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      • KCI등재

        양파 Pellet 종자의 발아 및 포장출아 특성

        이성춘,박상욱 한국자원식물학회 2000 한국자원식물학회지 Vol.13 No.1

        양파의 직파재배를 정착시켜 국제경쟁력을 제고 시키기 위한 기초연구의 일환으로 양파종자에 pellet 처리하는 방법을 개발하고, pellet종자의 제 특성을 조사하였던 바 그 결과를 요약하면 다음과 같다. 1) Pellet 종자의 모양형성은 일차적으로 pellet물질의 종류에 따라 좌우되며 kaolin, clay, ash,석고 등은 모양형성이 잘 되었으며, bentonite와 diatomite는 모양형성은 되지만 pellet 종자의 표면이 매끄럽지 않았으며, clay는 모양형성은 잘되지만 건조하는 과정에서 pellet종자의 표면에 균열이 발생하였다. PG를 polymer로 PVS(8%)를 binder로 하여 pellet한 종자는 모양 형성, 경도 등에서 가장 적합하였다. 2) Pellet종자의 경도는 polymer종류, binder의 종류와 농도의 영향을 받는데 그 정도는 polymer에서 더 컸다. pellet물질 중 경도가 높았던 것은 gysum, coal ash 등이었으며, 생석회는 경도가 가장 낮았다. 3) PG로 pellet한 종자의 기내 발아율과 출아율은 각각 93.6, 91.8%로 pellet 물질 중 가장 높았고, 출아율은 처리온도 20, $25^{\circ}C$에서 비슷하였다. 토양 수분함량별 출아율은 각각 91% 이상으로 토양 수분함량간 큰 차이는 없었다. 종자의 크기별 평균 출아율은 pellet종자 입경 5와 6mm에서 각각 92.0%로 가장 높았다. 파종심도별 출아율은 파종심도 10mm에서 92.7%로 가장 높았으며 파종심도가 점차 깊어질수록 낮아졌다. 토양수분함량별 평균 출아소요시간은 토양수분함량 70%에서 158시간으로 대조구 138시간에 비해 20시간이 지연되었다. This study was conducted to evaluate development of seed pellet technique such as pellet polymer search, the shape formation and hardness, the germination and emergence rate of the pellet seeds for labor-saving and reducing production cost in onion(Allium cepa L.) cultivation. The pellet seeds shape formation was good such as kaolin, clay, ash, and gypsum, and clay was good shape formation but surface of pellet seed was cracked during the drying. PG(pearlite + gypsum) as pellet material and PVA as binder were the best among the material in consideration with shape and hardness together. The hardness of the pellet seeds was affected by polymers, the kinds and concentration of binders, and that degree was large at polymer. The high hardness polymers were gypsum and coal ash, but burned lime was the lowest hardness among the pellet material. The germination(GP) and emergence percentage(EP) of pellet seed with PG in vitro were the highest among the material, and that was 93.6, 91.8%, respectively. The EP of pellet seed with PG at 20, $25^{\circ}C$ were 91.3, 92.0%, respectively, The EP of pellet seed were over the 91%, and those did not show difference with field moisture capacity , and that of 5 and 6mm size seed were the highest as 92%, respectively. and other size seeds showed over 90%, too. The EP of pellet seed with PG was decreasing as increasing the sowing depth, and that of at 10mm sowing depth was the highest as 92.7%. The time to 50% emergence of that under 70% field moisture capacity was 158h, and that was delayed at 20h compare to control seed.

      • Effects of densification variables on the durability of wood pellets fabricated with Larix kaempferi C. and Liriodendron tulipifera L. sawdust

        Lee, S.m.,Ahn, B.J.,Choi, D.H.,Han, G.S.,Jeong, H.S.,Ahn, S.H.,Yang, I. Pergamon ; Elsevier Science Ltd 2013 Biomass & bioenergy Vol.48 No.-

        This study was conducted to examine the effects of species, wood particle size, moisture content of wood particles, pelletizing temperature and time on the durability of larch and tulipwood pellets. The durability of larch pellets was significantly higher than that of tulipwood pellets. The larch pellets fabricated with smaller particles were more durable than those fabricated with large particles. The durability of the larch and tulipwood pellets improved steadily with increasing pelletizing time and temperature. In addition, the durability of both pellets increased with increasing moisture content of the sawdust. Scanning electron microscopy (SEM) showed that the surface of the larch and tulipwood pellets fabricated at a pelletizing temperature of 180 <SUP>o</SUP>C for 3 min were similar to that of the commercial wood pellets. SEM-energy dispersive X-ray (EDX) analysis showed that lignin, a potential natural binder between wood particles, was spread throughout both the larch and tulipwood pellets with increasing pelletizing temperature and time. These results suggested that the lignin might contribute to the increase in inter-particles bonding in wood pellets.

      • KCI등재

        Aspergillus sp. PS-104의 액침배양중 mycellial pellet 형성에 미치는 황토의 영향

        강선철,구본성,태언희 한국환경농학회 2002 한국환경농학회지 Vol.21 No.1

        유리인산 생산균을 생물비료화 하기 위한 노력의 일환으로 인산가용화능이 우수한 Aspergillus sp. PS-104 균주를 액침배양하면서 pellet 형성에 미치는 황토의 영향을 조사하였다. Aspergillussp. PS-104의 분생포자를 황토를 포함하는 PDB 배지에 접종하여50 rpm의 낮은 속도로 교반하여 배양하면 무정형의 불규칙적인pellet을 형성하는 반면에 150 rpm의 높은 속도로 배양하면 구형의 규칙적인 pellet을 형성하였다. 또한 0∼10% (W/V) 범위의황토 첨가시에는 황토의 농도가 높을수록 pellet의 크기가 작게 형성되었으며, 1.0% 황토 농도에서 1.0±0.1 mm의 가장 작은pellet이 형성되었다. 이 결과는 황토를 첨가하지 않는 경우에 비하여 약 4배 작아진 것이다. 그러나 황토 농도가 1.5% 이상 되면 무정형의 큰 pellet이 형성되었다. 또한 황토의 주성분인 SiO_2Fe_2O_3, A1_20_3, CaC0_3, Caso_4,MgC0_3 분말을 각각 O∼l.0% 농도로 배지에 첨가하여 pellet 형성에 미치는 영향을 조사한 결과Al_2O_3를 제외하고는 첨가물의 농도가 높을수록 작은 크기의pellet이 형성되었으며, MgCO_3를 첨가했을 때 가장 작은 크기의pellet을 형성하였다. In order to investigate effects of loess on the mycellial pellet formation a phosphate-solubilizing fungus Aspergillus sp. PS-104 was cultured in potato dextrose broth containing loess. The strain formed an amorphous pellet or loose aggregates agitated at a low speed (50 rpm) while spherical and regular pellets at a high speed (150 rpm). The higher concentration of loess was added, the smaller size of a pellet was formed during the submerged culture of the strain. As shown in results, being cultured in the PDB medium supplemented with 1.0% loess the pellet size was maximally reduced to a fourth compared to the control. Evaluating the addition effect of several components of loess such as SiO_2, Fe_2O_3, Al_2O_3, CaCO_3, CaSO_4 and MgCO_3 on the reduction of mycellial pellet size the higher concentration was supplied, the smaller size of pellet was formed except Al_2O_3 And the smallest pellet size was recorded at the concentration of 1.0% (W/V) magnesium carbonate.

      • KCI등재

        직파용 벼 펠렛종자 제조장치 개선 연구(I) - 장치 제작과 성능분석 -

        유대성,유수남,최영수 한국농업기계학회 2003 바이오시스템공학 Vol.28 No.5

        To enhance the performance of a rice seed pelleting machine and the quality of rice-seed pellets made, improvement of the rice seed pelleting machine developed previously(Park, 2002) was tried and its performance was evaluated. As compared with the previous pelleting machine, a feeding mechanism of pellet materials to the forming rolls was changed from screw conveyor to hydraulic cylinder for proper feeding, rings were installed among rows of semi-spherical forming grooves on the forming rolls for reducing pellet materials loss and seeds damage, and discharging air nozzles were added for complete discharging of the pellets made. Through performance tests, capacity, pelleting ratio, and seed loss ratio of the pelleting machine were investigated at the mixing ratios of soil to rice seed of 6 : 1, 7 : 1, and 8 : 1, and rotating speeds of the forming rolls of 7 rpm, 10 rpm, and 13 rpm. As results of performance evaluation, pelleting ratios were in the range of 77 ∼ 89 %, and maximum pelleting ratio increased by 18 % in comparison with that of the previous machine. Maximum capacity was about 110 kg/h(about 63,000 pellets/h), which was increased by 70 % in comparison with that of the previous machine. But, ratios of seed loss were in the range of 24 - 49 %, which were not improved.

      • KCI등재후보

        Pelleting 소재와 크기가 지황종자의 발아에 미치는 영향

        윤성탁,한종관,주문갑,박충헌,성낙술,박춘근 한국약용작물학회 2001 한국약용작물학회지 Vol.9 No.4

        지황 pelleting 종자의 발아특성을 구명코자 온도에 따른 발아율, 채종 후 기간, pelleting물질의 종류, pelleting 크기에 따른 발아율 조사한 결과 온도 및 채종 후 기간에 따른 발아율은 명조건, 암조건 모두 25℃에서 발아율이 높았으며, 당년에 채종한 종자에 비해 채종 후 1년 경과한 종자가 발아율이 높았다. Pelleting 물질별 발아율은 talc처리에서 82.5%로 가장 높았다. Pelleting 종자 크기에 따른 발아율은 2.0mm 크기가 발아율이 높았으며, 특히 talc 2.0 mm에서는 100%의 발아율을 보였다. Pelleting 물질 조합처리에서는 talc + vermiculite, zeolite + vermiculite 모두 대조구보다 발아율이 낮았으며, pelleting 크기별 발아율은 0.7 mm에서 가장 높았다. This experiment was conducted to evaluate the germination rate according to temperature, pelleting materials, pelleted size, seed storage periods under light and dark conditions in Rehmannia glutinosa. The highest germination rate was obtained from 25℃ in both light and dark condition. Two-year old seeds showed higher germination rate compared to one-year old seed. Talc material showed the highest germination rate among the pelleting materials by 82.5%. Among the different pelleting sizes, the highest germination rate was shown in 2.0 mm, and especially Talc pelleting showed 100% germination rate on 17days after seeding. In case of combination of pelleting materials, both of talc + vermiculite, zeolite + vermiculite showed lower germination rate than the control and 0.7 mm pelleted seed showed the highest germination rate.

      • Pellet Made of Agricultural By-product and Agricultural Pellet Boiler System

        강연구(Kang, Y.K.),유영선(Ryou, Y.S.),강금춘(Kcang, G.C.),김종구(Kim, J.G.),김영화(Kim, Y.H.),장재경(Jang, J.K.),이형모(Lee, H.M.) 한국신재생에너지학회 2010 한국신재생에너지학회 학술대회논문집 Vol.2010 No.06

        Biomass is considered to be a major potential fuel and renewable resource for the future. In fact, there is high potential to produce the large amount of energy from biomass around the world. In this study, to obtain basic data for practical application of wood pellet and wood pellet boiler system as heating system in agriculture, agricultural biomass resources were surveyed, pellet was made of agricultural by-product such as stem of rape, oat and rice, ricehusk and sawdust and wood pellet boiler system with capacity of 116 kW was manufactured and installed in greenhouse of 38.5m{times}32m. High heating value, bulk density and ash content of pellet made of agricultural by-product and efficiency and heating performance of this system was estimated. Rice straw was the largest agricultural biomass in 2005 and the total amount of rice straw converted into energy of 131.71{times}10^{11} kJ. And in 2005, total amount of forest' by-product converted into energy of 29,277.05{times}10^{11} kJ. High heating values of pellets made of agricultural by-products of stem and seed of rape, stem of oat, rice straw and rice husk were 16,034, 16,026, 16,089, 15,650, 15,044 kJ/kg respectively. High heating values of pellets made of agricultural by-products were 83.6% compared to that of wood pellet. Average bulk density of pellets made of agricultural by-products of stem and seed of rape, stem of oat, rice straw and rice husk was 1,400 kg/m³. Ash contents of the pellets were 6.6, 7.0, 6.2, 5.5, 33% respectively. Ash content of rice husk pellet was the largest compared to other kind of pellets. To increase efficiency of agricultural pellet boiler, the boiler adopted secondary heat exchanger. The agricultural pellet boiler designed and manufactured in this study had high efficiency of 84.2% compared to the conventional agricultural pellet boiler, when water flow rate, exhaust gas temperature and average combustion furnace temperature were 39L/min, 180?C, 680?C respectively. And pellet supplying and pausing time were 13, 43 seconds respectively. In March of 2010, prices of wood pellet, agricultural tax free diesel, diesel, kerosene were 350 won/kg, 811 won/L, 1,422 won/L, 976 Won/L respectively. Also in terms of energy, prices per same heating value were 77.8, 90.1, 158, 108.4 Won/Mcal. Energy saving rate of wood pellet was 16, 50, 39% compared to agricultural tax free diesel, diesel and kerosene respectively.

      • KCI등재

        첨가제로서 낙엽송의 수피 및 건조폐액이 리기다소나무 및 신갈나무 펠릿의 연료적 특성에 미치는 영향

        양인 ( In Yang ),채현규 ( Hyun-gyu Chae ),한규성 ( Gyu-seong Han ) 한국목재공학회 2017 목재공학 Vol.45 No.3

        리기다소나무와 신갈나무 목분에 낙엽송 수피 또는/그리고 인공건조시 발생하는 폐액을 첨가제로 사용하여 펠릿을 제조하고, 이에 대한 연료적 특성의 분석을 통하여 고등급 목재펠릿 제조를 위한 원료 및 제조조건을 제공하고자 본 연구를 수행하였다. 첨가제에 대한 화학적 조성을 조사한 결과, 수피는 90% 이상의 전섬유소와 리그닌으로 구성되어 있었으며, 건조폐액은 대부분 당 성분이라 추정되는 0.1%의 고형분을 가지고 있었다. 신갈나무 목분은 수피의 포함으로 회분 함량(2.2%)이 높았으며, 수피와 건조폐액도 4% 이상의 회분을 가진 것으로 조사되었다. 목분 및 첨가제의 발열량은 모두 국립산림과학원(NIFOS)에서 고시한 “목재제품의 규격과 품질기준”의 목재펠릿 1급 기준(18.0 MJ/kg) 보다 높았다. 피스톤형 펠릿성형기로 제조한 펠릿은 첨가제의 양이 2 wt%인 관계로 회분함량과 발열량에 영향을 미치지 않았다. 내구성의 경우, 대부분의 제조 조건에서 첨가제의 사용에 의하여 증가하였다. 한편 첨가제로 수피 그리고 목분의 함수율 조절을 위하여 건조폐액을 함께 첨가하여 제조한 펠릿의 내구성은 첨가제없이 제조한 펠릿과 차이가 없었으며, 수피 또는 건조폐액을 각각 첨가제로 사용하여 제조한 펠릿보다 낮았다. 그러나 펠릿 제조비용 측면에서 건조폐액은 폐수처리에 따른 수익이 가능한 관계로 수피와 건조폐액을 공동으로 펠릿 제조에 사용하는 것이 유리할 것으로 생각한다. 피스톤형 펠릿성형기로 제조한 펠릿의 연료적 특성 측정 결과를 토대로 파일럿 규모의 평다이 펠릿성형기로 리기다소나무 및 신갈나무 펠릿을 제조하였다. 제조된 펠릿의 함수율은 목분 및 첨가제의 사용과 상관없이 NIFOS 1급 기준(≤ 10%)을 모두 만족하였다. 이에 대한 겉보기밀도와 내구성 측정결과를 종합하면, 첨가제의 사용은 리기다소나무의 경우 목분 함수율을 10%로 조절하고 수피나 건조폐액을 사용하는 것이 그리고 신갈나무의 경우 12%의 목분 함수율에 수피를 사용하는 것이 각각의 최적 목재펠릿 제조 조건이라 생각한다. 신갈나무 펠릿의 회분 함량을 제외하고 이 조건에서 제조한 목재펠릿의 품질은 NIFOS 목재펠릿 1급 기준을 크게 상회하는 것으로 나타났다. In this study, pitch pine (Pinus rigida, PIR) and Mongolian oak (Quercus mongolica, QUM) pellets were fabricated with bark or/and drying waste liquor (DWL) of larch (Larix kaempferi, LAK) as an additive. Based on the results of fuel characteristics of the pellets, optimal conditions for producing the high-quality pellets were provided. In the analysis of chemical composition, bark contained holocelluose and lignin of 90% and over. DWL had 0.1% solid assumed to sugars which are generated from the oven-drying of LAK logs. QUM showed high ash content (2.2%) by containing of bark in the sawdust. Bark and DWL of LAK had high ash content of 4% and over. Calorific values of all specimens and additives were higher than that of the 1<sup>st</sup>-grade standard of wood pellets designated by NIFOS (18.0 MJ/kg). PIR and QUM pellets were fabricated with additive of 2 wt% based on the solid weight of oven-dried sawdust using a piston-type flat-die pelletizer, and thus ash content and calorific value of the pellets did not affect by the use of additive. Durability of the pellets increased with the use of additive. Durabilties of pellets, which were fabricated with bark as an additive and DWL as a controller of moisture content for sawdust, did not differ from those of pellets without additives and were lower than those of pellets either with bark or DWL. However, use of both bark and DWL for the production of wood pellets might be favorable because it can make a profit from the collection process of DWL. Based on the results of fuel characteristics of the pellets, QUM and PIR pellets were produced by a flat-die pelletizer. Moisture content (MC), bulk density and durability of the pellets improved with the use of additive. Particularly, sawdust MC of 10% and the addition of bark or DWL for PIR as well as sawdust MC of 12% and the addition of bark for QUM might be optimal conditions for the production of high-quality pellets. Except for the ash content of QUM pellets, other properties of PIR and QUM pellets exceeded the 1<sup>st</sup>-grade wood pellets standards of NIFOS.

      • KCI등재

        프라이밍과 펠렛코팅 소재가 벌개미취 종자의 유묘 출현율에 미치는 영향

        강원식 ( Won Sik Kang ),김민근 ( Min Geun Kim ),김수영 ( Soo Young Kim ),한심희 ( Sim Hee Han ),김두현 ( Du Hyun Kim ) 한국산림과학회(구 한국임학회) 2020 한국산림과학회지 Vol.109 No.1

        본 연구는 벌개미취 종자의 대면적 파종 효율성을 증진시키기 위하여, 적절한 종자 전처리 조건과 펠렛코팅 소재를 선정하고자 실시하였다. 벌개미취 종자는 충실종자를 사용하기 위해 1일간 침지처리 후 침강 종자만을 사용하였다. 종자 전처리는 GA3(200, 500 ppm), 24-epibrassinolide(10<sup>-6</sup>, 10<sup>-7</sup>, 10<sup>-8</sup> M) 호르몬 처리와 염류삼투프라이밍(100 mM KNO3) 처리로 구분하였다. 펠렛코팅은 무처리와 프라이밍 처리 종자에 피복물질(DTCS와 DTK)과 접착제(PVA와 CMC)를 적용하여 제작하였다. 종자들은 필터페이퍼, 상토, 사양토 환경에서 파종하여 파종상에 따른 종자 처리 효과를 비교하였다. 필터페이퍼에 파종한 종자의 발아율은 무처리 종자가 41%, 프라이밍 종자가 65%로 가장 높았으며, 호르몬 처리 간 차이는 없었다. 프라이밍과 DTCS/PVA 펠렛 혼용 종자의 발아율은 71%로 가장 높았으며, 프라이밍과 DTK/CMC 펠렛 혼용 종자의 발아율은 42%로 가장 낮았다. 프라이밍 처리 후 펠렛코팅한 종자는 무처리 펠렛코팅 종자보다 발아율, 평균발아일수, 발아속도가 향상되었다. 온실의 상토에 파종한 프라이밍 종자의 발아율은 58%로 가장 높았으며, 평균발아일수는 9.4일, 발아속도는 7.0% ·day로 27% 발아율의 무처리 종자보다 높았다. 또한 DTK/PVA 코팅 종자의 발아율(40%)은 무처리 종자의 발아율(27%)보다 높았으며, 무처리 펠렛코팅한 종자의 평균발아일수는 15.0-27.0일로 프라이밍 처리 후 펠렛코팅한 종자보다 길었다. 온실의 사양토에 파종한 무처리 펠렛코팅 종자와 프라이밍 처리 후 펠렛코팅한 종자의 발아율은 모두 1-39%의 범위로 무처리 종자보다 낮았다. 펠렛 소재인 DTK는 DTCS보다 높은 발아율을 보였으며, 무처리 펠렛코팅 종자의 평균발아일수는 15.0-19.8일로 프라이밍 후 펠렛코팅한 종자보다 느렸다. 본 연구 결과를 기준으로, 벌개미취 종자의 프라이밍 전 처리는 유묘 출현율에 매우 효과적이며, 프라이밍과 펠렛코팅을 병행할 경우, 펠렛 소재로는 DTK가 더 적합하였고, 접착제는 PVA와 CMC 간 차이가 크지 않기 때문에 모두 사용이 가능한 것으로 판단되었다. In this study, the effect of seed pre-treatments and pellet coating materials to enhance the efficiency of large-scale propagation of Aster koraiensis seeds were investigated. Seeds were immersed in water for one day, and only those that sank were used for pre-treatment to use filled seeds. Pre-treatments were divided into hormone treatments, with gibberellic acid (GA<sub>3</sub>; 200 and 500 ppm) and 24-epibrassinolide (10<sup>-6</sup>, 10<sup>-7</sup>, and 10<sup>-8</sup>M), and priming with potassium nitrate (100 mM of KNO<sub>3</sub>). To produce pellet-coated seeds, pellet materials (DTCS or DTK) were applied to control (unprimed) and primed seeds with binders (PVA or CMC). The maximum germination percent (GP) of seeds before pellet coating was 65% (with the priming treatment), and there was no difference in the GP of seeds among hormone treatments. For seeds sown in a growth chamber on filter paper, GP was 41% for control (unprimed/uncoated) seeds, 65% for uncoated primed seeds, 71% for DTCS/PVA-pellet-coated seeds, and 42% for DTK/CMC-pellet-coated seeds. Seeds that were primed first and then pellet-coated showed greatly improved GP, mean germination time (MGT), and germination rate than seeds that were only pellet-coated. For seeds sown in commercial soil in a greenhouse, control seeds had a GP of 27%, whereas primed seeds had the highest GP (58%), and their MGT and GT were 9.4 days and 7.0%·day, respectively. In addition, DTK/PVA-pellet-coated seeds (40%) also had a GP higher than the control (27%), and their MGT was 15-27 days. For seeds sown in sandy-loam soil in a greenhouse, unprimed-pellet-coated seeds and primed-pellet-coated seeds both had GPs ranged of 39%, which were lower than that of control seeds. In general, the seeds that were pellet-coated with DTK had a higher GP than those pellet-coated with DTCS. Furthermore, the MGT of unprimed-pellet-coated seeds was 15.0-19.8 days, which was longer than the MGT of primed-pellet-coated seeds. These results suggest that priming enhances seedling emergence of Aster koraiensis seeds. Moreover, when priming is combined with pellet coating, DTK is a more suitable pellet material than DTCS, and PVA and CMC are equally suitable adhesives.

      • KCI등재

        The temperature effect on the production of liquid and solid fuel via wood pellet torrefaction

        Park Cheolwoo,Jang Eun-Suk,Kim Young-Min 한국화학공학회 2023 Korean Journal of Chemical Engineering Vol.40 No.6

        The effects of temperature on the product quality of wood pellet torrefaction were examined by performing experiments, proximate analysis, ultimate analysis, heating value measurement, thermogravimetric analysis, and moisture absorption of torrefied wood pellets at 250, 300, 350, and 400 °C. The liquids produced during torrefaction and high-temperature pyrolysis of torrefied wood pellet at 800 °C were also analyzed. By increasing the torrefaction temperature to 400 °C, the yield of the solid was decreased to 30.32%, with an increase in gas (17.53%) and liquid (52.16%) yield caused by the partial elimination and decomposition of hemicellulose, cellulose, and lignin of wood pellet. The higher heating value of wood pellets was increased from 4,670 kcal/kg for raw wood pellets to 7,480 kcal/kg for torrefied wood pellets at 400 °C with the carbon concentration during torrefaction. Although the carbon density and heating value of the wood pellets were improved, overall energy recovery efficiency was decreased because of the decrease in solid yield by torrefaction. Thermogravimetric analysis results suggested that thermally stable wood pellet formation is formed by the elimination and structural changes to hemicellulose, cellulose, and lignin. The hydrophobicity of wood pellets was increased by torrefaction leading to the elimination of the hydrophilic functional groups of wood pellets. The moisture absorption of wood pellets (14.95%) was also decreased to 5.09% for torrefied wood pellets. Low-temperature torrefaction between 250 and 300 °C produced the typical pyrolyzates of hemicellulose and cellulose, such as furans and acids. The amount of lignin pyrolyzates, such as guaiacol, eugenol, and other phenolics, was increased by applying high-temperature torrefaction at 400 °C. The solid fuel produced by the high-temperature torrefaction of wood pellets also provided a potential decreasing tar content during gasification, indicating the improved process efficiency of torrefied wood pellets.

      • KCI등재

        바이오매스 발전설비 증설·혼소 계획에 따른 Wood pellet 소요량 예측 및 최적 바이오매스 발전량 연구

        김상선,이봉희 한국응용과학기술학회 2017 한국응용과학기술학회지 Vol.34 No.4

        In accordance with the New and Renewable Energy Supply Statistics, biomass power generation has surged since 2013, and use of wood pellet has the most sharply increased, 696Gwh in 2013, 2,764Gwh in 2014 and 2,512Gwh in 2015. Total domestic wood pellet consumption was 1.48million tons in 2015, of which wood pellets consumed for power generation account for about 1.08million tons, about 73%. In this study, we gained the result that the wood pellet would be consumed 2.61million tons in 2020, 6.85million tons in 2025, 11.39million tons in 2030. We also calculated the optimum biomass power generation, on the premise that the power plant co-fire 50% biomass, and the result was that 2.26million tons of wood pellets should be produced domestically in 2021 to operate the present licensed wood pellet power plant from this study. 신·재생에너지 보급통계에 의하면 바이오매스 발전실적은 2013년 부터 급증하고 있으며 그 중에서 가장 급격하게 증가한 연료는 Wood pellet으로 2013년 696Gwh, 2014년 2,764Gwh, 2015년에는 2,512Gwh를 발전 하였고 국내 Wood pellet 총 소비량은 2015년 기준 148만톤이며 그 중 발전용으로 소비된 Wood pellet은 108만톤으로 약 73%를 차지하고 있다. 본 연구에서 Wood pellet 소요량을 예측한 결과 국내 발전용으로 필요한 Wood pellet 소요량은 2020년 261만톤, 2025년 685만톤, 2030년 1,139만톤이 필요하며, 최적 바이오매스 발전량 산정을 위하여 바이오매스 발전소에서 국내 생산 Wood pellet 사용량을 50% 사용한다는 가정하에 기 허가 신청된 발전소를 가동하기 위해서는 2021년 226만톤의 Wood pellet이 국내에서 생산되어야 한다는 결론이 도출 되었다.

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