• Title/Summary/Keyword: electron acceptors

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SBR공정에서 전자수용체에 따른 호기성 입상활성슬러지의 공정별 특성 (Characteristics of Aerobic Granular Activated Sludge According to Electron Acceptors in Sequencing Batch Reactor Process)

  • 김이태;이희자;배우근
    • 한국물환경학회지
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    • 제20권5호
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    • pp.480-487
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    • 2004
  • This study was conducted to find the effect of electron acceptors on the formation of granular sludge by using four different types of electron acceptors. The phosphorous uptake, denitrification, and sulfate reduction in anoxic modes were simultaneously occured because of the presence of the polyphosphate accumultating organism(PAO) that utilize nitrate and sulfate as an electron acceptor in the anoxic zone. Denitrirying phosphorous removal bacteria(DPB) was enriched under anaerobic/anoxic/aerobic condition with a nitrate as an electron acceptor, and desulfating phosphorous removal bacteria(DSPB) was enriched under anaerobic/anoxic/aerobic condition with a sulfate as an electron acceptor. Polyphosphate accumulating organism(PAO) were enriched in the anaerobic/aerobic SBR. PAO took up acetate faster than DPB and DSPB during the aerobic phase. The sludge with nitrate and sulfate as an electron acceptors grew as a granules which possessed high activity and good settleability. In the anaerobic/aerobic modes, typical floccular growth was observed. In the result of bench-scale experiment, simultaneous reactions of phosphorus uptake, denitrification and sulfate reduction were observed under anoxic condition with nitrate and sulfate as an electron acceptors. These results demonstrated that the anaerobic/anoxic modes with nitrate and sulfate as an electron acceptors played an important role in the formation of the sludge granulation.

유기태양전지의 전자 받개 물질들 (Electron Acceptors in Organic Solar Cells)

  • 공재민;남상용
    • 공업화학
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    • 제33권2호
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    • pp.119-125
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    • 2022
  • 최근 유기태양전지의 효율이 18%를 넘어섰다. 이러한 급속한 효율의 증가는 전자 주개 고분자와 짝을 이루는 전자 받개 물질의 개발과 깊은 연관성을 가지고 있다. 이 미니 리뷰에서는 전자 받개 물질의 개발 과정을 통해 유기태양전지의 발전 양상을 살펴본다. 본 리뷰의 첫 번째 파트에서는 유기태양전지 발전의 전반부를 이끌었던 풀러렌 기반 전자 받개 물질에 대해 살펴본다. 그리고 두 번째 파트에서는 풀러렌 기반 전자 받개 물질의 단점들을 극복할 잠재력을 가지고 있으며, 유기태양전지에 새로운 전기를 가져다 준 비(非)플러렌 기반 전자 받개 물질에 대해서 소개한다. 마지막 파트에서는 리뷰의 전체적인 요약과 더불어 20% 효율을 넘어설 전략에 대해 간단히 논의하며 본 리뷰를 마무리한다.

아민과 有機할로겐 化合物間의 Charge Transfer Complex 形成에 關한 硏究 (II) Electron Acceptor 에 따른 Charge Transfer Complex 形成能에 關한 硏究 (Charge-Transfer Complex Formation of Amines with Organic Halides (II) Complex Forming Tendency by Various Electron Acceptors)

  • 김유선;오정희
    • 대한화학회지
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    • 제11권4호
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    • pp.126-131
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    • 1967
  • 各 種 아민(triethylamine, diethylamine, pyridine, diphenylamine, dimethylaniline)과 各種 Electron Acceptor($CCl_4,\;ICl,\;I_2$)를 Hexane 溶媒 存在下에서 作用시킨 結果 各各 Charge Transfer Complex를 形成하였으나 그 形成能은 아민의 Basicity에 比例하였고 Electron Donor의 Polarity의 差가 클 때에는 다른 形式의 Complex를 形成함을 紫外線 吸收 分光法으로 確認하였다. Complex 形成能과 아민의 Basicity 및 Electron Acceptor의 Polarity의 關係를 論하였다.

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TiO2 나노튜브 촉매를 이용한 효율적인 폐수처리 (Effective Wastewater Purification Using TiO2 Nanotubular Catalyst)

  • 오한준;최형선;이종호;지충수
    • 대한금속재료학회지
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    • 제47권2호
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    • pp.91-98
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    • 2009
  • The titania nanotubular layer for photocatalytic application was synthesized by anodization process in HF solution and the photocatalytic efficiencies of nanotubular film were evaluated by the decomposition rate of aniline blue. In order to facilitate the photocatalytic reaction, the electron acceptors such as potassium bromate, hydrogen peroxide and ammonium persulfate were added to aniline blue solution and the effects of electron acceptors on the dye degradation efficiency were evaluated. The results showed that the photocatalytic efficiency has markedly improved by adding the electron acceptors.

Inhibitory Effect of Nitrate on Fe(III) and Humic acid reduction in Shewanella putrefaciens DK-1

  • Lee, Il-Gyu;Kim, Sang-Jin;Ahn, Tae-Young
    • Journal of Microbiology
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    • 제38권3호
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    • pp.180-182
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    • 2000
  • The inhibitory effects of nitrate on Fe(III) and humic acid reduction were examined in Shewanella putrefaciens DK-1. Therer is no difference in Fe(III) reduction until 25 hours between cultures using Fe(III) production was decreased drastically when Fe(III) and nitrate were used as electron acceptors. The production of AHQDS(2,6-anthrahydroquinon disulfonate) showed similar patterns when AQDS alone and both AQDS and Fe(III) were used as electron acceptors. When AQDS(2,6-anthraquinon disulfonate) and nitrate were used as electron acceptors, the production of AHQDS was completely inhibited.

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퇴적 유기물 분해과정에 따른 물질 거동 변화 예측을 위한 수치모델 적용 (Application of a Numerical Model for the Prediction of Vertical Profiles of Electron Acceptors Based on Degradation of Organic Matter in Benthic Sediments)

  • 최정현;박석순
    • 대한환경공학회지
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    • 제27권2호
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    • pp.151-157
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    • 2005
  • 본 연구에서는 퇴적물에서 일어나는 유기물 분해과정 중 이용된 전자 수용체와 분해과정에서 생산된 환원 물질의 농도 변화를 적절히 파악하고 정량화하기 위한 수치모델을 개발하였다. 퇴적물에 서식하는 미생물이 전자 수용체를 이용하여 유기물을 분해하는 반응들은 전자 수용체의 종류에 따라서 다음과 같이 6가지 형태로 구분 할 수 있다: (1) 호기성 분해(Aerobic Respiration), (2) 탈질(Denitrification), (3) 망간 환원(Manganese Reduction), (4) 철 환원(Iron Reduction), (5) 황산염 환원(Sulfate Reduction), (6) 메탄 환원(Methanogenesis). 이와 같은 6가지 반응은 양론(Stoichiometry)적으로 표현되어지며, 여기에 관여하는 3개의 고형물질(침전성 유기물질, manganese oxides, iron oxides)과 8개의 용존물질 (oxygen, nitrate, sulfate, ammonia, dissolved manganese, dissolved iron, sulfide, methane)의 움직임은 1차원 물질수지 방정식으로 모델에서 재현되어졌다. 퇴적물에서 미생물에 의한 유기물 분해 반응은 Monod 반응식을 이용하여 간단히 표현되어졌다. 퇴적물에 포함된 물질들에 대한 물질수지 방정식들은 Monod 반응식에 포함된 비선형성을 제거하기 위해서 다단계의 반복적인 수치해석법에 의해 안정적인 해를 구할 수 있었다. 모델의 타당성을 검토하기 위하여 Sweert et al.(1991a)이 Netherland의 Veluwe 호수의 퇴적물에서 조사한 자료에 모델결과를 비교하였고, 결과로써 산출된 전자 수용체와 환원 물질의 수직적 분포형태는 관측간과 비교적 잘 부합하였다. 그러나 모델을 통하여 예측된 $NH_4^+$의 농도는 측정된 농도보다 훨씬 낮은 것이 관찰이 되었는데, 이는 모델에서 유기물질을 표현할 때 사용한 Redfield의 유기물식이 본 연구에 적용된 퇴적물에서의 높은 질소 함유율을 적절히 표현하지 못한 결과로 해석되어 질 수 있다. 퇴적물 깊이에 따른 전자 수용체와 환원된 물질의 분포변화는 중금속의 재용출과 생물이용도를 조절하는 주요인이 되기 때문에, 이 연구에서 개발된 수치모델은 퇴적물에서 일어나는 미량 오염 물질의 거동을 파악하기 위해 유용하게 사용되어질 수 있을 것으로 사료된다.

Synthesis and Characterization of Phenanthrene-substituted Fullerene Derivatives as Electron Acceptors for P3HT-based Polymer Solar Cells

  • Mi, Dongbo;Park, Jong Baek;Xu, Fei;Kim, Hee Un;Kim, Ji-Hoon;Hwang, Do-Hoon
    • Bulletin of the Korean Chemical Society
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    • 제35권6호
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    • pp.1647-1653
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    • 2014
  • 9,10-Bis(bromomethyl)phenanthrene reacted with fullerenes via a Diels-Alder reaction to give phenanthrene-substituted fullerene mono-adducts (PCMA) and bis-adducts (PCBA) as electron acceptors for organic photovoltaic cells (OPVs). The syntheses of the fullerene derivatives were confirmed by $^1H$ $^{13}C$ NMR spectroscopy and MALDI-TOF mass spectrometry. PCMA and PCBA showed better light absorption in the UV-visible region than $PC_{61}BM$. Their electrochemical properties were measured using cyclic voltammetry. Accordingly, the lowest unoccupied molecular orbital (LUMO) energy levels of PCMA and PCBA were -3.66 and -3.57 eV, respectively. Photovoltaic cells were fabricated with a ITO/PEDOT:PSS/poly(3-hexylthiophene)(P3HT):acceptor/LiF/Al configuration, where P3HT and PCBA are the electron donors and acceptors, respectively. The polymer solar cell fabricated using the P3HT:PCBA active layer showed a maximum power conversion efficiency of 0.71%.

전자 수용체가 BTEX, MTBE로 오염된 토양의 혐기성 자연정화에 미치는 영향 (Effect of Electron Acceptors on the Anaerobic Biodegradation of BTEX and MTBE at Contaminated Sites)

  • 김원석;김지은;백지혜;상병인
    • 한국물환경학회지
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    • 제21권4호
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    • pp.403-409
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    • 2005
  • Methyl tert-butyl ether (MTBE) contamination in groundwater often coexists with benzene, toluene, ethylbenzene, and xylene (BTEX) near the source of the plume. Then, groundwater contamination problems have been developed in areas where the chemical is used. Common sources of water contamination by BTEX and MTBE include leaking underground gasoline storage tanks and leaks and spills from above ground fuel storage tanks, etc. In oil-contaminated environments, anaerobic biodegradation of BTEX and MTBE depended on the concentration and distribution of terminal electron acceptor. In this study, effect of electron acceptor on the anaerobic biodegradation for BTEX and MTBE-contaminated soil was investigated. This study showed the anaerobic biodegradation of BTEX and MTBE in two different soils by using nitrate reduction, ferric iron reduction and sulfate reduction. The soil samples from the two fields were enriched for 65 days by providing BTEX and MTBE as a sole carbon source and nitrate, sulfate or iron as a terminal electron acceptor. This study clearly shows that degradation rate of BTEX and MTBE with electron acceptors is higher than that without electron acceptors. Degradation rate of Ethylbenzene and Xylene is higher than that of Benxene, Toluene, and MTBE. In case of Benzene, Ethylbenzene, and MTBE, nitrate has more activation. In case of Toluene and Xylene, sulfate has more activation.

유기태양전지용 안트라퀴논 기반 전자 받게 분자의 특성 분석 (Characterization of Anthraquinone-Based Electron Acceptors for Organic Solar Cells)

  • 현창석;안병관
    • 한국전기전자재료학회논문지
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    • 제35권4호
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    • pp.366-371
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    • 2022
  • Recently many efforts have been made to develop a novel class of non-fullerene electron acceptor materials for high-performance organic solar cells. In this work, anthraquinone derivatives, TMAQ and THAQ, were prepared and their availability as electron acceptor materials for organic solar cells were investigated in terms of optical, thermal, electrochemical properties, and solar cell devices. Compared to TMAQ, a significant bathochromic shift of absorption band was observed for THAQ owing to intramolecular hydrogen-bond-assisted CT interactions. Thanks to the fused aromatic ring structure and benzoquinone unit, both TMAQ and THAQ exhibited a high thermal stability and an efficient electron reduction process. In particular, the intramolecular O-H---O=C hydrogen bond of THAQ plays an important role in improving the thermal stability and electron reduction properties. In the P3HT:acceptor solar cell system, THAQ-based devices had more than ca. 6 times higher power conversion efficiency than TMAQ -based devices. These results serve as a guide for developing high-efficient anthraquinone-based electron acceptor materials.