$ and $300{\mu}m$) of RHF was premixed with the UF resin at 5% and 15% by weight. The performance of UF resins is greatly influenced by the curing characteristics in their curing processing. The curing behavior was monitored activation energy ($E_a$) by DSC and pH variation according to RHF contents. PB with dimensions of $27cm{\times}27cm{\times}0.7cm$ was prepared at a specific gravity of 0.75 using $E_1$ and $E_2$ class UF resins. Formaldehyde emission and formaldehyde content from RHF filled PB bonded with UF resin was measured by 24 h desiccator and perforator method, respectively. RHF causes an increased pH of UF resin. $E_a$ of the modified UF resin decreased independently of RHF particle size. As the pH and the $E_a$ variation of the UF resin containing RHF increased, the amount of formaldehyde content decreased. The formaldehyde emission and formaldehyde content levels of the PB bonded with 15 wt% of $30{\mu}m$ RHF and $E_2$ type UF resin were low and satisfied grade $E_1$, as measured by 24 h desiccator and perforator method. The result of a comparison between 24 h desiccator and perforator test using PB showed that the linear regression analyses show a good correlation between the results for the 24 h desiccator and the perforator tests. The linear regression of a correlation between the desiccator and the perforator was Y=4.842X-0.064 ($R^2=0.989$). RHF was effective at reducing formaldehyde emission and formaldehyde content in urea-formaldehyde adhesives when used as scavenger.

노건조된 화강풍화토의 공기 중 노출시 습윤무게 증가에 관한 실험적 연구 (Experimental Study of the Weight Increase of the Oven Dried Weathered Granite Soil due to Moisture Absorbed during Air Exposure)

  • 김석주
    • 지질공학
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    • 제32권3호
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    • pp.401-410
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    • 2022
  • 본연구에서는 순수한 흙입자의 무게를 측정하는 유효한 방법을 찾기 위하여 예천지역의 화강풍화토를 대상으로 노건조 시험을 수행하였다. 노건조 후 데시케이터를 사용하는 한국산업표준(KS F)에 규정된 방법과 데시케이터를 사용하지 않는 경우에 대하여 비교하였다. 노건조 후 45분간 공기 중에 노출된 흙시료는 공기 중에서 수분을 흡수하여 무게가 점진적으로 증가하였다. 공기 중에 노출 후 30초에 측정된 결과에서 데시케이터를 사용한 경우는 데시케이터를 사용하지 않은 경우에 비하여 흙의 입경에 따라 0.103~0.735%의 무게가 증가되었다. 노건조 후 데시케이터를 사용하면 순수한 흙무게를 과대평가하는 결과가 나타난다. 그러므로, 데시케이터의 사용 없이 노건조 후 시료의 무게를 곧바로 측정하면 흙무게의 측정오차를 감소시킬 수 있다.

목질제품의 포름알데히드방출량 측정방법과 개선방안 (Measuring Methods and Their Improvement of Formaldehyde Emission from Wood-Based Panels)

  • 박병대;박종영
    • 한국가구학회지
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    • 제15권2호
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    • pp.1-17
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    • 2004
  • This paper attempted to review measuring methods of formaldehyde emission from wood-based panel products. Methods included for the discussion were desiccator methods, extraction method, and various chamber methods. First, the procedures and testing conditions of 24-hour desiccator method was critically reviewed, and an improvement of this method was proposed to meet international standards. Two different small chamber methods ($20\ell$ and $1m^3$ chamber methods) were also compared in terms of their advantages and disadvantages. In addition, the regulation levels of formaldehyde emission of wood-based composite panels were compared for different countries. The selection of a reference method of measuring formaldehyde emission of wood panel products should consider the ease of conducting test and cost required. Results should be exchangeable for different methods.

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Reduction of Formaldehyde Emission from Particleboardsby Bio-Scavengers

  • Eom, Young-Geun;Kim, Jong-Sung;Kim, Sumin;Kim, Jin-A;Kim, Hyun-Joong
    • Journal of the Korean Wood Science and Technology
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    • 제34권5호
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    • pp.29-41
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    • 2006
  • This study was to investigate the effect of adding additive as tannin, rice husk and charcoal, for reducing the formaldehyde emission level, on the adhesion properties of urea-formaldehyde (UF) resin for particleboard. We controlled the hot-pressing time, temperature and pressure to determine the bonding strength and formaldehyde emission. Blends of various UF resin/additives (tannin, rice husk and charcoal) compositions were prepared. To determine and compare the effect of additives (tannin, rice husk and charcoal) content, 0, 5, 10 and 15%, by weight of UF resin, were used. $NH_4Cl$ as hardener added. To determine the level of formaldehyde emission, we used the desiccator, perforator and 20 L-small chamber method. The formaldehyde emission level decreased with increased additions of additive (except rice husk). Also, increased hot-pressing time decreased formaldehyde emission level. At a charcoal replacement ratio of only 15%, the formaldehyde emission level is under F ✩ ✩ ✩ ✩ grade (emit < $0.3mg/{\ell}$). Curing of the high tannin additive content in this adhesive system indicated that the bonding strength increased. But, in the case of rice husk and charcoal, the bonding strength was much lower due to the inorganic substance. Furthermore, rice husk was poor in bonding strength as well as formaldehyde emission than tannin and charcoal.

Effect of Temperature and Bake-out on Formaldehyde Emission from UF Bonded Wood Composites

  • Lee, Young-Kyu;Kim, Hyun-Joong
    • Journal of the Korean Wood Science and Technology
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    • 제40권2호
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    • pp.91-100
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    • 2012
  • This study analysis the effect of various temperatures (20, 35 and $50^{\circ}C$) on the formaldehyde emission from wood composites, which were particleboard (PB), medium density fiberboard (MDF), high density fiberboard (HDF) and laminated HDF (L-HDF) by Japanese desiccator method. Also, to reduce formaldehyde emission by wood composites, it has been suggested that undergo a bake-out conditions. On average, the level of formaldehyde emission increased many times with a $15^{\circ}C$ increase in temperature from 20 to $35^{\circ}C$ for PB, MDF, HDF and L-HDF, respectively. Formaldehyde emissions from wood composites could be expected to increase with increasing ambient temperature. At $35$ for 28 days bake-out treatment of boards, the free formaldehyde emission reduced 67.8% (PB), 40.1% (MDF), 37.8% (HDF), and 35.2% (L-HDF). On the other hand, after the bake-out at $50^{\circ}C$ for 28 days, the formaldehyde concentration decreased by 88.2, 66.9, 62.2 and 59.3% of the concentration before the bake-out for PB, MDF, HDF and L-HDF, respectively. An interesting of the bake-out treatment at $50^{\circ}C$ after 14 days, formaldehyde emission grade of PB & MDF down $E_2$ to $E_1$, and HDF & L-HDF down $E_1$ to $E_0$.

Environment-friendly Adhesives for Fancy Veneer Bonding of Engineered Flooring to Reduce Formaldehyde and TVOC Emissions

  • Kim, Sumin;Kim, Hyun-Joong;Xu, Guang Zhu;Eom, Young Geun
    • Journal of the Korean Wood Science and Technology
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    • 제35권5호
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    • pp.58-66
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    • 2007
  • The objective of this research was to develop environment-friendly adhesives for face fancy veneer bonding of engineered flooring. Urea-formaldehyde (UF)-tannin and melamine-formaldehyde (MF)/PVAc hybrid resin were used to replace UF resin in the formaldehyde-based resin system in order to reduce formaldehyde and volatile organic compound (VOC) emissions from the adhesives used between plywoods and fancy veneers. Wattle tannin powder (5 wt%) was added to UF resin and PVAc (30 wt%) to MF resin. These adhesive systems showed better bonding than commercial UF resin with a similar level of wood penetration. The initial adhesion strength was sufficient to be maintained within the optimum initial tack range. The standard formaldehyde emission test (desiccator method) and VOC analyzer were used to determine the formaldehyde and VOC emissions from engineered flooring bonded with commercial UF resin, UF-tannin and MF/PVAc hybrid resin. By desiccator method, the formaldehyde emission level of UF resin showed the highest but was reduced by replacing with UF-tannin and MF/PVAc hybrid resin. MF/PVAc hybrid satisfied the $E_1$ grade (below $1.5mg/{\ell}$). VOC emission results by VOC analyzer were similar with the formaldehyde emission results. TVOC emission was in the following order: UF > UF-tannin > MF/PVAc hybrid resin.

Formaldehyde Emission of Wood-Based Composite Panels with Different Surface Lamination Materials Using Desiccator Method

  • Park, Byung-Dae;Kang, Eun Chang;Lee, Sang-Min;Park, Jong Young
    • Journal of the Korean Wood Science and Technology
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    • 제44권4호
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    • pp.600-606
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    • 2016
  • Wood-based composite panels such as plywood, particleboard (PB), or medium density fiberboard (MDF) are mostly used in the lamination on their surface for the manufacturing of furniture, or interior building products, the concern on the formaldehyde emission (FE) from the surface laminated wood panels is increasingly attracting attentions from the public. Thus, this study was conducted to understand influence of surface laminating materials to the FE from PB and MDF with or without edge sealing, using 24-hour desiccator method. Both PB samples that had been laminated on their surface with low-pressure laminate (LPL) or polypropylene (PP) film and MDF that had been treated with poly(vinyl chloride) (PVC) or coating were tested for the FE with or without edge sealing. As expected, the FE of PB with the sealed edges decreased to 37.4% and 80.7% with the LPL and PP lamination, respectively. The surface laminated MDF with the sealed edges also showed a decrease in the emission up to 57.8% and 54.3%, with the PVC lamination and coating, respectively. However, the coated MDF samples showed 5.3% increase in the emission when their edges were not sealed, indicating a FE form the solvent used for coating. These results showed that the type of surface lamination materials on wood-based composite panels has a great impact on their resultant FE, indicating that the influence of surface laminating materials should be taken into consideration for the formaldehyde mission measurement.