• 제목/요약/키워드: Active biomass

검색결과 142건 처리시간 0.036초

지상원격측정 센서를 이용한 벼의 생체량 및 질소 영양 평가 (Evaluation of Biomass and Nitrogen Status in Paddy Rice Using Ground-Based Remote Sensors)

  • 강성수;공효영;정현철;김이현;홍석영;홍순달
    • 한국토양비료학회지
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    • 제43권6호
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    • pp.954-961
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    • 2010
  • 지상원격측정 센서 반사율 지표는 비파괴적으로 실시간으로 빠르게 생육 중 작물의 생체량, 질소 스트레스 정도를 예측할 수 있는 도구로 연구되고 있다. 본 연구의 목적은 질소 시비량 수준별로 재배된 벼 (Oryza sativa L.)의 질소흡수량, 생체량 및 수량과 지상원격측정센서 반사율 지표들의 상호관계로부터 효율적인 반사율 지표를 선발하고 반사율 지표를 통한 벼 생육 중 질소시비수준을 평가하고자 하였다. 질소시비수준 0, 70, 100, 130 kg N $ha^{-1}$별로 처리된 시험구의 캐노피 반사율을 여러 종류의 수동형과 능동형 지상원격측정 센서로 각 생육시기별로 측정하였고 생체량과 질소흡수량 및 수량을 조사하여 상호관계를 분석하였다. 수동형 센서보다는 능동형 센서가 생육시기별 벼의 지상부 건물중, 수량, 질소농도 및 질소흡수량과 더 밀접한 상관을 나타냈으며 생육 후반으로 갈수록 상관계수 크기는 낮아지는 경향이었으나 유의성은 P<0.01 수준이 계속 유지되었다. 가장 밀접한 관계를 보인 반사율 지표는 Crop Circle-active 센서로 측정한 NIR/Red, NIR/Amber 지표였다. 특히 이삭거름 시비시기인 7월 중순의 Crop Circle 센서로 측정한 NIR/Red, NIR/Amber 지표는 건물중, 엽면적 지수와 상관계수 0.92 이상의 고도로 유의성 있는 정의 상관관계 (P<0.01)를 보였다. NIR/Red와 NIR/Amber 지표로 계산한 충족지수의 시비수준에 대한 회귀에서 회귀곡선은 충족지수 변동의 91%와 92%를 각각 설명하였다. 따라서 7월 중순~8월 초에 측정한 반사율지표의 충족지수는 실시간에 비파괴적으로 시비수준을 예측하여 위치별로 변량적인 질소시비량을 결정할 수 있는 방법으로 활용 가능할 것으로 판단되었다.

차세대 바이오연료의 R&D 현황과 이슈 (Status and Challenging Issues of the Advanced Biofuels)

  • 박순철;이진석
    • 신재생에너지
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    • 제10권4호
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    • pp.16-21
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    • 2014
  • Advanced biofuels are recognized as a key tool to mitigate the $CO_2$ emissions in the transport sector. Active R&D works have been carried out but there are still some major barriers to implement the technology. In this paper, recent developments on the advanced biofuels' technology are reviewed and the major barriers to commercialization of the biofuels will be discussed.

목질계 바이오매스에서 생산된 바이오차의 물리화학적 특성 및 Cu 흡착제거 특성 (Physicochemical Properties and Cu Sorption of the Biochar Derived from Woody Biomass)

  • 박이경;양재규;나정균;정종암;정형진;강창환;고경민;김완희;장윤영
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제17권2호
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    • pp.54-61
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    • 2012
  • In this study, the adsorption of $Cu^{2+}$ from aqueous solution by the biochar derived from woody biomass at different pyrolysis temperatures has been investigated. The woody biomass wastes used in this study were branch of willow ($Salix$ $koreensis$ $Andersson$) and bark of chestnut ($Castanea$ $crenata$ $var.$ $dulcis$). Three biochar samples prepared by heating each biomass at temperature of $300^{\circ}C$, $500^{\circ}C$, and $700^{\circ}C$were tested for the adsorption capacity of Cu. Also the physicochemical properties of the developed biochars were studied using different characterization techniques such as FT-IR, SEM, BET surface area, and cation exchange capacity (CEC). The adsorption of Cu could be well described by Langmuir model for both willow and chestnut biochars with $R^2{\geq}0.98$. The maximum adsorption capacities of the biochar produced at $700^{\circ}C$ from the Langmuir equation were found to be 12.5 mg $g^{-1}$ and 16.9 mg $g^{-1}$ for willow and chestnut, respectively. Chestnut biochar was found to interact more effectively with the active sites available for Cu, resulting higher removal of Cu(II) than wiloow biochar. Ion exchange and surface complexation found to be the main mechanisms involved in the adsorption process. This study demonstrated the feasibility of the biochars derived from woody biomass to be as a low-cost potential adsorbent for heavy metals as Cu(II) removal in aquatic system.

북동 적도 태평양에서 수층 기초 생산력과 심해저 퇴적물내 미생물 생산력과의 상관성 (Potential Meso-scale Coupling of Benthic-Pelagic Production in the Northeast Equatorial Pacific)

  • 김경홍;손주원;손승규;지상범;현정호
    • Ocean and Polar Research
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    • 제33권1호
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    • pp.21-34
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    • 2011
  • We determined potential meso-scale benthic-pelagic ecosystem coupling in the north equatorial Pacific by comparing surface chl-a concentration with sediment bacterial abundance and adenosine triphosphate (ATP) concentration (indication of active biomass). Water and sediment samples were latitudinally collected between 5 and $11^{\circ}N$ along $131.5^{\circ}W$. Physical water properties of this area are characterized with three major currents: North Equatorial Current (NEC), North Equatorial Count Current (NECC), and South Equatorial Current (SEC). The divergence and convergence of the surface water occur at the boundaries where these currents anti-flow. This low latitude area ($5{\sim}7^{\circ}N$) appears to show high pelagic productivity (mean phytoplankton biomass=$1266.0\;mgC\;m^{-2}$) due to the supplement of high nutrients from nutrient-enriched deep-water via vertical mixing. But the high latitude area ($9{\sim}11^{\circ}N$) with the strong stratification exhibits low surface productivity (mean phytoplankton biomass=$603.1\;mgC\;m^{-2}$). Bacterial cell number (BCN) and ATP appeared to be the highest at the superficial layer and reduced with depth of sediment. Latitudinally, sediment BCN from low latitude ($5{\sim}7^{\circ}N$) was $9.8{\times}10^8\;cells\;cm^{-2}$, which appeared to be 3-times higher than that from high latitude ($9{\sim}11^{\circ}N$; $2.9{\times}10^8\;cells\;cm^{-2}$). Furthermore, sedimentary ATP at the low latitude ($56.2\;ng\;cm^{-2}$) appeared to be much higher than that of the high latitude ($3.3\;ng\;cm^{-2}$). According to regression analysis of these data, more than 85% of the spatial variation of benthic microbial biomass was significantly explained by the phytoplankton biomass in surface water. Therefore, the results of this study suggest that benthic productivity in this area is strongly coupled with pelagic productivity.

플라스틱 및 바이오매스의 촉매 열분해에 의한 수소 생성 특성 (Characteristics of Hydrogen Production by Catalytic Pyrolysis of Plastics and Biomass)

  • 최선용;이문원;황훈;김래현
    • 에너지공학
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    • 제19권4호
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    • pp.221-227
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    • 2010
  • 본 연구에서는 바이오매스 및 플라스틱에 가스화 효율을 높이기 위한 탄산염 촉매 또는 Ni based 촉매를 혼합한 시료에 대하여, 고정층 반응기를 이용하여 급속 등온 열분해 실험을 수행하여, 생성된 가스의 온도, 시료 및 촉매의 영향에 관한 분석을 통하여, 최적의 수소 생성 수율을 얻고자 한다. 고위발열량 측정 결과, 바이오매스보다 플라스틱 폐기물의 발열량이 높아짐을 알 수 있었다. 원소분석 결과로부터 수소 함량은 플라스틱 시료가 더 높았다. 계산된 활성화 에너지는 촉매 적용에 의해 감소하였고, 5 wt% 이상의 경우에는 큰 변화를 보이지 않았다. 수소수율은 플라스틱 폐기물이 포함된 시료, 온도에 대해서는 대부분 높은 온도 범위에서 최대값이 얻어졌다. 또한 대부분의 시료에서 높은 혼합비를 갖는 조건의 수소수율이 가장 높은 결과를 보였으나, 5 wt% 이상의 조건에서는 촉매 혼합비 증가의 영향은 미비하여, 활성화 에너지의 결과와 잘 일치함을 확인하였다. 전체적으로 촉매 반응이 무촉매 반응에 비하여 높은 수소수율이 얻어졌다. 촉매 종류에 대하여, 탄산염 촉매인 $Na_2CO_3$$K_2CO_3$보다 Ni-$ZrO_2$ 촉매가 수소 생산을 위한 목적에 더 적합한 촉매임을 확인하였고, 본 연구로부터의 최대 수소수율을 위한 조건은 $900^{\circ}C$, 20 wt%의 Ni-$ZrO_2$(1:9) 촉매가 혼합된 Pitch Pine, Polyethylene 시료에 대하여 65.9 vol%의 높은 수소수율의 결과를 얻었다.

두과.녹비작물 재배를 통한 유기농법 토양비옥도의 유지와 증진 (Sustenance and Enhancement of Soil Fertility for Organic Farming by Legumes and Green Manure)

  • 장경란;손상목
    • 한국유기농업학회지
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    • 제8권2호
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    • pp.97-110
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    • 2000
  • An organic agriculture should be managed by mixed farming in farm unit as a closed recycling system. Due to restricted purchased of fertilizers from outside, organic farmer has to deal with limited amount of nutrient source in farm unit. Especially the supply of the essential nutrient, nitrogen, mostly depends on legumes fixing nitrogen optimizing the site-adapted crop rotation. Dynamics of humus and metabolic plant carbon and active soil carbon compartment in active and passive humuspool by rotation system was explained, and dynamics of potentially mineralizable nitrogen in organic nitrogen and biomass was discussed. It was also discussed comparison of ammonia emission, potential greenhouse effect, primary energy input, acidification potential, CO2 emission between organic and conventional farming, the nitrate-nitrogen dynamic in the soil profile by organic, integrated and conventional farming system. In conclusion, it was suggested for Korean Organic Agriculture that the importance of legumes and green manures in rotation system for increase/maintenance of soil ferfility, and was pointed out the need of investment for environment impact of Korean organic farming implement.

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Shifting Cultivation Effects on Soil Environment in Upland Watershed of Bangladesh

  • Haque, S.M. Sirajul;Gupta, Sanatan Das;Miah, Sohag
    • Journal of Forest and Environmental Science
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    • 제30권2호
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    • pp.179-188
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    • 2014
  • This research reports the effects of shifting cultivation on soil environment collecting samples from 0-5 cm soil depth from five locations viz. at Burburichhara, Maichchari, Longadu, Sukurchhari and Muralipara in Rangamati district of Chittagong Hill Tracts (CHTs). Soil analyses showed that fungal and bacterial population, microbial respiration and active microbial biomass, maximum water holding capacity, conductivity and moisture contents were significantly (at least $p{\leq}0.05$) lower in shifting cultivated soil compared to adjacent mixed tree plantations at all the sites. On an average in soils of 5 different shifting cultivated lands fungal population was $1.33{\times}10^5$ CFU/g dry soil and bacterial population $1.80{\times}10^7$ CFU/g dry soil and in mixed plantations fungal population was $1.70{\times}10^5$ and bacterial population $2.51{\times}10^7$ CFU/g dry soil. Organic matter and exchangeable Ca and Mg contents were significantly (at least $p{\leq}0.05$) lower and bulk density significantly (at least $p{\leq}0.05$) higher in shifting cultivated land in most of the locations compared to adjacent mixed tree plantations. Ratios of microbial respiration and organic carbon as well as active microbial biomass and organic carbon were distinctly lower and pH higher at 3 locations in shifting cultivated soils compared to mixed plantations. Findings of various soil properties, therefore, suggest that shifting cultivation has deteriorating effects on soil environment.

Investigation of the Central Carbon Metabolism of Sorangium cellulosum: Metabolic Network Reconstruction and Quantification of Pathway Fluxes

  • Bolten, Christoph J.;Heinzle, Elmar;Muller, Rolf;Wittmann, Christoph
    • Journal of Microbiology and Biotechnology
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    • 제19권1호
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    • pp.23-36
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    • 2009
  • In the present work, the metabolic network of primary metabolism of the slow-growing myxobacterium Sorangium cellulosum was reconstructed from the annotated genome sequence of the type strain So ce56. During growth on glucose as the carbon source and asparagine as the nitrogen source, So ce56 showed a very low growth rate of $0.23\;d^{-1}$, equivalent to a doubling time of 3 days. Based on a complete stoichiometric and isotopomer model of the central metabolism, $^{13}C$ metabolic flux analysis was carried out for growth with glucose as carbon and asparagine as nitrogen sources. Normalized to the uptake flux for glucose (100%), cells recruited glycolysis (51%) and the pentose phosphate pathway (48%) as major catabolic pathways. The Entner-Doudoroff pathway and glyoxylate shunt were not active. A high flux through the TCA cycle (118%) enabled a strong formation of ATP, but cells revealed a rather low yield for biomass. Inspection of fluxes linked to energy metabolism revealed that S. cellulosum utilized only 10% of the ATP formed for growth, whereas 90% is required for maintenance. This explains the apparent discrepancy between the relatively low biomass yield and the high flux through the energy-delivering TCA cycle. The total flux of NADPH supply (216%) was higher than the demand for anabolism (156%), indicating additional reactions for balancing of NADPH. The cells further exhibited a highly active metabolic cycle, interconverting $C_3$ and $C_4$ metabolites of glycolysis and the TCA cycle. The present work provides the first insight into fluxes of the primary metabolism of myxobacteria, especially for future investigation on the supply of cofactors, building blocks, and energy in myxobacteria, producing natural compounds of biotechnological interest.

Comparative Analysis of Phenolic Compound of Mutant Lines of Sorghum (Sorghum bicolor)

  • Ye-Jin Lee;Baul Yang;Dong-Gun Kim;Sang Hoon Kim;Soon-Jae Kwon;Jae Hoon Kim;Joon-Woo Ahn;Chang-Hyu Bae;Jaihyunk Ryu
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2022년도 추계학술대회
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    • pp.86-86
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    • 2022
  • Sorghum (Sorghum bicolor) is increasingly important as a biomass crop worldwide. Its genetic diversity provides a large range of biochemical composition suitable for various uses as bioplastics. Phenolic compounds are the main compounds of lignocellulosic residues, which can be used as a source of active components for their use in active packaging materials. In this research, we investigated the total phenolic content (TPC) and the total flavonoid content (TFC) among 60 mutant lines (early heading, high biomass and dwarfness) and their original cultivars. Sixty sorghum mutant lines were developed by treatment with gamma-ray or proton irradiation in 14 sorghum cultivars. The levels of TPC and TFC of 14 original cultivars were ranging from 3.27 to 11.54 mg/100 g and 2.39 to 6.74 mg/100 g, respectively. The TPCs of the mutant lines were ranging from 1.92 to 13.10 mg/100 g with average content of 6.35 mg/100 g. The TFCs of the mutant lines were ranging from 1.72 to 8.30 mg/100 g with average content of 4.20 mg/100 g. Three mutant lines derived from gamma-ray showed significant lower TPC and TFC than those of the original cultivar. While, five mutant lines showed significant higher TPC and TFC. These findings will be useful for the selection of sorghum genotypes with improved phenolic compounds.

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식물세포 배양으로부터 Peroxidase 대량 정제를 위한 전처리 공정 개발 (A New large-scale Pre-purification for Peroxidase from Plant Cell Cultures)

  • 표상현
    • KSBB Journal
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    • 제15권4호
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    • pp.342-345
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    • 2000
  • 식물세포배양으로부터 peroxidase를 대량 생산하기 위한 분리/정제 공정 으로서 세포를 파쇄하고 크로마토그래피 전처리로서 활성백토를 적용하였다. 활성백토는 미세한 세 포 조각 뿐만 아니라 여려가지 불순불을 선택적으로 흡착 하는 성질을 나타내었으며, 이를 통하여 효과적으로 정제 공정을 진행할 수 있었다 흡착을 통한 전처리 후 한외여 과장치를 이용하여 농축을 실시 하였으며, DEAE-Sepharose F FF를 이용한 크로마토그래피를 통해 정제가 이루어졌다. 활성을 나타내는 용액을 탈염, 농축 후 동결 건조하였다. 이 공정은 상업화에 필요한 대량 정제를 가능하게 하였으며 수율과 정제비용 측면에서 상당히 경제적인 공정임을 입증하였다, 활성백토를 이용한 흡착공정은 다른 효소 및 단백질의 경제적인 대량정제에 적용될 수 있으리라 기대된다.

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