• 제목/요약/키워드: insoluble

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화학적·광학적·분광학적 방법을 이용한 광주 도심지역 여름철 초미세먼지의 특성 (Characterization of fine particulate matter during summer at an urban site in Gwangju using chemical, optical, and spectroscopic methods)

  • 손세창;박태언;박승식
    • 한국입자에어로졸학회지
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    • 제17권4호
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    • pp.91-106
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    • 2021
  • Daily PM2.5 was collected during summer period in 2020 in Gwangju to investigate its chemical and light absorption properties. In addition, real-time light absorption coefficients were observed using a dual-spot 7-wavelength aethalometer. During the study period, SO42- was the most important contributor to PM2.5, accounting for on average 33% (10-64%) of PM2.5. The chemical form of SO42- was appeared to be combination of 70% (NH4)2SO4 and 30% NH4HSO4. Concentration-weighted trajectory (CWT) analysis indicated that SO42- particles were dominated by local pollution, rather than regional transport from China. A combination of aethalometer-based and water-extracted brown carbon (BrC) absorption indicated that light absorption of BrC due to aerosol particles was 1.6 times higher than that due to water-soluble BrC, but the opposite result was found in absorption Ångström exponent (AAE) values. Lower AAE value by aerosol BrC particles was due to the light absorption of aerosol BrC by both water-soluble and insoluble organic aerosols. The BrC light absorption was also influenced by both primary sources (e.g., traffic and biomass burning emissions) and secondary organic aerosol formation. Finally the ATR-FTIR analysis confirmed the presence of NH4+, C-H groups, SO42-, and HSO42-. The presence of HSO42- supports the result of the estimated composition ratio of inorganic sulfate ((NH4)2SO4) and bisulfate (NH4HSO4).

우사의 깔짚 종류에 따른 발효 효율과 질소와 인의 형태 변화에 미치는 영향 (Fermentation Efficiency and Effect on Morphological Change of Nitrogen and Phosphorous with the Litter Types of Cowshed)

  • 유건상
    • 대한화학회지
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    • 제66권2호
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    • pp.86-91
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    • 2022
  • 안동에 있는 한 가축 농가의 우사에서 깔짚으로 왕겨와 톱밥으로 만든 퇴비를 각각 채취하였다. 분뇨의 발효 효율은 깔짚의 종류와 특성에 의해서 상당한 영향을 받으며 부영양화의 원인물질인 질소와 인을 저감시키기 위해 고려되어야 할 요소이다. 시료의 온도에 따른 중량 변화는 열중량 분석기(TG-DTA)로, 구성성분은 X-선 형광분석기(XRF)로 조사하였다. 빗물에 의해 퇴비에서 침출되어 나오는 아질산성질소(NO2-), 질산성 질소(NO3-), 인산이온(PO43-)과 암모니아성 질소(NH4+), 총인(T-P), 총질소(T-N)는 각각 각각 이온 크로마토그래프(IC)와 자외선/가시광선 분광기(UV/Vis spectrometry)를 이용하여 측정하였다. 결과적으로, 왕겨에 비하여 톱밥에서 분뇨의 발효 효율이 대략 3배 높게 나타났다. 우분의 발효성이 높을수록 암모니아성 질소의 탈질화 효율이 높았으며, 유기인도 인산이온으로 변화되었다. 덧붙여, 인산이온은 Ca와 Mg를 첨가하여 인산칼슘(CaHPO4·3H2O)과 스투루바이트(NH4MgPO4·6H2O) 형태의 난용성염을 생성 시킴으로서 제거 할 수 있다.

Comparison of Dietary Fiber and Free Sugar Content Between Raw and Cooked Cereal Grains

  • Lee, Rheeno;Kim, Yong-Suk
    • 한국식품위생안전성학회지
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    • 제37권5호
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    • pp.332-338
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    • 2022
  • 곡류는 대한민국을 비롯한 많은 국가에서 주요 식단으로 자리매김하고 있으며, 여러 형태로 섭취되고 있지만 밥 형태로 익혀 먹는 방법이 가장 흔히 알려져 있다. 쌀과 밥 형태의 국내산 현미, 백미, 보리와 귀리의 식이섬유와 유리당 함량을 분석하고 이들의 변화를 비교하기 위해 해당 연구를 진행하였다. 총 식이섬유 함유량은 보리밥(11.62±1.26 에서 2.96±0.90 g/100 g)에서 가장 높은 감소율을 보였으며, 귀리 (8.1±0.34 에서 8.1±0.32 g/100 g)는 거의 변화가 나타나지 않을 정로도 차이가 없었다. 이는 귀리의 수용성 식이섬유가 2.1 g/100 g 정도 감소하였지만 불용성 식이섬유의 함량이 2.2 g/100 g 정도 증가하여 총 식이섬유에는 영향을 주지 않은 것으로 나타났다. 현미와 백미에서는 표준당 6종류 중 sucrose만 검출되었으며 현미밥의 sucrose 함량이 약 0.6 g/100 g 감소하였고, 백미밥에서는 검출되지 않았다. Fructose, sucrose와 raffinose가 보리 (0.09, 0.58, 0.22 g/100 g)와 귀리 (0.08, 0.83, 0.19 g/100 g)에서 검출되었으며, 추가로 보리에서는 maltose (0.09 g/100 g)도 함유된 것으로 나타났다. 조리 후에 모든 곡물에서 유리당 함량이 감소한 것으로 나타났다. 이를 통해 곡류를 조리할 시 식이섬유와 유리당의 함량이 감소하는 효과가 있다는 것을 알 수 있다. 본 연구 결과는 다양한 곡류의 조리에 따른 영양 연구에 도움이 될 것으로 판단되며, 일상 식단에 식이섬유 섭취량을 늘리고 싶거나 당분 조절이 필요한 소비자들에게 정보를 제공함으로써 도움이 될 것이라고 여겨진다.

우사의 깔짚과 퇴비에 있는 질소와 인의 형태적 변화와 저감 방안에 관한 연구 (Study on the Morphological Change and Reduction Plan of Nitrogen and Phosphorous in Litter and Manure of Cow House)

  • 김연정;유건상
    • 대한화학회지
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    • 제65권4호
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    • pp.249-253
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    • 2021
  • 안동에 있는 한 가축 농가의 우사에서 깔짚과 퇴비를 채취하였다. 이들 시료로부터 질소(N)와 인(P)의 성상의 변화를 조사하고 이들을 유용하고 현실적으로 제거할 수 있는 방안을 제시하고자 하였다. 시료의 조성 및 그 함량은 X-선 형광 분석기(XRF)로 확인하였다. 시료에서 용출되어 나오는 아질산성질소(NO2-), 질산성 질소(NO3-), 인산이온(PO43-)들은 이온 크로마토그래프로, 암모니아성 질소(NH4+), 총인(T-P), 총질소(T-N)는 자외선/가시광선 분광기를 이용하여 분석하였다. 연구의 결과로서, 소의 배설물 초기 상태에 있는 암모니아성 질소는 pH를 상승시켜 바로 휘발시킬 수 있는 암모니아 가스 상태로 만들 필요성이 있다. 녹조류 증식의 주요 영양원인 질소와 인은 퇴비의 발효를 촉진시킨 후 칼슘(Ca)과 마그네슘(Mg)을 첨가하여 인은 인산칼슘(CaHPO4·3H2O), 질소는 스투루바이트(NH4MgPO4·6H2O) 형태의 난용성염을 생성 시킴으로서 제거 할 수 있다.

Development of Standard Operating Procedures (SOPs), Standardization, TLC and HPTLC Fingerprinting of a Polyherbal Unani Formulation

  • Naaz, Arjumand;Viquar, Uzma;Naikodi, Mohammad Abdul Rasheed;Siddiqui, Javed Inam;Zakir, Mohammad;Kazmi, Munawwar Husain;Minhajuddin, Ahmed
    • 셀메드
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    • 제11권4호
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    • pp.21.1-21.9
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    • 2021
  • Background: Unani System of Medicine (USM) has its origin to Greece. To ensure and develop the quality, authenticity of Unani drugs, standardization on modern analytical parameter is essential requirement for drugs. Objectives: The aimed of the present study was to develop a standard profile of "Qurṣ-e-Mafasil" by systematic study through authenticated ingredients, pharmacognostic identification followed by physicochemical, TLC, HPTLC fingerprinting analysis as per standard protocol. Material and Methods: In this study three batches of "Qurṣ-e-Mafasil" QM were prepared by standard method as per UPI had been followed by organoleptic properties of formulation such as appearance, color, odor, taste. Powder Microscopy and physicochemical studies were carried out such as Uniformity of weight, Friability, Disintegration time, hardness, LOD, ash vales and extractive values in like aqueous, alcohol & hexane. Further qualitative tests such as Thin-Layer Chromatography (TLC), and High-Performance Thin Layer Chromatography (HPTLC) studies were also carried out to develop fingerprint pattern of the alcoholic solvent extract of QM. Phytochemical screening was carried out in different solvent extracts such as alcoholic, aqueous and chloroform extracts to detect the presence phytoconstituents in the formulation QM. Heavy metals, Microbial Load Contamination and pesticidal residues were also determined. Results: Qurṣ-e-Mafasil showed tablet-like appearance, light brown colour, mild pungent odour and acrid taste. Uniformity of weight (mg), friability (rpm), and hardness (kg/cm) and disintegration time was ranged between (500 to 503), (0.0340 to 0.038), (8.40 to 8.67) and (4-5 minutes) respectively for the three batches. Loss in weight on drying at 105℃ was ranged between (8.3425 to 8.7346). Extracted values were calculated in distilled water ranged between (30.9091 to 31.4358), hexane (1.1419 to 1.4281), and alcohol (3.3352 to 3.3962). The ash values recorded were ranged between (3.7336 to 3.8378), and acid insoluble ash (0.5859 to 0.6112).

A novel protocol for batch-separating gintonin-enriched, polysaccharide-enriched, and crude ginsenoside-containing fractions from Panax ginseng

  • Rami Lee;Han-Sung Cho;Ji-Hun Kim;Hee-Jung Cho;Sun-Hye Choi;Sung-Hee Hwang;Hyewon Rhim;Ik-Hyun Cho;Man-Hee Rhee;Do-Geun Kim;Hyoung-Chun Kim;Seung-Yeol Nah
    • Journal of Ginseng Research
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    • 제47권3호
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    • pp.366-375
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    • 2023
  • Background: Ginseng contains three active components: ginsenosides, gintonin, and polysaccharides. After the separation of 1 of the 3 ingredient fractions, other fractions are usually discarded as waste. In this study, we developed a simple and effective method, called the ginpolin protocol, to separate gintonin-enriched fraction (GEF), ginseng polysaccharide fraction (GPF), and crude ginseng saponin fraction (cGSF). Methods: Dried ginseng (1 kg) was extracted using 70% ethanol (EtOH). The extract was water fractionated to obtain a water-insoluble precipitate (GEF). The upper layer after GEF separation was precipitated with 80% EtOH for GPF preparation, and the remaining upper layer was vacuum dried to obtain cGSF. Results: The yields of GEF, GPF, and cGSF were 14.8, 54.2, and 185.3 g, respectively, from 333 g EtOH extract. We quantified the active ingredients of 3 fractions: L-arginine, galacturonic acid, ginsenosides, glucuronic acid, lysophosphatidic acid (LPA), phosphatidic acid (PA), and polyphenols. The order of the LPA, PA, and polyphenol content was GEF > cGSF > GPF. The order of L-arginine and galacturonic acid was GPF >> GEF = cGSF. Interestingly, GEF contained a high amount of ginsenoside Rb1, whereas cGSF contained more ginsenoside Rg1. GEF and cGSF, but not GPF, induced intracellular [Ca2+]i transient with antiplatelet activity. The order of antioxidant activity was GPF > GEF = cGSF. Immunological activities (related to nitric oxide production, phagocytosis, and IL-6 and TNF-α release) were, in order, GPF > GEF = cGSF. The neuroprotective ability (against reactive oxygen species) order was GEF > cGSP > GPF. Conclusion: We developed a novel ginpolin protocol to isolate 3 fractions in batches and determined that each fraction has distinct biological effects.

국내 알루미늄 노출실태 및 노출기준 개정 제안 (Proposals for Revising the Occupational Exposure Limits for Aluminum in Korea)

  • 김승원;피영규;백용준;정태진;이혜실
    • 한국산업보건학회지
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    • 제34권1호
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    • pp.85-97
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    • 2024
  • Objectives: This study was intended to investigate the revision status of the occupational exposure standards for aluminum at home and abroad; to investigate worker exposure at domestic aluminum manufacturing and handling workplaces; to conduct social and economic evaluation for the revision of domestic aluminum exposure limits. Methods: We investigated the current status of occupational exposure limits for aluminum at home and abroad, and analyzed supporting data. An exposure survey was conducted targeting domestic aluminum manufacturing and handling workplaces. Based on these, revised aluminum occupational exposure limits were proposed. Results: The major aluminum exposure limits at home and abroad show a notable difference. The toxicity of aluminum, which was revealed through animal experiments and epidemiological investigations. The average concentration of aluminum in the air at 12 workplaces was 0.016 mg/m3, and the maximum was 0.0776 mg/m3. When total dust and respiratory dust were measured side by side and simultaneously for the same process, 12.1% of the total mass concentration of aluminum dust was respiratory dust. As a result of measuring and comparing the size distribution of dust with an optical particle counter in real time, 48.1% of the total dust in the form of welding fume and pyro-powder was respiratory dust. Based on the literature review and workplace survey, three proposals for changing the aluminum exposure limit were proposed. Proposal (1): For all types, 10 mg/m3 is unified as the exposure limit except for soluble salts and alkyls. Proposal (2): 1(R) mg/m3 as the exposure limit for all forms except soluble salts and alkyl. Proposal (3): 1(R) mg/m3 for pyro-powder and welding fume, and 10 mg/m3 for metal dust, aluminum oxide, and insoluble compounds as exposure standards. A pyro-powder was defined as dry aluminum powder of 200 mesh size (74 ㎛) or smaller (larger size classified as metal dust). Reason for setting: In the workplace survey, the ratio of respiratory dust to total dust was analyzed to be about 1:10, so it was judged that the domestic standard and the ACGIH standard were compatible. Conclusions: In all scenarios according to the revision of the exposure standard, the B/C ratio was greater than 1 or only benefits existed, so it was evaluated as sufficiently reasonable as a result of the socio-economic evaluation.

옥천대(沃川帶) 우라늄광층(鑛層)의 구조규제(構造規制) 및 지구화학적(地球化學的) 특성연구(特性硏究) (Lithologic and Structural Controls and Geochemistry of Uranium Deposition in the Ogcheon Black-Slate Formation)

  • 이대성;윤석규;이종혁;김정택
    • 자원환경지질
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    • 제19권spc호
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    • pp.19-41
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    • 1986
  • Structural, radioactive, petrological, petrochemical, mineralogical and stable isotopic study as well as the review of previous studies of the uranium-bearing slates in the Ogcheon sequence were carried out to examine the lithological and structural controls, and geochemical environment in the uranium deposition in the sequence. And the study was extended to the coal-bearing formation (Jangseong Series-Permian) to compare the geochemical and sedimentologic aspects of uranium chemistry between Ogcheon and Hambaegsan areas. The results obtained are as follows: 1. The uranium mineralization occurs in the carbonaceous black slates of the middle to lower Guryongsan formation and its equivalents in the Ogcheon sequence. In general, two or three uranium-bearing carbonaceous beds are found with about 1 to 1.5km stratigraphic interval and they extend from Chungju to Jinsan for 90km in distance, with intermittent igneous intrusions and structural Jisturbances. Average thickness of the beds ranges from 20 to 1,500m. 2. These carbonaceous slate beds were folded by a strong $F_1$-fold and were refolded by subsequent $F_1$-fold, nearly co-axial with the $F_1$, resulting in a repeated occurrence of similar slate. The carbonaceous beds were swelled in hing zones and were shrinked or thined out in limb by the these foldings. Minor faulting and brecciation of the carbonaceous beds were followed causing metamorphism of these beds and secondary migration and alteration of uranium minerals and their close associations. 3. Uranium-rich zones with high radioactive anomalies are found in Chungju, Deogpyong-Yongyuri, MiwonBoun, Daejeon-Geumsan areas in the range of 500~3,700 cps (corresponds to 0.017~0.087%U). These zones continue along strike of the beds for several tens to a few hundred meters but also discontinue with swelling and pinches at places that should be analogously developed toward underground in their vertical extentions. The drilling surveyings in those area, more than 120 holes, indicate that the depth-frequency to uranium rich bed ranging 40~160 meter is greater. 4. The features that higher radioactive anomalies occur particularly from the carbonaceous beds among the argillaceous lithologic units, are well demonstrated on the cross sections of the lithology and radioactive values of the major uranium deposits in the Ogcheon zone. However, one anomalous radioactive zone is found in a l:ornfels bed in Samgoe, near Daejeon city. This is interpreted as a thermal metamorphic effect by which original uranium contents in the underlying black slate were migrated into the hornfels bed. 5. Principal minerals of the uranium-bearing black slates are quartz, sericite, biotite and chlorite, and as to chemical composition of the black slates, $Al_2O_3$ contents appear to be much lower than the average values by its clarke suggesting that the Changri basin has rather proximal to its source area. 6. The uranium-bearing carbonaceous beds contain minor amounts of phosphorite minerals, pyrite, pyrrhotite and other sulfides but not contain iron oxides. Vanadium. Molybdenum, Barium, Nickel, Zirconium, Lead, Cromium and fixed Carbon, and some other heavy metals appear to be positive by correlative with uranium in their concentrations, suggesting a possibility of their genetic relationships. The estimated pH and Eh of the slate suggests an euxenic marine to organic-rich saline water environment during uranium was deposited in the middle part of Ogcheon zone. 7. The Carboniferous shale of Jangseong Series(Sadong Series) of Permian in Hambaegsan area having low radioactivity and in fluvial to beach deposits is entirely different in geochemical property and depositional environment from the middle part of Ogcheon zone, so-called "Pibanryong-Type Ogcheon Zone". 8. Synthesizing various data obtained by several aspects of research on uranium mineralization in the studied sequence, it is concluded that the processes of uranium deposition were incorporated with rich organic precipitation by which soluble uranyl ions, $U{_2}^{+{+}}$ were organochemically complexed and carried down to the pre-Ogcheon sea bottoms formed in transitional environment, from Red Sea type basin to Black Sea type basin. Decomposition of the organic matter under reducing conditions to hydrogen sulfide, which reduced the $UO{_2}^{+2}$ ions to the insoluble uranium dioxide($UO_2$), on the other side the heavy metals are precipitated as sulfides. 9. The EPMA study on the identification of uraninite and others and the genetic interpretation of uranium bearing slates by isotopic values of this work are given separately by Yun, S. in 1984.

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산림토양(山林土壤)의 산성화(酸性化) 민감도(敏感度)에 대(對)한 실험적(實驗的) 평가(評價)(II) - 추출성(抽出性) 황산(黃酸)이온(SO42-) 함량(含量)과 황산(黃酸)이온 흡착능(吸着能)의 활용(活用) - (Experimental Assessment of Forest Soil Sensitivity to Acidification(II) - Application of Extractable Sulfate and Sulfate Adsorption Capacity -)

  • 이승우;김영걸;이충화;변재경
    • 한국산림과학회지
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    • 제90권4호
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    • pp.431-436
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    • 2001
  • 산퇴적물에 대한 산림토양의 산성화 민감도를 평가하기 위하여 4개 지역 소나무림을 대상으로 토양내 추출성 황산이온 함량과 황산이온 흡착능을 정량하였다. 유기물층의 수용성 황산이온 함량은 강화와 홍천에 비해 울산과 남산에서 현저히 높아 황산화물의 지역적 유입특성을 반영하였다. 그러나 광물질 토양내 추출성 황산이온 함량은 황산화물의 유입량과 토양 흡착능의 상호작용으로 울산, 강화, 남산 및 홍천 순으로 높게 나타났다. 대기오염 우려지역인 남산, 강화 및 울산의 황산이온 특정흡착률(총 추출성에 때한 불용성의 비율)은 각각 16.6%, 56.8% 및 37.4%로써 산퇴적물에 대한 토양산성화의 상대적 민감도는 남산에서 가장 높았다. 황산이온 흡착등온식($RE=mX_i-b$)의 추가유입량($X_i$)과 흡착량(RE)간의 정의 상관성은 광물질 토양에서만 유의적으로(p<0.05) 나타났다. 흡착등온식의 회귀계수(m)로 나타낸 토심 30cm까지의 황산이온 흡착능은 남산, 강화, 울산 및 홍천에서 각각 0.16, 0.24, 0.25 및 $0.32mmol_c\;kg^{-1}$으로 이에 근거한 지역별 토양산성화 민감도는 남산에서 가장 높았다. 황산이온 영점흡착량(null-point adsorption)은 남산, 강화, 울산 및 홍천에서 각각 3.81, 2.17, 4.96 및 $0.65mmol_c\;kg^{-1}$으로 홍천을 제외한 나머지 지역은 현실적인 황산이온 퇴적량을 훨씬 초과하는 추정치이었다.

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슬래쉬소나무의 화아원기(花芽原基) 형성(形成)의 생리학적(生理學的) 연구(硏究) III. 자화원기형성기간(雌花原基形成期間)동안 14C-광합성물질(光合成物質)의 정아(頂芽)로의 이동(移動) (Physiology of Strobilus Initiation in Slash Pine III. Translocation of 14C-photosynthate to Terminal Buds during the Period of Female Strobilus Initiation)

  • 이경준
    • 한국산림과학회지
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    • 제48권1호
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    • pp.51-58
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    • 1980
  • 자화(雌花)의 원기형성기간(原基形成期間)동안에 광합성물질(光合成物質) (Photosynthate) 이 잎으로부터 정아(頂芽)로 이동(移動)하는 양상(樣相)을 구명(究明)하기 위하여, 방사능(放射能) 동의원소(同位元素) $^{14}CO_2$를 잎에 처리(處理)하여 방사능(放射能)의 이동(移動)을 추적(追跡)하였다. 7월말(月末)과 8월말(月末) 두 차례에 걸쳐서 당년지(当年枝)의 잎에 $50_{\mu}Ci$$^{14}CO_2$를 90분간(分間) 처리(處理)한 후, 1일(日)과 7일후(日后)에 그 당년지(当年枝)를 채취(採取)하여 방사능(放射能)을 특정(測定) 했다. 처리(處理) 1일(日) 후에 는 정아내(頂芽內) 총방사능(總放射能)의 85% 이상(以上) 이, 7일(日) 후에는 그의 55% 정도가 에칠알콜 가용(可溶) Fraction에서 검출(檢出)되었다. 8월말(月末)에 $^{14}CO_2$를 처리(處理)했을때, 자화(雌花)를 생산(生産)하는 정아(頂芽)로 이동(移動)된 방사능물질(放射能物質)의 양(量)은 웅화(雄花)를 생산(生産)하는 정아(頂芽)와 영양(營養)상태에 머물러 있는 정아(頂芽)로 이동(移動)된 양(量)보다 훨씬 적었다. 에칠알콜 가용(可溶) Fraction을 hexane가용(可溶), 아미노산, 당류(糖類), 유기산(有機酸) Fraction으로 세분(細分)하였을 때, 웅화(雄花) 생산(生産)하는 정아(頂芽)는 자화(雌花)를 생산(生産)하는 정아(頂芽)보다 그 방사능(放射能) 물질(物質)의 양(量)이 각 Fraction에서 3배(培)가량 많았다. 이것은 자화(雄花)를 생산(生産)하는 정아(頂芽)는 7월(月)에 이미 형성(形成)된 원기(原基)의 분화(分化)로 인(因)하여, 8월말(月末)에 다량(多量)의 광합성물질(光合成物質) 요구(要求)하게 된다는 것을 의미(意味)한다. 반면(反面)에 자화(雌花)를 생산(生産)하는 정아(頂芽)는 원기형성(原基形成) 시기(時期)인 8월말(月末)경에 광합성(光合成) 물질(物質)을 별로 요구(要求)하지 않으며, 대신(代身) 일시적(一時的)인 신진대사(新陳代謝) 활동(活動)의 감소(減少)를 동양(同佯)하는 것 같이 생각된다.

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