• 제목/요약/키워드: wood burning

검색결과 83건 처리시간 0.027초

간벌재로 제조된 우드세라믹의 성질(I) - 수지 함침율 및 소성온도의 영향 - (Properties of Woodceramics Made from Thinned Logs(I) - Effect of Resin Impregnation Rate and Burning Temperature -)

  • 오승원;박금희
    • Journal of the Korean Wood Science and Technology
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    • 제32권1호
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    • pp.73-79
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    • 2004
  • 간벌재로 제조된 톱밥보드를 페놀수지에 함침율 40-80%로 함침시킨 후 소성온도 600-1500℃에서 소성하여 우드세라믹을 제조한 다음 수지함침율과 소성온도에 따른 우드세라믹의 밀도변화, 중량 및 치수감소율과 열전도성을 조사하였다.수지 함침율과 소성온도가 증가함에 따라 밀도는 커졌으나 소성온도 1200℃ 이후에는 밀도가 낮아졌다. 소성 후 치수 및 중량감소율은 수지함침율이 증가할수록 낮아졌으나 소성온도가 높을수록 커졌다. 열전도성은 수지함침율이 높을수록 우수하였으며, 소성온도와는 뚜렷한 경향을 발견할 수 없었다.

Characteristics of Bio Pellets from Spent Coffee Grounds and Pinewood Charcoal Based on Composition and Grinding Method

  • Nopia CAHYANI;Andi Detti YUNIANTI;SUHASMAN;Kidung Tirtayasa Putra PANGESTU;Gustan PARI
    • Journal of the Korean Wood Science and Technology
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    • 제51권1호
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    • pp.23-37
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    • 2023
  • One type of biomass that has promising potential for bio pellet production is spent coffee grounds (SCGs). However, previous studies have shown that SCGs in bio pellets cause a lot of smoke. Therefore, they need to be mixed with a material that has a higher calorific value to produce better quality pellets. One material that can be used is pine wood because it has a natural resin content that can increase the calorific value. The aim of this study was to examine the quality of bio pellets produced with SCGs and pine wood charcoal at different particle sizes. The charcoal was ground using either a hammer mill (HM) or a ball mill (BM). Pine wood charcoal was mixed with SCGs at ratios of SCGs to pine wood charcoal of 4:6 and 6:4 by weight, respectively, and the adhesive used a tapioca with a composition ratio 5% of the raw material. The bio pellets were produced using a manual pellet press. The quality of the bio pellets was assessed based on Indonesian National Standard (SNI) 8021-2014, and the physical observations include flame length, burning rate, and compressive strength. The average water content, ash content, and calorific value of the bio pellets were in accordance with SNI 8021-2014, but the density and ash content values were below the standard values. The BM variation of bio pellets had a higher compressive strength than the HM variation, and the 4:6 BM variation had the longest burning time compared with 4:6 HM.

목재의 연소특성(1) (질량감소와 착화지연) (Combustion Characteristics of Wood Materials (1) (Mass Reduction and Ignition Delay))

  • 김춘중
    • 한국연소학회지
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    • 제4권2호
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    • pp.11-22
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    • 1999
  • Combustion characteristics of the wood chips(balsa chips) were experimentally investigated with respect to the thermal recycle system of the urban waste. The urban waste contains plastics, vegetable and wood materials. Wood was chosen as an example of the one of the component of urban dust. A small wood chip was burned in a electric furnace by the micro-electric balance. The mass reduction rate was normalized by the initial mass of test piece and the time of volatile combustion end. When the mass of the wood chips(balsa chips) was larger than 0.5g, the combustion similarity was found on the normalized mass reduction rate.

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숲가꾸기 산물을 이용한 펠릿의 원료 적성 연구 (Exploration of Alternative Raw materials to Forest Biomass for Pellets)

  • 김성호;김철환;안병일;이지영;;;박현진;곽혜정;김경철
    • 한국펄프종이공학회:학술대회논문집
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    • 한국펄프종이공학회 2011년도 춘계학술발표회 논문집
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    • pp.171-178
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    • 2011
  • During the last decades, global warming from the increased amount of greenhouse gases, mainly carbon dioxide has become a major political and scientific issue. Burning fossil fuels (natural gas, coal and oil) releases $CO_2$, which is also a major cause of global warming. Among the clean environment, wood pellets are considered as promising renewable fossil fuels because of clean burning characteristics, reduction of particulate and NOx emission from combustion. In Korea, more than 50% pellets have to be imported every year because of shortage of feedstocks. On the other hand, about 80% of wood pulps are greatly dependent upon overseas products due to limited forest resources. Under this situation, this study explored how efficiently we have to use forest biomass instead of total dependence on wood as raw materials for pellets.

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우드펠릿 보일러에서 2단 연소용 공기 공급방식이 질소산화물 및 일산화탄소 발생에 미치는 영향 (The Effect of Supply Patterns of Overfire Air on Generation of NOX and CO in a Wood pellet Fired Boiler)

  • 정광성;유호선
    • 플랜트 저널
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    • 제15권3호
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    • pp.35-41
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    • 2019
  • 본 연구는 석탄 연소에서 우드펠릿 전소 보일러로 설비를 개조하여 실제 운영 중인 125 MW급 영동화력 1호기 보일러를 대상으로 2단 연소용 공기의 공급위치와 비율을 조정하여 NOx 및 CO발생에 미치는 영향을 시험하였다. 2단 연소용 공기량이 상대적으로 증가하면, 연료입도가 작아서 낮은 과잉 공기비(1.10)로 연소할 경우 NOx는 약간 감소하고 CO는 급격히 감소하지만, 연료 입도가 커서 높은 과잉공기비(1.33)로 연소할 경우 NOx는 약간 증가하지만 CO는 거의 영향을 받지 않았다. 또한 2단 연소용 공기량이 같아도 공급위치가 주연소기 상부로 편중될수록 NOx 및 CO 발생 농도는 낮게 나타났으며 과잉 공기비가 높은 경우 2단 연소용 공기량에 무관하게 NOx 및 CO의 발생은 매우 낮은 수준을 유지한다는 것을 알 수 있었다.

합판(合板)의 내화처리(耐火處理)에 관(關)한 연구(硏究) - III. 제1인산(第一燐酸)암모늄처리합판(處理合板)의 내화도(耐火度) (Studies on Plywood Treated Fire-Retardant - III. The Fire-Retardant Degree of Monoammonium Phosphate Treated Plywood)

  • 김종만
    • Journal of the Korean Wood Science and Technology
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    • 제14권4호
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    • pp.21-28
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    • 1986
  • Plywood used for construction as a decorative inner material is inflammable and can fire accident, causing destruction of human life and property. In this study, 3.5mm Kapur plywoods were soaked in the 23% monoammonium phosphate solutions by cold soaking method 3, 6, 9hrs and hot-cold bath method for 3/3hrs, and redrying was carried out by press-drying at the platen temperature of 110, 130, 160, 180$^{\circ}C$, and then fire test was carried out to investigate burning point, flame exhausted length, frame spread length, back side carbonized area and weight loss. The results are as follows; 1. In cold soaking method for 3, 6, 9hrs. retentions of monoammonium phosphate were 0.377, 0.448, 0.498kg/(30cm)$^3$ respectively, and in hot-cold bath method for 3/3hrs, the retention was 1.331kg(30cm)$^3$ that exceeded the minimum retention 1.124kg/(30cm)$^3$. 2. Correlation coefficients among the variable were shown in table 2. From the table, it could be recognized that there were close negative correlations between the treatment and burning point, flame spread length, back side carbonized area, flame exhausted time and weight loss, and there was negative correlation between treating time and back side carbonized area, but there was positive correlation between platen temperature and burning point. 3. From table 3, it can be observed that there were highly significant differences for burning point, flame spread length, flame exhausted time, back side carhonized area, weight loss between treatments. And in 2-way interactions, there were also highly significant for burning point, flame spread length, flame exhausted time, weight loss between time x treatment. 4. It was observed that burning point, flame exhausted time, flame spread length, back side carbonized area, and weight loss in fire-retardant treated plywood were the best effects in fire-retardant treated plywood, water treated plywood and nontreated plywood. In conclusion, I can estimate that absorbed chemical contents by hot-cold bath method for 3/3hrs, have a lot of effects on fire-retardant factors such as burning point, flame spread length, flame exhausted time, backside carbonized area and weight loss, but platen temperatures have a little effects on the fire factors.

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화목 난로와 보일러 사용에 의한 대기오염물질과 블랙카본의 배출 특성 (Emission Characteristics of Air Pollutants and Black Carbon from Wood Stove and Boiler)

  • 박성규;최상진;김대근;김동영;장영기;전의찬
    • 한국기후변화학회지
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    • 제6권1호
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    • pp.49-54
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    • 2015
  • Manually fed firewood burning appliances, i.e., stove and boiler, were tested in order to determine emission factors (EFs) of macro-pollutants, i.e., carbon monoxide, nitrogen oxides, sulfur oxides, ammonia, particulate matters (total suspended particulate, $PM_{10}$, $PM_{2.5}$, black carbon) and trace pollutants (i.e., ten different volatile organic compounds). The composite pollutants EFs for the wood stove were: for TSP 15.45 g/kg, for $PM_{10}$ 6.53 g/kg, $PM_{2.5}$ 4.16 g/kg, CO 175.49 g/kg, NO 1.58 g/kg, $SO_2$ 0.15 g/kg, TVOC 48.02 g/kg, $NH_3$ 0.02 g/kg and emissions were similar to the wood boiler appliance: for TSP 12.23 g/kg, for $PM_{10}$ 5.84 g/kg, $PM_{2.5}$ 3.66 g/kg, CO 146.74 g/kg, NO 1.42 g/kg, $SO_2$ 0.15 g/kg, TVOC 47.78 g/kg, $NH_3$ 0.01 g/kg.

목질계 바이오매스와 유연탄의 혼합 연소특성에 관한 연구 (Combustion Characteristics of Coal and Wood Biomass Co-Firing on the Pulverized Coal Combustion Furnace)

  • 김성철;이현동;김재관
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2006년도 제33회 KOSCO SYMPOSIUM 논문집
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    • pp.293-298
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    • 2006
  • There are many researches in progress on co-firing of coal and biomass to reduce carbon dioxide produced from the coal consumption. This study carried out 200 Kg/h combustion test furnace by mixing coal with timber. Coal was mixed with domestic and imported-wood around 10% to 20% based on input energy. For the mixed fuel, combustion temperature, unburned carbon and the composition of flue gas were analyzed. In addition, the tendency of slagging and fouling was examined using a probe. According to the result of the experiment, combustion temperature was depended on the kind of wood and mixing ratio. The unburned carbon loss was higher with increase of wood biomass mixing ratio, as a result, the total heat loss of furnace was slightly increased. The emission of NOx and SOx were decreased by $3{\sim}20%$ and $21{\sim}60%$ respectively. There are no difference of slagging and fouling tendency between biomass co-firing and coal burning only.

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Fatigue behavior of circular hollow tube and wood filled circular hollow steel tube

  • Malagi, Ravindra R.;Danawade, Bharatesh A.
    • Steel and Composite Structures
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    • 제19권3호
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    • pp.585-599
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    • 2015
  • This paper presents the experimental work on fatigue life and specific fatigue strength of circular hollow sectioned steel tube and wood filled circular hollow section steel tube. Burning effect was observed in the case of circular hollow sectioned steel tube when it is subjected to Maximum bending moment of 19613.30 N-mm at 4200 rpm, but this did not happen in the case of wood filled hollow section. Statistical analysis was done based on the experimental data and relations have been built to predict the number of cycles for the applied stress or vice versa. The relations built in this paper can safely be applied for design of the fatigue life or fatigue strength of circular hollow sections and wood filled hollow sections. Results were validated by static specific bending strengths determined by ANSYS using a known applied load.