The relationship between the addition of metallic additives and the geometry of gas metal arc weld deposit were studied by using Φ1.6mm flux-cored wire designed for hypo-eutectic Fe-Cr-C-Si hardfacing. It was found that the addition of metallic additives, such as Mn, Ti, Al and Si, by less than 0.5wt.% of the overall wire weight affected the dilution of weld deposit by changing the metal transfer mode during welding. The lowest dilution for each additives could be obtained at the transition point between spray and short circuit modes. The bead width was considered to be affected by the increase of arc length due to the oxidizing effect and by the molten pool flow behavior due to the Marangoni effect. Among additives, Mn and Al are considered to be effective in increasing bead width by decreasing the sulfur level and by inducing Marangoni flow directly at the molten pool, respectively.
Zinc soap and Zn/Ba mixed metal soap were synthesized and PVC plastisol with mixed metal soap and various costabilizers were also synthesized with good structures and characterized by IR and 1H-NMR. The IR spectrums and 1H-NMR spectrums of the synthesized soaps were in very good accordance with the structures proposed by earlier workers. In using phosphite as a costabilizer, TIDP phosphite was shown to be the excellent thermal stabilization effect at the low temperature and TNPP phosphite was shown to be the excellent thermal stabilization effect at the high temperature. In case of antioxidant, it was revealed that antioxidant was not effective in the low temperature thermal stabilization effect while highly effective in the high temperature thermal stability. NaClO4 solution with sorbitol solvent had the best thermal stabilization effect among NaClO4 solution series at low and high temperature.
Elution effect was studied by the reactions between Electric arc furnace(EAF)dust and conc. or dil. sulfuric acid for the purpose of recoverying of the useful metals afterwards. The methods of mixing with acids and EAF dust for the elutions were depend on the ratios of acid/EAF dust. Experimental results showed that increased the ratios of sulfuric acids, decreased the elution effects are on the Zn, Fe and Mn, and conc. sulfuric acid showed higher elution effects than dil. sulfuric acids for the all metals. But in case of Pb, dil. sulfuric acid showed higher elution effects than conc. sulfuric acids conversely. Furthermore, the reason of the extreamly low quantities of eluted Pb is caused by the low solubilities by sulfuric acids compared to the other metals, as the results of the insoluble Pb is removed by the process of filtering.
To prepare very stable acrylic type emulsion having a visible ray absorption property, in-situ preparation technique of CuxS nanoparticle was adopted. Firstly, the acylic emulsions of methyl methacrylate(MMA), butyl acrylate(BA), and acrylonitrile(AN) were synthesized by pre-emulsion polymerization at 60℃ in the presence of anionic surfactant. Secondly, CuxS nanocomposited emulsions were directly prepared in the prepolymerized acrylic emulsion with CuSO4 at 50℃. The presnce of CuxS nanoparticle in emulsion was confirmed by SEM and EDS. The final CuxS nanocomposited emulsion showed an olive-green colour and good emulsion stability up to 1 month. In addition the PET films coated with our CuxS nanocomposited emulsion absorbed effectively the visible ray.
Nickel-based and iron-based alloys have been developed and commercialized for a wide range of high performance applications at severely corrosive and high temperature environment. This alloy foam has an outstanding performance which is predestinated for diesel particulate filters, heat exchangers, and catalyst support, noise absorbers, battery, fuel cell, and flame distributers in burners in chemical and automotive industry. Production of alloy foam starts from high-tech coating technology and heat treatment of transient liquid-phase sintering in the high temperature. These technology allow for preparation of a wide variety of foam compositions such as Ni, Cr, Al, Fe on various pore size of pure nickel foam or iron foam in order for tailoring material properties to a specific application.
미치는 영향을 조사하기 위하여, 중금속이 오염된 토양에 토마토를 심고, 뿌리 혹선충의 알을 접종한 후 토마토의 생육상과 뿌리혹선충의 밀도를 조사하였다. 실 험에 사용된 토양은 Cd은 3.0~10.6(mg/kg), Pb은 128.6~339.0(mg/kg), Zn은 123.7~262.19(mg/kg)이 농축되어 있으며, 농경지의 중금속 기준 농축량 높았다. 중금속이 오염된 토마토 지상부의 평균 높이와 무게는 각각 19.5cm와 3.6g 이었으 며, 중금속이 오염되지 않은 토양에서 자란 토마토의 평균 키와 무게는 51.9cm와 12.5g이었다. 토마토의 키는 신뢰한계 99%에서 통계적으로 유의성을 보였으나, 무게는 편차가 커서 유의성을 보이지 않았다. 중금속이 오염된 토양에서 자란 토 마토 뿌리의 평균 길이와 무게는 각각 5.9cm와 4.3g이었으며, 오염되지 않은 토양 에서 자란 토마토 뿌리의 평균 길이와 무게는 각각 15.0cm와 8.1g이었다. 뿌리의 길이는 99% 신뢰수준에서 통계적으로 유의성을 보였으나, 무게는 유의성이 없었 다. 뿌리혹선충에 의한 토마토 뿌리의 gall index는 오염토양이 1.3이었으며, 오염 되지 않은 토양의 gall index는 4.3으로 오염되지 않은 토양에서 자란 토마토가 뿌 리혹선충의 혹이 더욱 많았으며, 통계적으로 차이를 보였다. 선충의 밀도는 유의 성이 없었다. 중금속이 토양내에서 농도가 높을 수록 토마토의 생육과는 음의 상 관관계를 보이며, 특히 Pb은 상관계수가 -0.62로 높았다. 또한 식물기생선충인 뿌 리혹선충(Meloidogyne incognita)에 의한 혹형성과 토양내 중금속의 농도에 대한 상관계수도 -0.62로 높았다. 중금속이 토양내 고농도로 축적되어 있으면, 토마토 의 생육에 영향을 주고, 생육중 시들음 증상이 증가하며, 식물기생선충인 뿌리혹 선충의 활동에도 영향을 주는 것으로 조사되었다.
A study on the corrosion inhibition of metals is important in many industrial applications (carbon steel, copper, aluminum, SUS 304, nickel). In this study, we investigated the C-V diagrams related to the surface corrosion of metals. It was observed through the SEM that the surface corrosion state of the various metals had the corrosion potential by the scan rate and the organic inhibitor containing an amine group. We determined to measure cyclic voltammetry using the three-electrode system. The measurement of oxidation and reduction ranged from -1350mV to 1650mV. The scan rate was 50, 100, 150, and 200mV/s. It turned out that the C-V characterization of SUS 304 was irreversible process caused by the oxidation current from the cyclic voltammogram. After adding organic inhibitors, the adsorption film was constituted, and the passive phenomena happened. As a result, it was revealed that the inhibition effect of metal corrosion depends on the molecular interaction, and the interaction has influence on the adsorption complex.
In this research, the welding experiment was carried out with both the steel materials (SS400+SS400, SUS304+SUS304) and the different steel materials (SS400+ SUS304), where SS400 is a general structural rolled steel material and SUS304 is a cold strip stainless steel sheet. The average of yield point of a SS400 experimental piece was the most highest point with 2015.54 N/m2. Although welding defects were not found with the naked eye, it was sure that there were some wilding defects because there were no stress against load through experiments. The rate of yield point of experimental piece A, experimental piece B and experimental piece C was respectively 1.7mm, 1.3mm and 2.6mm. The rate of breakdown was respectively 39.77mm, 17.97mm and 2.6mm. So considering price and efficiency with use condition is very important. SS400 and SUS304 will be profited from considering price and mechanical property with use condition.
본 연구는 사문암 토양의 화학적 성질과 토양미생물량 및 토양효소 등 토양의 생물학적 활성을 대조구의 비사문암 토양과 비교하고, 사문암과 비사문암에서 공통으로 서식하는 새(Arundinella hirta)와 억새(Miscanthus sinensis var. purpurascens)의 낙엽이 입지가 다른 사문암지역과 비사문암 지역에서 분해될 때 분해율의 차이가 어떻게 유발되는지 9개월 동안 야외에서 교차 실험하였다. 사문암 토양은 비사문암 토양에 비하여 높은 pH, 낮은 dehydrogenase 와 urease활성을 나타내었으며 alkaliphosphatase의 활성은 높았다. 두 토양에서 microbial biomass-C와 N의 차이는 유의하지 않았으나 사문암 토양에서 microbial biomass-N함량이 더 높게 나타나 비사문암 토양에서 보다 낮은 토양의 C/N을 나타내는 원인이 되었다. 사문암지역에서의 낙엽분해실험에서는 사문암지역에서 획득한 새와 억새 낙엽이 각각 39.8%, 38.5%의 중량감소를 보였으며, 비사문암 토양에서 획득한 낙엽은 각각 41.1%, 41.7%의 중량감소를 나타내었다. 비사문암지역에서의 낙엽분해실험에서는 사문암낙엽이 46.8%, 42.2% 그리고 비사문암낙엽은 44.8%, 37.4%의 중량감소를 각각 보였다. 이러한 결과는 중금속을 포함하는 토양의 영향보다는 낙엽의 질적 차이가 분해율에 더 큰 영향을 미쳤음을 나타내준다. 일반적으로 낮은 C/N을 갖는 낙엽이 더 빨리 분해된다는 결과와는 달리 낮은 C/N을 갖는 사문암낙엽의 분해가 느린 것은 낙엽에 포함된 중금속의 저해가 낙엽의 C/N이나 lignin/N과 같은 낙엽의 질적 차이에서 유발되는 낙엽분해의 저해보다 큰 영양을 미친다는 결과를 보여주었다. 또한 낙엽분해가 진행되는 동안 낙엽내의 Cr, Ni과 Mg, Fe의 농도는 점차 증가하였으며 이러한 경향은 사문암지역에서 현저하였다.
For this paper, we investigated the area specific resistance (ASR) of commercially available ferritic stainless steels with different chemical compositions for use as solid oxide fuel cells (SOFC) interconnect. After 430h of oxidation, the STS446M alloy demonstrated excellent oxidation resistance and low ASR, of approximately 40 mΩcm2, of the thermally grown oxide scale, compared to those of other stainless steels. The reason for the low ASR is that the contact resistance between the Pt paste and the oxide scale is reduced due to the plate-like shape of the Cr2O3(s). However, the acceptable ASR level is considered to be below 100 mΩcm2 after 40,000 h of use. To further improve the electrical conductivity of the thermally grown oxide on stainless steels, the Co layer was deposited on the stainless steel by means of an electroless deposition method; it was then thermally oxidized to obtain the Co3O4 layer, which is a highly conductive layer. With the increase of the Co coating thickness, the ASR value decreased. For Co deposited STS444 with 2 μmhickness, the measured ASR at 800˚ after 300 h oxidation is around 10 mΩcm2, which is lower than that of the STS446M, which alloy has a lower ASR value than that of the non-coated STS. The reason for this improved high temperature conductivity seems to be that the Mn is efficiently diffused into the coating layer, which diffusion formed the highly conductive (Mn,Co)3O4 spinel phases and the thickness of the Cr2O3(S), which is the rate controlling layer of the electrical conductivity in the SOFC environment and is very thin
본 연구는 중금속이 낙엽의 분해에 미치는 영향을 알아보기 위하여 충남 청양의 폐금광의 광미에 분포하는 쑥(Artemisia princeps var. orientalis)과 쇠뜨기(Equisetum arvense)를 이용하여 실험하였다. 광미는 높은 중금속 함량과 낮은 유기물 함량을 가지고 있었다. 광미의 중금속 함량은 대조구 토양에 비해 비소(As)는 약 13배, 카드뮴(Cd)은 약 28배 높은 것으로 나타났다. 또한 크롬(Cr), 니켈(Ni) 및 아연(Zn)은 약 3배에서 6배 높게 측정되었다. 광미와 대조구 토양에서 채집한 식물체내의 중금속 함량은 광미에서 채집한 식물에서 현저히 높게 나타났으며, 쑥 잎의 경우 As는 약 23배, Cd은 25배 높게 나타났으며, 쇠뜨기 지상부의 경우 As는 58배, Cd은 11배 높은 것으로 나타났다. 대조구에서 분해 결과 중금속 농도가 높은 쑥의 잎과 대조구에서 채취한 잎이 각각 50.4%, 65.7%가 분해되었다. 또한 광미에서 진행된 분해 결과 쑥의 잎은 폐광지역에서 채취한 잎과 대조구에서 채취한 잎이 각각 31.6%, 57.5%가 분해되었다. 쑥의 줄기의 분해결과도 잎의 분해율과 비슷한 양상을 나타내었다. 쇠뜨기의 지상부의 분해는 대조구에서 분해된 결과 광미에서 채집된 쇠뜨기와 대조구에서 채집한 쇠뜨기가 각각 77.8%와 89.3%가 분해되었으며, 광미지역에서 분해 결과 각각 67.6%와 82.1%가 분해된 것으로 나타났다. 따라서 광미에서 생육하는 식물체의 중금속의 함량이 높을수록 분해가 느린 것으로 나타났으며, 이는 중금속이 낙엽의 분해에 영향을 미친 것이라고 판단된다.
본 연구에서는 2006년부터 2008년까지 3년간 봄철에 PM10과 PM2.5를 채취하여 질량농도와 금속원소의 화학적 특성, 기상인자와의 관계 분석, 황사 및 비황사시의 미세먼지 특성 그리고 이동경로에 따른 농도의 특성을 고찰하였다. 연구기간동안의 PM10, PM2.5, PM10-2.5평균농도는 각각 126.2±89.8, 85.5±41.6, 40.7±54.9μg/m3이었으며 PM2.5/PM10 및 PM10-2.5/PM2.5 비는 각각 0.70, 0.48이었다. 우리나라의 북서쪽인 북경을 포함한 지역과 서쪽인 상해를 포함한 지역에서 공기덩어리가 이류 할 때 가장 높은 미세먼지농도를 나타내었다.
The investigation was initiated with data from 27 abandoned mines along with 12 locations in Kyongbuk abandoned mines. The analyses for soil pollution by heavy metal pollutants were conducted by using correlation analysis, cluster analysis, and principal component analysis. The correlation analysis indicated that Ni and pH were highly correlated compared to those of other heavy metal ions. The principal component analyses showed that the heavy metal ions might be classified into two catagories, such as antropogenic and lithogenic components. The cluster analysis was also clearly divided by two groups. The respective two groups might be Pb-Zn-Cd-Cu and As-Hg-Ni.
EAF dust which is contained around 30% of zinc, 15% of iron and 3% of lead individually, is chemically treated by ammonium chloride, ammonia water, ammonia gas and carbon dioxide, and also tested and identified the ratios of the recovery of In by applied the variations of particle size, pH and heating temperature as well, in order to getting optimized recovery of the In metal after performing all of those processes. Experimental results showed that the rate of Zn recovery is 97% when the mixture of 1.3 of NH4Cl/EAF is heated to the temperature of 400℃ and leached by water, and 95% recovery of In when ammonia gas and carbon dioxide is added simultaneously and adjust the 9.5 of pH to the same mixture above. For the purpose of remove the impurities in the mixed sample, which is prepared by the two samples, indicated above showing as the ratio of 95% and 97% recovery, in case of applied the cementation process to it, and also by electrolytic process, produced the In plate of 95~97%, and acquired 99-99.5% of In metal ingot finally by applied the heating process at 470~500℃.
본 연구는 양성전해질막의 금속이온 특성을 조사하기 위하여 Taurine (TAU)막을 제조하였다. 제조방법으로는 방사선조사법에 의한 Glycidyl methacrylate (GMA)의 중공사막 표면위에 고정시키고, 이후 Taurine의 염기성 부분인 -NH2기(amine fuction)와 GMA의 glycididyl의 개환 반응을 통하여 안정된 막을 형성하도록 하였다. 한편 TAU막과 비교를 위해 GMA가 고정된 중공사 막에 Sodium sulfite로 화학적 결합을 형성 SS막을 제조하였다. 이렇게 제조된 TAU막의 타우린 밀도가 높아져도 투과유속은 0.9 m/h로 변화 없으나, SS막은 술폰산기의 밀도가 높아짐에 따라 투과유속이 급격히 감소하는 것을 나타내었다. 타우린 밀도가 0.8 mmol/g인 막을 사용한 결과 금속이온의 량은 Cu > Cd > Mg > Sb > Pb의 순으로 나타내었다. 전반적으로 타우린막은 전화율과 밀도의 증가에 따라 많은 양의 금속이온 흡착과 높은 투과유속을 나타내었다.
Chromium nitride (CrN) samples with two different layer structures (multilayer and single layer) were coated on bipolar plates of polymer electrolyte membrane fuel cells (PEMFC) using the reactive sputtering method. The effects with respect to layer structure on corrosion resistance and overall cell performance were investigated. A continuous and thin chromium nitride layer (Cr0.48 N0.52) was formed on the surface of the SUS 316L when the nitrogen flow rate was 10 sccm. The electrochemical stability of the coated layers was examined using the potentiodynamic and potentiostatic methods in the simulated corrosive circumstances of the PEMFC under 80˚C. Interfacial contact resistance (ICR) between the CrN coated sample and the gas diffusion layer was measured by using Wang's method. A single cell performance test was also conducted. The test results showed that CrN coated SUS316L with multilayer structure had excellent corrosion resistance compared to single layer structures and single cell performance results with 25 cm2 in effective area also showed the same tendency. The difference of the electrochemical properties between the single and multilayer samples was attributed to the Cr interlayer layer, which improved the corrosion resistance. Because the coating layer was damaged by pinholes, the Cr layer prevented the penetration of corrosive media into the substrate. Therefore, the CrN with a multilayer structure is an effective coating method to increase the corrosion resistance and to decrease the ICR for metallic bipolar plates in PEMFC.