• 제목/요약/키워드: giant miscanthus

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거대억새 단지 조성에 따른 토양 특성 변화 (Change in Soil Properties after Planting Giant Miscanthus)

  • 강구;홍성구;박성직
    • 한국농공학회논문집
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    • 제55권6호
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    • pp.69-75
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    • 2013
  • Miscanthus has received wide attention as an option for biomass production in Korea, recently. New strain of giant miscanthus has been developed and was planted in two large trial sites (184 ha) in the lower reaches of the Geum River. To evaluate the susceptibility of the giant miscanthus as an bioenergy crop for the future, we investigated the influence of the giant miscanthus on the soil properties. The particle size, CEC, pH, EC, T-N, T-P, heavy metal total concentration, and heavy metal fractions of soil samples collected from abandoned field, 1 year old giant miscanthus field (1st Year GM), and 2 year old giant miscanthus field (2nd Year GM) at different depths of 0~15, 15~30, and 30~45 cm in April and August were analyzed. Results showed that the CEC and pH of the soil of the giant miscanthus field were lower than those of the soil of abandoned field. The EC of 2nd GM was lower than that of abandoned field, indicating that the giant miscanthus may facilitate soil desalination process. The organic and sulfide fraction and residual fraction of heavy metals in the giant miscanthus field was higher than in abandoned field, due to the low pH of the giant miscanthus field and the excretion of phytosiderophores by rhizome of the giant miscanthus. This study showed that the giant miscanthus can influence on the soil properties and further study for long term is needed to elucidate the interaction between the soil and the giant miscanthus.

거대억새 재배단지 조성에 따른 생물상 모니터링 (Monitoring Biota in Giant Miscanthus Fields)

  • 강구;홍성구;지광재;최준열;이효혜미;김한중;박성직
    • 한국농공학회논문집
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    • 제56권1호
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    • pp.89-99
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    • 2014
  • The cultivation of biomass crops is now global demand for decreasing emissions of carbon dioxide ($CO_2$) from fossil fuel. Miscanthus species have been studied as a suitable crop for biomass production, due to its characteristics of fast growth and high biomass. In Korea, Miscanthus species have gained wide attention as an option for biomass production alternative to fossil fuels, recently. New strain of giant Miscanthus has been developed and two large trial sites for the giant Miscanthus production were built in the lower reaches of the Geum River. To evaluate the ecological influence of the giant Miscanthus as an bioenergy crop for the future, we investigated the impact of the construction of the giant Miscanthus production fields on the biota and also compared it with biota in paddy fields near the study sites. The biota including plants, amphibians, reptiles, mammals, avifauna, insects, and bugs was investigated. The plant diversity of the giant Miscanthus production fields was poorer than the paddy fields because the high height of the giant Miscanthus might hinder the growth of other plants. However, the giant Miscanthus production fields serves habitat to animals, leading to rich diversity of animals including avifauna, insects, and bugs. The rich diversity of the animals in the giant Miscanthus production fields coincides with the fact that the giant Miscanthus was grown without any pesticide, herbicide, and fertilizer. This study showed that the giant Miscanthus can influence on biota and further long term study is needed to elucidate the interaction between the diversity of biota and the giant Miscanthus.

거대억새(Miscanthus sacchariflorus)의 혐기소화를 위한 메탄생산 퍼텐셜 분석 (Biochemical Methane Potential Analysis for Anaerobic Digestion of Giant Miscanthus (Miscanthus sacchariflorus))

  • 유정숙;김창현;윤영만
    • 한국환경농학회지
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    • 제36권1호
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    • pp.29-35
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    • 2017
  • BACKGROUND: This study was carried out to assess a biochemical methane potential of giant miscanthus (Miscanthus sacchariflorus) which was a promising candidate energy crop due to a high biomass productivity, in order to utilize as a feedstock for the biogas production. METHODSANDRESULTS: Giant miscanthus was sampled the elapsing drying time of 6 months after harvesting. TS (Total Solid) and VS (Volatile Solid) contents were 94.7 and 90.8%. And CP (Crude Protein), EE (Ether Extracts), and CF (Crude Fiber) contents of giant miscanthus were 1.4, 0.46, and 46.12%, respectively. In the organic composition of giant miscanthus, the NDF (Neutral Detergent Fiber) representing cellulose, lignin, and hemicellulose contents showed 86.88%, and the ADF (Acid Detergent Fiber) representing cellulose and lignin contents was 62.91%. Elemental composition of giant miscanthus showed 47.75%, 6.44%, 41.00%, and 0.28% for C, H, O, and N, respectively, and then, theoretical methane potential was obtained to $0.502Nm^3kg^{-1}-VS_{added}$. Biochemical methane potential was assessed as the range of $0.154{\sim}0.241Nm^3kg^{-1}-VS_{added}$ resulting the lower organic biodegradability of 30.7~48.0%. CONCLUSION: Therefore the development of pretreatment technology of the giant miscanthus was needed for the improvement of anaerobic digestability.

새만금간척지에서 거대억새 투입 후 분해 특성 및 감자 재배를 위한 적정 질소시비수준 평가 (Using Eeclaimed Land for Potato Cultivation in Saemangeum, South Korea: Determining the Optimal Nitrogen Fertilization Rate with the Giant Miscanthus used as a Source of Soil Organic Matter)

  • 오양열;정강호;이수환;이광승;서보성;김길용
    • 한국환경과학회지
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    • 제31권11호
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    • pp.911-922
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    • 2022
  • To restore reclaimed land, it needs to be supplemented with organic matter; this is especially true for Korea, where organic matter constitutes only one-tenth of conventional agricultural soils. The giant Miscanthus, a perennial grass known for its extensive biomass, shows signs of being an excellent source of organic matter for restoring reclaimed land. Therefore, the objectives of this study were to (i) evaluate the feasibility of using the giant miscanthus as an organic resource within the context of re-using reclaimed land for agricultural purposes (i.e., potato cultivation), and (ii) determine the optimum fertilization rate for the potatoes while the giant miscanthus is being used as an organic resource. Our results show that after 180 days, giant miscanthus lost 23-47% of its original dry weight, with the extent of the loss dependent on soil salinity. Nutrient concentrations (Mg2+, Na+) continued to increase until the end of the study period. In contrast, potassium (K+) and the ratio of carbon to nitrogen (C/N) decreased until the end of the study period. Specifically, after 180 days, low salinity topsoil treatments had the lowest C/N ratio. In the first year, 150 % of standard N rates were required for the potatoes to achieve maximum productivity; however in the 2nd year, standard rates were sufficient to achieve maximum productivity. Overall, this implies that even though the application of giant miscanthus did eventually improve soil quality, increasing crop yields, N fertilization is still necessary for the best outcomes.

Required Mowing Power and Bale Density of Miscanthus × Giganteus for Field Biomass Harvesting using Different Methods

  • Jun, Hyeon-Jong;Choi, Il-Su;Kang, Tae-Gyoung;Choi, Yong;Choi, Duck-Kyu;Lee, Choung-Keun
    • Journal of Biosystems Engineering
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    • 제39권4호
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    • pp.253-260
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    • 2014
  • Purpose: This study investigated the harvesting properties of the giant miscanthus (Miscanthus ${\times}$ giganteus) to measure the required mowing power for different stem conditioning methods in order to shorten the drying time after mowing and the bale density so that the crop can be used as biomass in the winter season. Methods: The required mowing power and bale density were measured using a power measurement device, three different mower-conditioners, and a mid-sized round baler under different working speeds and conditioning methods. Results: For the various mower-conditioners, the average stem length from mowing was 0.86-0.91 m, and the available working speed was 1.6 m/s. The steel roller-type mower-conditioner showed better stem conditioning but could not mow over a working speed of 1.6 m/s. The required average power of the mower-conditioners varied from 23.8 kW for the steel roller-type rotary disk mower-conditioner with a working width of 2.4 m to 37.2 kW for the flail-type rotary disk mower-conditioner with a working width of 3.2 m at a working speed of 1.6 m/s. The bale densities were $155.8-172.2kg/m^3$. The highest bale density was measured for stems with no conditioning and a moisture content of 11.3% (d.b.) mowed by the rotary disk mower. The bale density was affected by the mowing method because of the low moisture content of the miscanthus stems. Conclusions: In terms of the working performance and conditioning statue, the steel roller-type mower-conditioner is a better choice at a working width of 2.4 m, while the flail finger-type mower-conditioner is better at a working width of 3.2 m. The type of mower-conditioner used for giant miscanthus harvesting should be determined by considering the harvest area, workable period, and working performance of a mower-conditioner and baler during the winter.

이온성 액체에 의한 거대억새 전처리 특성 및 리그닌의 구조적 변화 관찰 (Study on Pretreatment of Giant Miscanthus Using Ionic Liquid and Structural Change of Lignin)

  • 박신영;황혜원;장수경;최인규;최준원
    • Journal of the Korean Wood Science and Technology
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    • 제43권3호
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    • pp.344-354
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    • 2015
  • 이온성 액체를 이용한 거대억새의 전처리 특성을 알아보기 위하여 1-ethyl-3-methylimidazolium acetate ([Emim][OAc])와 1-butyl-3-methylimidazolium acetate ([Bmim][OAc]) 두 종류의 이온성 액체로 $90^{\circ}C$, $110^{\circ}C$, $130^{\circ}C$ 세 온도조건에서 전처리를 진행하였다. 반응 온도가 높아짐에 따라 cellulose-rich product (CP)의 수율은 87.2%에서 67.6%로 점차 감소하였으며 ionic liquid lignin (ILL)의 수율은 2.2%에서 9.9%로 증가하였다. CP는 ILL에 비해 탄소함량은 낮았지만, 산소함량은 높게 나타났다. CP의 효소당화 결과 $110^{\circ}C$에서 [Emim][OAc]로 전처리하여 얻은 CP의 당화율이 56.7%로 가장 높게 나타났다. ILL의 열중량 분석 결과에 의하면 전처리 온도가 증가함에 따라 최대분해율은 점차 감소하였으며, 최대분해온도는 [Emim][OAc]로 처리한 ILL이 $274{\sim}279^{\circ}C$로 [Bmim][OAc]의 $2701{\sim}294^{\circ}C$보다 낮은 경향을 나타내었다. 전처리 온도가 $90^{\circ}C$에서 $130^{\circ}C$로 증가함에 따라 ILL 내 ${\beta}$-O-4 결합빈도는 [Emim][OAc]의 경우 $2315{\mu}mol/g$에서 $591{\mu}mol/g$으로, [Bmim][OAc]의 경우 $1936{\mu}mol/g$에서 $2478{\mu}mol/g$으로 감소하였다. ILL의 S/G ratio는 [Bmim][OAc]용액으로 $110^{\circ}C$에서 처리하였을 때 1.2로 가장 높게 나타났다.

Herbaceous Biomass Waste-Derived Activated Carbons for Supercapacitors

  • Han, Joah;Lee, Jin Hyung;Roh, Kwang Chul
    • Journal of Electrochemical Science and Technology
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    • 제9권2호
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    • pp.157-162
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    • 2018
  • In the study, herbaceous biomass waste including giant miscanthus, corn stalk, and wheat stalk were used to prepare commercially valuable activated carbons by KOH activation. The waste biomass predominantly consists of cellulose/hemicellulose and lignin, in which decomposition after carbonization and activation contributed to commercially valuable specific surface areas (>$2000m^2/g$) and specific capacitances (>120 F/g) that exceeded those of commercial activated carbon. The significant electrochemical performance of the herbaceous biomass-derived activated carbons indicated the feasibility of utilizing waste biomass to fabricate energy storage materials. Furthermore, with respect to both economic and environmental perspectives, it is advantageous to obtain activated carbon from herbaceous biomass waste given the ease of handling biomass and the low production cost of activated carbon.