침지형생물막 반응조와 역삼투막을 이용하여 염색폐수를 공업용수로 재이용하기 위한 실험을 수행하였다. 실험실과 현장의 pilot plant 실험 결과 20-25 cmHg의 흡인압력으로 10 LMH(1/m2.hr)의 투과유속을 얻었다. 침지형생물막 반응조에서 CODcr, CODMn 및 T-N의 제거율은 각각 93%, 90%, 60%로 나타났다. 난분해성 물질과 총질소의 제거효율을 높여서 염색폐수를 공업용수로 재이용하기 위한 침지형생물막 반응조와 역삼투막(SMBR+R/0)을 조합한 공정을 수행한 결과, 질소제거율이 80% 이상으로 총질소 농도를 15 mg/L를 얻었다. 조합공정은 염색폐수를 공업용수로 재이용하기에 적합하였다.
Naphthothiazolo carbocyanine is of industrial importance as red-sensitizing dye in the spectral sensitization of emulsion microcrystals in negative film-making. In this study, red-sensitizing dye was prepared by the reaction of 2-methyl-3-sulfopropyl-4,5-naphthothiazolium(inner salt) with triethyl orthoacetate in the presence of triethylamine. The product was identified by using various analytical tools such as Elemental analyzer, IR spectrophotometer, UV-Vis spectrophotometer, Mass spectrometer, 1H-NMR spectrometer, TGA and DSC. The maximum absorption peak in methanol solvent was 573nm. Therefore, it was concluded that naphthothiazolo carbocyanine dye can be used as red0sensitizing dye for the spectral sensitization of photographic emulsion.
본 연구는 무금속프탈로시아닌 색소계를 이용한 전자사진 감광체의 개발에 관한 것이다. 전하발생물질로서는 각종 형태의 무금속프탈로시아닌을 사용했고, 결합제로서는 각종 폴리머를 사용했으며, 전하이동물질로서는 히드라존유도체나 아연착화합물을 사용했다. 전하발생물질로서 사용한 α-, β-, x형의 프탈로시아닌중에서는 x형의 무금속프탈로시아닌(x-H2Pc)의 경우가 가장 좋은 감도를 보였다. 전하발생물질로서는 x-H2Pc를, 전하수송물질로서는 히드라존유도체를 사용했을 때, 다른 감광체들과 비교하여 73.1%의 높은 1.50lux·sec의 좋은 감도를 보였다.
The symmetric benzoxazolo carbocyanine is of industrial importance as green-sensitizing dye in the spectral sensitization of emulsion microcrystals in positive paper and negative film-making. The stability on the solvents of benzoxazolo carbocyanine dye was measured by UV-Vis spectrophotometer, and then all of solvents were stabilized sensitizer. The maximum absorption peak range in methanol, acetonitrile, acetone, DMF, dichloromethane, chloroform solvents was 501nm~511nm. But it was identified that only methanol can be used to photographic emulsion. The photographic characteristics have contrast of 2.8, speed of 50-55(lux·sec)-1, fog of 0.07-0.08, respectively.
New electroluminescent materials base on anthracene chromophore, [9.10-bis(α-naph -thylethenyl) anthracene (α-BNA)] were newly synthesized. The anthracene derivatives with bulky substituent possessed high melting point and they gave stable amorphous films through vacuum - sublimation methods. Three types of electroluminescent devices were fabricated with double layer and triple layer structure : ITO/TPD/emission layer/MgAg, ITO/emission layer/ OXD-7 and ITO/ TPD/ emission layer/OXD-7/MgAg, respectively. In three types of devices with the emissive layer of α-BNA, efficient orange electroluminescence was observed. In the triple layer device whit a emitting layer of 20 nm thickness , maximum luminance was about 10000 cd/ m2 at an applied voltage of 10v and maximum external quantum efficiency was 1.0%.
The symmetric naphthothiazolo carbocyanine is of industrial importance as green-sensitizing dye in the spectral sensitization of emulsion microcrystals in negative film-making. In this study, green-sensitizing dye was prepared by the reaction of 2-methyl-3-sulfopropyl-5-phenyl-benzoxazolium(inner salt) with triethyl orthoacetate in the presence of triethylamine. The product was identified by using various analytical tools such as Elemental analyzer, IR spectrophotometer, UV-Vis spectrophotometer, 1H-NMR spectrometer, TGA and DSC. The maximum absorption peak in methanol solvent was 502nm. Therefore, it was concluded that benzoxazolo carbocyanine dye can be used as green-sensitizing dye for the spectral sensitization of photographic emulsion.
본 연구는기존의 보고에서 보다 감광화효율을 더욱 향상시키기 위하여 결정형이 다른 전하발생물질 (CGM:Charge Generation Material)과 전하수송물질(CTM:Charge Transport Material)을 사용하여 감광체를 만들었고, 이들의 정전특성을 비교검토하였다. 전하발생물질로서 결정형이 다른 α-, β-, x-형 무금속 프탈로시아닌 (H2Pc)을 사용한 결과, x-H2Pc를 사용한 감광체의 감도는 E12/의 값이 2.62 μJ/cm2로 가장 두수하게 나타났다. 전하발생층(CGL:Charge Generation Layer)에 첨가되는 CGM-CTM, CGM-CTM-ZnO로 구성된 감광체보다 전하발생층에 전하발생계만으로 구성된 감광체의 경우의 전하유지율 (80%) 및 감도(E12/=2.83μJ/cm2)면에서 우수함을 보여주었다. 한편 binder로서 PVB-co-PVA-co-PVAC[poly(viny1 butyral-co-viny1 alcohol-co-viny1 acetate)]를 사용했을 때는, CGM-CTM으로 구성된 감광체보다 CGL에 CGM-CTM으로 구성된 감광체의 경우의 전하유지율(71%) 및 감도(E12/=2.62μJ/cm2)면에서 우수함을 보여주었다.
In this study, benzoxazolo carbocyanine dye was used as sensitizer for photographic emulsion, and the photographic characteristics were examined. The basic properties of sensitizer such as stability in various solvents were examined. The sensitizer was very stable in methanol, acetonitrile, acetone, dimethylformamide, and chloroform solution. Absorption spectra of benzoxazolo carbocyanine dye 2.5×10-6M and 5×10-6M concentrations in 10% aqueous methanol solutions containing 10-2M potassium chloride show the monomer-J-aggregation characteristics. Compared to the absorption peak of the monomer in pure methanol solution, the red shifts of the monomer-J-aggregate peaks of benzoxazolo carbocyanine dye of 2.5×10-6M and 5×10-6M concentrations in 10% aqueous methanol solutions containing 10-2M potassium chloride are 34nm respectively, and the sensitizing peak of benzoxazolo carbocyanine dye in photographic emulsion has red shift of 34nm. Therefore, if was concluded that benzoxazolo carbocyanine dye can be used as green sensitizing dye for the spectral sensitization of photographic emulsion.
In this study, sensitizing dye was prepared by the reaction of 2-methyl-3-sulfopropyl-4, 5-naphthothiazolium(inner salt) with triethyl orthoformate in the presence of triethylamine. The product was identified by using various analytical tools such as Elemental analyzer, IR spectrophotometer, UV-Vis spectrophotometer, 1H-NMR spectrometer, TGA and DSC. Therefore, it was concluded that naphthothiazolo carbocyanine dye can be used as red-sensitizing dye for the spectral sensitization of photographic emulsion.
본 연구는 에멀젼 액막을 이용한 염색 폐수 내의 염료 이온 제거에 관한 연구이다. Aliquat 336을 함유한 액막과 D2EHPA를 함유한 액막으로 각각 음이온성 염료와 양이온성 염료 제거에 관한 최적 조건을 확립하였으며, 이 조건하에서 실제의 염색 폐수 처리 실험을 행하였다. 직접 염료인 Sirius Red, 반응성 염료인 Reactofix Supra Blue 및 염기성 염료인 Apollo Blue를 대상으로 하여 막상의 계면활성제(Span 80)와 담체(Aliquat 336 or D2EHPA)의 농도, 내수상의 counter ion(Na2SO4) 농도, 그리고 에멀젼 투여량 등을 변화시키며 염료 제거 실험을 행하였다. 반응 5분 후에 추출 평형에 도달하였으며, 각 염료에 대하여 색소 성분의 95% 이상을 제거할 수 있었다. 제막 조건에 가장 큰 영향을 미치는 인자는 담체의 농도로서 일정량 이상의 담체는 막의 물질 전달 저항을 증가시켜 색도 제거 효과를 감소시킴을 알 수 있었다. 또한, 막상의 계면활성제의 양, 내수상의 counter ion의 양 및 투여 에멀젼의 양은 평형 도달 후의 최종 색도보다는 추출 속도에 더 큰 영향을 미침을 알 수 있었다. 실제 염색 폐수를 에멀젼 액막으로 2단계 처리한 결과 550nm에서의 흡광도를 초기 0.53에서 10분 후 0.03까지 낮출 수 있었다.
In the study, sensitizing dye was prepared by the reaction of 2-methyl-3-sulfopropyl-5-phenyl-benzoxazolium(inner salt) with ortho-ester in the presence of triethylamine. The product was identified by using various analytical tools such as Elemental analyzer, IR spectrophotometer, UV-Vis spectrophotometer, 1H-NMR spectrometer, TGA and DSC. Therefore, it was concluded that benzoxazolo carbocyanine dye can be used as green-sensitizing dye for the spectral sensitization of photographic emulsion.
본 연구는 가시부 전영역에 감광하는 전자사진용 감광체를 만들기 위하여 400nm부근에 흡수파장을 갖는 sunfast yellow와 700nm부근에 흡수파장을 갖는 α,β-copperphthalocyanine의 색소를 산화아연(ZnO)에 흡착분산시켰다. 각종 결합제(Binder)의 감도와 , 산화아연과 결합제와의 조성비에 따르는 변화실험의 결과 5.5:1에서 가장 좋은 결과를 나타냈다. 전자사진 감광체의 적합성을 확인하기 위하여 정전특성과 분광감도를 측정해 본 결과 sunfast yellow와 β-copper phthalocyanine을 혼합사용한 것이 가장 좋은 감도를 나타냈으며, 이 때 측정된 전자시진감도는 E1:2=1440 luxㆍsec이었다. 또한 분광감도 측정결과는 가시부전역에 걸쳐 감도를 감광체임을 확인하였다.
To increase electrolysis performance, the applicability of seawater to the iron-fed electro-Fenton process was considered. Three kinds of graphite electrodes (activated carbon fiber-ACF, carbon felt, graphite) and dimensionally stable anode (DSA) electrode were used to select a cathode having excellent hydrogen peroxide generation and organic decomposition ability. The concentration of hydrogen peroxide produced by ACF was 11.2 mg/L and those of DSA, graphite, and carbon felt cathodes were 12.9 ~ 13.9 mg/L. In consideration of durability, the DSA electrode was selected as the cathode. The optimum current density was found to be 0.11 A/cm2, the optimal Fe2+ dose was 10 mg/L, and the optimal ratio of Fe2+ dose and hydrogen peroxide was determined to be 1:1. The optimum air supply for hydrogen peroxide production and Rhodamine B (RhB) degradation was determined to be 1 L/min. The electro-Fenton process of adding iron salt to the electrolysis reaction may be shown to be more advantageous for RhB degradation than when using iron electrode to produce hydrogen peroxide and iron ion, or electro-Fenton reaction with DSA electrode after generating iron ions using an iron electrode.
Background : Panos extract is a mixture of four Panax plant extracts namely Dendropanax morbifera, Panax ginseng, Acanthopanax senticosus and Kalopanax septemlobus. We intended to use Panos extract for ZnO nanoparticles(NPs) synthesis and application for waste water treatment.
Methods and Results : In the present study, we have synthesized Panos ZnO nanoparticles via co precipitation method. Characterization of the NPs has been done using X-ray diffraction (XRD), Fourier transformed infrared spectroscopy (FTIR) and UV-Visible spectroscopy. An average of 75% efficacy in degrading the methylene blue dye has been observed. The nanoparticles showed antibacterial activity against E. coli and S. aureus.
Conclusion : The results shows that Panos ZnO NPs can be a potential eco-friendly and economical tool for waste water management in the current scenario where there an intense urge to remediate the polluted environment through novel approaches such as Nanobiotechnology.