• 제목/요약/키워드: $CO_2$fixation

검색결과 179건 처리시간 0.026초

Living Building Material의 광합성 작용을 통한 CO2 흡수 능력 평가 (Photo-autotrophic Behavior of Engineered Living Building Materials)

  • 장인동;이종구
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2022년도 가을 학술논문 발표대회
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    • pp.31-32
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    • 2022
  • Unlike conventional building materials, the living building material (LBM) cube is composed of sand, gelatin, and cyanobacteria without cement. The surface of the LBM cube absorbs CO2 from the atmosphere by photosynthesis and is deposited in the form of CaCO3. In addition, the crystals generated in this process strengthened the gelatin-sand structure to enhance the compressive strength.

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A Facile and Efficient Synthesis of Dronedarone Hydrochloride

  • Li, Feng;Jin, Chunhua;Zou, Jianwei;Wu, Jun
    • Bulletin of the Korean Chemical Society
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    • 제35권7호
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    • pp.1970-1972
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    • 2014
  • A facile and efficient synthesis of dronedarone hydrochloride starting from commercially available 4-nitrophenol is described. This approach features a tandem-type synthesis of 3-carbonylated benzofuran involving cyclization of 2-ethynylphenol followed by $CO_2$ fixation at the 3-position of the benzofuran ring mediated by potassium carbonate without the addition of any transition metal catalyst.

Carbon Dioxide Mitigation by Microalgal Photosynthesis

  • Lee Jeong, Mi-Jeong;Gillis, James M.;Hwang, Jiann-Yang
    • Bulletin of the Korean Chemical Society
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    • 제24권12호
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    • pp.1763-1766
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    • 2003
  • Algal growth studies of Chlorella strains were conducted in a batch mode with bench type experiments. Carbon dioxide fixation rates of the following green microalgae were determined: Chlorella sp. H84, Chlorella sp. A2, Chlorella sorokiniana UTEX 1230, Chlorella vulgaris, and Chlorella pyrenoidosa. C. vulgaris, among other strains of microalgae, showed the highest growth rate (1.17 optical density/5 days). Cultivating conditions for C. vulgaris that produced the highest growth rate were at concentrations of 243 ${\mu}g\;CO_2$/mL, 10 mM ammonia, and 1 mM phosphate, with an initial pH range of 7-8.

C. I. Reactive Black 5로 염색된 면직물의 알칼리발염에 있어 2단계 고착조건 및 요소의 영향 (The Effects of Two-step Fixation and Urea on the Alkali Discharge Printing of Cotton Fabrics Dyed with C. I. Reactive Black 5)

  • 정화진;박건용
    • 한국염색가공학회지
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    • 제11권1호
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    • pp.16-24
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    • 1999
  • The effects of two-step fixation of steaming and baking on the dischargeability of cotton fabrics dyed with C.I. Reactive Black 5(Bl-5) were investigated when the concentrations of $K_2CO_3$ and benzaldehyde sodium bisulfite(BASB) were increased over 120/kg. Remarkably increased dischargeability resulted from baking for 3 min or more at 160t after steaming for 8 min or more at $102^\circ{C}$, but 120g/kg or more amounts of $K_2CO_3$ and BASB(50%) had little influence on dischargeability. Therefore the discharge mechanism can be suggested that covalent bonds between cellulose and Bl-5 undergo $S_N2$ attack by hydroxide ion formed by the reaction of $K_2CO_3$ and water in steaming at $102^\circ{C}$ first and then, through transition states they are cleavaged in baking at 160t to yield hydrolyzed Bl-S and compounds of BASB and Bl-5 isolated from fiber, which are undyeable and removed by washing. The effect of urea, one of the hydrotrope agents, on discharge printing was also studied. The result which dischargeability was greatly improved by increasing the steaming time from 8 min to 15 min at $102^\circ{C}$ or by increasing the amount of urea obviously shows that water in steaming and urea in print paste play an important role in discharge printing. And as an increase of the baking time from 5 min to 7 min at $160^\circ{C}$ makes it possible to improve dischargeability, it is once more confirmed that high temperature of about 160t is exactly required to discharge the dyed Bl-5. The colored discharge printing demands a more amount of urea because urea contributes to the putting color fixation as well as the discharge reaction.

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Anti-biofouling 광생물반응기를 이용한 미세조류 배양 연구 (Culture of Microalgae using Anti-biofouling Photobioreator)

  • 나인욱;서민호;안수한;황경엽
    • KSBB Journal
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    • 제26권6호
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    • pp.561-564
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    • 2011
  • In this study, we carried out the development of high performance photobioreactor, which can be used to develop the biological $CO_2$ fixation technology as well as the renewable biofuels, the microalgae Botryococcus braunii. When B. Braunii was cultured in Anti-biofouling photobioreator, growth rate of it showed about 3 times higher than that of bubble column photobioreactor at the same conditions. In case of photobioreactor without bead, after 3 days culture time, biofouling occur rapidly in wall of the photobioreactor. However, with bead 5% (V/V), biofouling do not occur all experimental days.

디아미노안트라퀴논계 분산염료/모노클로로트리진형 반응염료에 의한 폴리에스테르/면 혼방 직물의 날염 (Printing of Polyester and Cotton Blends using Diaminoanthraquinone Disperse Dye and Monochlorotriazinyl Reactive Dye Mixtures)

  • 강숙녀
    • 한국염색가공학회지
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    • 제6권2호
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    • pp.30-39
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    • 1994
  • To study the printing behaviors of Polyester and cotton(P/C) fabrics printed with disperse and reactive dyes, the effects of alkalis on the fixation of reactive dyes and the alkali-stability of disperse dyes in various methods of fixation were examined. The anthraquinone disperse dyes which have diamino derivatives as substituents without hydroxy group, such as C.I. Disperse Violet 1(D.V.1), C.I. Disperse Violet 28(D.V.28) and C.I.Disperse Blue 60(D.B.60) showed good results of fixation without regard to the concentration of NaHCO$_3$. In case of high temperature steaming(HTS) and unsaturated steaming(US)/HTS, D.V. 1 was alkali-stable and effective for P/C printing. A good result was obtained with D.V.1 and C.I.Reactive Orange 13(R.O.13) paste of 4% $K_{2}CO_{3}$. It was found that the unfixed D.V.28 bearing chloro group can hinder the fixation of monochlorotriaxinyl reactive dyes, and D.B.60 made little stain on 100% cotton. In thermosol(Tm), the dye uptake of D.V.1 was not decreased so much, but those of D.V.28 and D.B.60 were greatly decreased.

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고 자외선 환경에서 식물의 광합성, 기공조절 및 탄수화물 합성 (Changes in photosynthesis and carbohydrate synthesis in response to elevated UV-B environment)

  • 윤혜진;성좌경;이수연;이예진;하상건;손연규
    • 농업과학연구
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    • 제41권4호
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    • pp.275-281
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    • 2014
  • The ozone depletion has caused plants to be exposed to an increased penetration of solar ultraviolet-B (UV-B) radiation. Enhanced UV-B radiation may have influence on biological functions of plant in many aspects including inhibition of photosynthesis. It is evident that UV-B can potentially impair the performance of all three main component processes of photosynthesis, the photophosphorylation reactions of the thylakoid membrane, the $CO_2$-fixation reactions of the Calvin cycle and stomatal control of $CO_2$ supply. Owing to these depressed reactions, the production and allocation of carbohydrates might be markedly affected, and therefore, the growth and development of plant are distinctly reduced. In this review paper, we provide basic theory and further researches in terms of photosynthesis and carbohydrate synthesis in response to elevated UV-B radiation.

남조류를 이용한 $CO_2$의 고정화 및 단세포 단백질의 생산

  • 이기영;박진화;박부수
    • 한국미생물·생명공학회지
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    • 제25권1호
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    • pp.106-108
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    • 1997
  • Blue green algaes (NIES 19, 39, 46) have been cultivated to product sigle cell protein. After 7 days of cultivation under 5000 (W/M$^{2}$) of ligth intensity, final cell concentration was 2.8 (g/L) and chlorophyll a was 4.9 (mg/L). When initial concentration of NaHCOC was 1.7% and NaNO$_{3}$ was0.25%, maximum cell concentration was obtained. Spirulina platensis NIES 39 showed faster growth rate than NIES 46. While most 39 sedimented, most 46 floated.

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폐탄산가스 고정화를 위한 연속식 광반응기의 운전 인자 평가 (Evaluation of Operating Factors for the Continuous CO2 Fixation with a Photobioreactor)

  • 신항식;채소용;장민영;박봉선
    • 유기물자원화
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    • 제8권2호
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    • pp.71-76
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    • 2000
  • 미세조류를 이용한 생물학적 이산화탄소 고정화 방법은 이산화탄소를 효과적으로 제거할 수 있는 방법으로 널리 알려져 있다. 따라서 발전소 등에서 배출되는 폐탄산가스를 고정화하기 위하여 미세조류의 성장에 영향을 주는 운전 조건을 평가하였다. 본 실험에서 사용된 Euglena gracilis는 산성 조건에서도 잘 성장하여 오염의 가능성이 적고, 고농도 이산화탄소(10-20%)에 대한 내성이 강한 것으로 알려져 있다 또한, 단백질 함량이 풍부하고 세포벽이 얇아 배양 후 사료로의 이용성도 크다. 광반응기에서 회분식 배양을 이용하여 운전 조건을 평가한 결과 실험 조건에서 최적 pH는 3.5, 온도는 $27^{\circ}C$, 이산화탄소 농도는 5~10%, 광도는 $520{\mu}mol/m^2/s$로 각각 조사되었다. 또한 이러한 자료를 기초로 하여 연속 운전을 실시한 결과 $CO_2$농도 10%, HRT 4일에서 최종 건조 무게 $1.2g/{\ell}$로 높은 성장율을 얻었다.

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Photosynthetic carbon fixation by tropical coral reef phytoplankton assemblages: a UVR perspective

  • Li, Gang;Che, Zhiwei;Gao, Kunshan
    • ALGAE
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    • 제28권3호
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    • pp.281-288
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    • 2013
  • Photosynthetic carbon fixation regulates air-sea $CO_2$ fluxes in the waters of coral reefs. However, little has been documented on the effects of solar UV radiation (UVR, 280-400 nm) upon photosynthetic behaviors of phytoplankton dwelling in these ecosystems. In order to evaluate the aforesaid, surface dwelling tropical coral reef phytoplankton assemblages collected from the South China Sea were exposed to solar radiation (i.e., photosynthetically active radiation [PAR] + UV radiation A [UVA] + UV radiation B [UVB], 280-700 nm; PAR + UVA, 320-700 nm; and PAR, 400-700 nm) under static or simulated-mixing conditions. Under the static condition, UVA and UVB significantly reduced the carbon fixation with the maximum of 22.4 and 15.3%, respectively; while lower UVR-related photosynthetic inhibition was observed in case of phytoplankton samples being subjected to mixing. At a moderate level of mixing (i.e., circulation time 80 min), the UVA and UVB caused inhibition were lowered by 52.1 and 79.6%, respectively. Based on this it could be stated that vertical mixing induced by winds and/or tides in the natural environments could reduce the inhibitory effect of solar UVR on phytoplankton productivity in the coral reefs water.