In the development of eco-friendly vehicles such as electric vehicles, weight reduction has become a very important design target. Seat weight reduction is very important in vehicle weight reduction. In this study, the energy absorption characteristics of Almag material, an alloy of aluminum and magnesium, and mild steel SAFH440, SAFH590, SAFC780, and SAFH980 were analyzed to obtain a true stress versus true strain curve that was correlated with the test. By performing the seat frame structure analysis using the obtained analysis material property, it was possible to compare the deformation between lightweight material, Almag and mild steel materials. In addition, it was confirmed that the weight reduction effect was 25.8% when applying Almag, an equivalent lightweight material that gives the same maximum deformation as SAFH980, a high-strength mild steel.
In Korea, most nuclear power plants were designed based on the design response spectrum of Regulatory Guide 1.60 of the NRC. However, in the case of earthquakes occurring in the country, the characteristics of seismic motions in Korea and the design response spectrum differed. The seismic motion in Korea had a higher spectral acceleration in the high-frequency range compared to the design response spectrum. The seismic capacity may be reduced when evaluating the seismic performance of the equipment with high-frequency earthquakes compared with what is evaluated by the design response spectrum for the equipment with a high natural frequency. Therefore, EPRI proposed the inelastic energy absorption factor for the equipment anchorage. In this study, the seismic performance of welding anchorage was evaluated by considering domestic seismic characteristics and EPRI's inelastic energy absorption factor. In order to reflect the characteristics of domestic earthquakes, the uniform hazard response spectrum (UHRS) of Uljin was used. Moreover, the seismic performance of the equipment was evaluated with a design response spectrum of R.G.1.60 and a uniform hazard response spectrum (UHRS) as seismic inputs. As a result, it was confirmed that the seismic performance of the weld anchorage could be increased when the inelastic energy absorption factor is used. Also, a comparative analysis was performed on the seismic capacity of the anchorage of equipment by the welding and the extended bolt.
n-Nonane, 1¸2¸4-trimethylbenzene (124-TMB), toluene, total xylene (TXYL), isopropyl alcohol (IPA), and methyl ethyl alcohol (MEK) are major volatile organic compounds (VOCs) emitted from printing industries. The absorption amount of a single VOC per unit weight of silicone oil was as follows in the order of 189.5 g/kg-silicone oil for n-nonane, 91.7 g/kg-silicone oil for 124-TMB, and 60.1 g/kg-silicone oil for TXYL. Although hydrophobic VOCs were more absorbed in silicone oil than hydrophilic VOCs such as IPA and MEK, IPA and MEK, which had log Kow values of 1 or less, also were absorbed more than 26.0 g/kg-silicone oil. In two and three mixed VOCs of n-nonane, 124-TMB, and toluene, the absorption amount of each in silicon oil was less than that of single a VOC. The total absorption amount of two mixed VOCs ranged from 47.9 g to 138.7 g/kg-silicone oil, and the total absorption amount of three mixed VOCs was 65.8 g/kg-silicone oil. These results suggest that silicone oil is a promising pretreatment solution capable of absorbing high concentrations of VOCs that are intermittently emitted from printing industries. The absorption information of VOCs obtained in this study can be used as the design parameters of a damping device for the pretreatment of VOCs.
HPGe 검출기를 이용하여 밀도가 다양한 환경시료에 대한 정밀 분석시 정확한 분석을 위해서는 밀도보정인자가 필요하다. 밀도에 대한 보정인자를 구하기 위해서 본 연구에서는 몬테카를로 코드인 MCNPX 코드를 사용하여 크리스털의 높이, 지름 및 코어의 크기와 같은 특성이 다른 세 대의 p-type HPGe 검출기를 모사하고 밀도 1 g/cm3의 교정용 표준시료를 이용하여 모 델링을 검증하였다. 검증을 통하여 모델링을 확정한 후 0.3, 0.6, 0.9, 1.0, 1.2, 1.5 g/cm3 밀도를 가진 샘플에 대한 효율을 시 뮬레이션하고 밀도보정인자를 도출하였다. 도출된 각 검출기에 대한 밀도보정인자를 비교하였을 때 전 에너지 범위에서 그 차이가 거의 없음을 확인하였으며 이는 검출기의 크리스털과 같은 주요 특성에 대해 밀도보정인자가 독립적임을 의미한다.
PURPOSES: In this study, alkali-activated blast-furnace slag (AABFS) was investigated to determine its capacity to absorb carbon dioxide and to demonstrate the feasibility of its use as an alternative to ordinary Portland cement (OPC). In addition, this study was performed to evaluate the influence of the alkali-activator concentration on the absorption capacity and physicochemical characteristics.
METHODS: To determine the characteristics of the AABFS as a function of the activator concentration, blast-furnace slag was activated by using calcium hydroxide at mass ratios ranging from 6 to 24%. The AABFS pastes were used to evaluate the carbon dioxide absorption capacity and rate, while the OPC paste was tested under the same conditions for comparison. The changes in the surface morphology and chemical composition before and after the carbon dioxide absorption were analyzed by using SEM and XRF.
RESULTS: At an activator concentration of 24%, the AABFS absorbed approximately 42g of carbon dioxide per mass of paste. Meanwhile, the amount of carbon dioxide absorbed onto the OPC was minimal at the same activator concentration, indicating that the AABFS actively absorbed carbon dioxide as a result of the carbonation reaction on its surface. However, the carbon dioxide absorption capacity and rate decreased as the activator concentration increased, because a high concentration of the activator promoted a hydration reaction and formed a dense internal structure, which was confirmed by SEM analysis. The results of the XRF analyses showed that the CaO ratio increased after the carbon dioxide absorption.
CONCLUSIONS : The experimental results confirmed that the AABFS was capable of absorbing large amounts of carbon dioxide, suggesting that it can be used as a dry absorbent for carbon capture and sequestration and as a feasible alternative to OPC. In the formation of AABFS, the activator concentration affected the hydration reaction and changed the surface and internal structure, resulting in changes to the carbon dioxide absorption capacity and rate. Accordingly, the activator ratio should be carefully selected to enhance not only the carbon capture capacity but also the physicochemical characteristics of the geopolymer.
Glycol ethers는 페인트에 흔히 사용되는 ethylene glycol의 alkyl ethers에 기반을 둔 용제들이다. 이 용제들은 일반적으로 저분자량 에테르와 알코올의 용제 친화적 성질과 더불어 더 높은 비등점을 가지고 있다. Union Carbide Corp.는 "Glycol ethers"를 하나의 미국 상표로 등록했으며, 이는 제약, 자외선차단제, 화장품, 잉크, 염료 및 수성페인트에서 찾아볼 수 있다. 반면 glycol ethers는 그리스 제거제, 세제, 에어로졸 페인트와 접착제에서도 발견된다. 대부분의 glycol ethers는 수용성, 생분해성이며, 아주 적은 수의 glycol ethers만이 유독성이라고 여겨진다. 그러므로 glycol ethers는 환경에 부작용을 낳을 것 같지는 않다. 최근 연구는 glycol ethers에 작업상 노출되는 것이 남성 정자의 저 운동성과 연관이 되어 있다고 제시했지만, 이는 다른 이들에 의해 반박되어지고 있다. 본 연구에서는 3가지 종류의 glycol ethers의 피부침투성에 관해 용제와 세제의 조합을 사용하여 시험관을 통해 연구한다. Methyl glycol ethers, ethyl glycol ethers and butyl glycol ethers의 흡수는 쥐의 피부를 통해 시험관에서 측정되었다. Epidermal membranes는 Franz diffusion cells에 세워졌으며, 그들의 PBS 침투율은 glycol ethers가 epidermal surface에 적용되기 전, 피부의 보전을 위해 처리하였다. 개별 glycol ethers의 흡수율은 최대 흡수 파장(λmax)에서 흡광도를 측정하여 결정하였으며, 침투율의 측정은 esters와의 접촉을 이유로 장벽 기능 내 불가역 변화를 정량화하였다. 시험관 실험 결과 glycol ethers의 종류는 methyl glycol ethers 〉 ethyl glycol ethers 〉 butyl glycol ethers의 순에 따라 빠르게 나타났다. 피부침투는 저분자량 피부침투, 친수성과 같은 화학적구조의 차이에서 유익했다. 이는 분배계수와 용해 방법 및 수동확산이 전달이 고려되는 곳에서 속도를 올렸기 때문이다.
약물 전달 시스템은 약물의 방출 프로파일, 흡수, 분배 및 제품의 효율성과 안전성, 환자의 편의성과 협조를 향상시키기 위한 제거를 개선하는 명백하게 보호화된 공식화 기술이다. 가장 일반적으로 쓰이는 transdermal 시스템은 다양한 종류의 기술을 사용하는 skin patch다. 다른 투약 방법과 달리, transdermal 시스템은 장기간 사용이 가능하다. 또한, 부작용이 생길 경우, 약물 투약의 중단이 가능하다. karaya gum and locust bean gum(LBG)/water-soluble chitosan oligomer(WSCO)과 같은 Polysaccharide를 TDS의 기본 물질로 선택하였다. 또한, 이 polymers들은 tacrine 물질, 강화제로 규정되어진다. 이러한 polysaccharide 중에서, karaya gum matrix의 침투율은 lipophilic drug in vitro 와 같은 tacrine 내에서 가장 빠르다. 우리는 glycerin, PEG 400, and PEG 800를 강화제로 사용하였다. 그러므로, transdermal의 tacrine 흡수율은 vehicle 구성을 바꿈으로써, 혹은 침투 강화제를 사용함으로써 향상되었을 것이다. 특히, vehicle이 스스로의 효과를 강화하는 것과 더불어, vehicle에 강화제를 첨가함으로써 높은 침투 효율이 얻어질 것으로 기대된다.
Transdermal drug delivery(TDS) offers many important advantages. For instance, it is easy and painless, it protects the active compound from gastric enzymes, and it avoids the hepatic first-pass effect. Also, it is simple to terminate the therapy if any adverse or undesired effect occurs. But skin is a natural barrier, and only a few drugs can penetrate the skin easily and in sufficient quantities to be effective. Therefore, in recent years, numerous studies have been conducted in the area of penetration enhancement. The most commonly used transdermal system is the skin patch using various types of technologies. Compared with other method of dosage, it is possible to use for a long term. It is also possible to stop the drug dosage are stopped if the drug dosage lead to side effect. Polysaccharide, such as xanthan gum and algin were selected as base materials of TDS. Also, these polymers were characterized in terms of enhancers and drug contents. Among these polysaccharide, the permeation rate of Paroxetine such as lipophilic drug was the fastest in xanthan gum matrix in vitro. We used glycerin, PEG400 and PEG800 as enhancers. Since dermis has more water content(hydration) than the stratum corneum, skin permeation rate at steady state was highly influenced when PEG400 was more effective for lipophilic drug. Proper selection of the polymeric materials which resemble and enhance properties of the delivering drug was found to be important in controlling the skin permeation rate.
시설재배 딸기를 위한 생력적이고 환경친화적인 순환식 수경재배기술을 확립하기 위하여 고형배지 종류별로 딸기의 무기이온 흡수 특성을 조사하였다. 톱밥배지를 제외한 나머지 세 종류의 배지에서는 대체적으로 많은 양의 질산태질소의 흡수를 나타내었는데, 펄라이트배지와 입상양면배지 보다는 코코피트배지에서 약간 높은 흡수농도를 나타내었다. 인은 톱밥배지를 제외한 세 종류의 배지에서는 초기에는 5me·L-1의 높은 흡수농도를 나타내었으며 생육이 진행됨에 따라 점차 감소하여 3me·L-1 정도의 흡수량을 나타내었는데, 이것은 비교적 높은 농도로서 추후 검토를 할 필요가 있을 것으로 생각되었다. 그러나 톱밥배지에서는 3월 중순까지 인의 흡수가 거의 없는 것으로 나타났다. 칼륨의 흡수농도는 톱밥배지를 제외하고는 세 배지 모두 비슷한 흡수량을 나타내었는데 생육초기에는 비교적 높은 흡수량을 나타내었지만 점차적으로 감소하여 4me·L-1 전후의 흡수량을 나타내었다. 칼슘의 흡수량은 펄라이트배지와 입상암면배지에서는 생육초기에 약간 높은 농도를 나타내기는 하였지만 생육전반에 걸쳐서 2me·L-1 정도의 안정적인 흡수양상을 나타내었다. 마그네슘은 코코피트배지에서 생육 전반기에 3me·L-1 정도의 높은 흡수농도를 나타내었으며 생육 후반기까지도 다른 배지에 비해서 가장 높은 흡수 농도를 나타내었다. 다음으로는 펄라이트 배지와 입상암면배지 순이었으며 세 배지 모두 마그네슘의 흡수는 대체적으로 1me·L-1 정도의 농도를 나타내었다. 본 실험의 결과는 고형배지를 이용한 순환식 딸기 수경재배에서 유용하게 활용될 것으로 생각된다.
New biological treatments were being developed at a record place, but their potential could be compromised by a significant obstacle: the delivery of these drugs into a body. Pharmaceutical delivery is now nearly as important as product. New systems are being developed, and Drug Delivery Markets Series cover these new systems. Transdermal Delivery System(TDS) is often used as a method of drug dosage into the epidermic skin. An approach used to delivery drugs through the skin for therapeutic use as an alternative to oral, intravascular, subcutaneous and transmucosal routes. Various transdermal drug delivery technologies are described including the use of suitable formulations, carriers and penetration enhancers. The most commonly used transdermal system is the skin patch using various types of technologies. Compared with other methods of dosage, it is possible to use for a long term. It is also possible to stop the drug dosage are stopped if the drug dosage lead to side effect. Polysaccharides, such as karaya gum and glucomannan, were selected as base materials of TDS. Also, these polymers were characterized in terms of enhancers, drug contents. Among these polysaccharide, the permeation rate of karaya gum matrix was fastest in fibric acid(ciprofibrate) such as lipophilic drug in vitro. We used glycerin, PEG400 and PEG800 as enhancers. Since dermis has more water content(hydration) than the stratum corneum, skin permeation rate at steady state was highly influenced when PEG400 was more effective for lipophilic drug. Proper selection of the polymeric materials which resemble and enhance properties of the delivering drug was found to be important in controlling the skin permeation rate. Especially, this result suggests a possible use of polysaccharide gel ointment matrix as a transdermal delivery system of anti-hyperlipoproteinemic agent.
본 연구는 장미 순환식 수경재배 시 재배시기별로 적합한 배양액을 개발하고자 일본야채다업시험장 표준액을 1/4S, 1/2S, 2/3S, 1S로 하여 펄라이트와 입상 암면을 4:6 부피비로 섞은 고형배지를 이용하여 실험을 실시하였다. 고온기재배의 경우 1/2S 처리구에서, 저온기의 경우 2/3S 처리구에서 광합성 속도, 절화 품질 및 생육이 우수하였다. 이를 토대로 1/2S(고온기), 2/3S(저온기) 처리구의 양수분 흡수율을 기준으로 새로운 배양액을 조성하였다. 이온의 조성은 고온기의 경우 NO3-N 6.8, NH4-N 0.7, PO4-P 2.0, K 3.8, Ca 3.0, Mg 1.2, SO4-S 1.2me·L-1, 저온기의 경우 NO3-N 6.8, NH4-N 0.7, PO4-P 2.0, K 3.8, Ca 3.0, Mg 1.2, SO4-S 1.2me·L-1 이었다. 개발한 배양액의 적합성 평가실험 결과 UOS 배양액은 Ca, P 등의 이온이 장미의 양분흡수율보다 많이 함유된 기존의 배양액과 비교하여 근권 내 EC 변화가 안정적이었다. 또한 절화수량이 재배기간에 관계없이 기존 배양액보다 높은 결과를 나타내었고 특히 저온기 재배시 아이찌현 배양액 처리구에 비하여 수확량이 140% 증가하였다. 따라서 고형배지를 이용한 장미 순환식 수경재배시 새로 개발된 배양액을 사용할 경우 기존 배양액에 비해 비료절감의 효과와 함께 안정적인 생육 및 수량증대를 기대할 수 있다.
Efforts to reduce noise in industrial application fields, such as automobiles, aircrafts, and plants have been gaining considerable attention while a sound proof wall to protect people from the noise has been intensively investigated by many researchers. In this study, our research group suggested creating a new sound proof wall composed of scrap aluminum chips and perforated plates in a commercial polyester sound proof wall, which was then successfully fabricated. This wall's sound absorption characteristics were measured by an impedance tube method. The sound absorption property was evaluated by measuring the Noise Reduction Coefficient (NRC) to the standard, ASTM C 423-90a. The noise reduction coefficient of the sound proof wall composed of 3.5 vol.% and 7.5 vol.% of scrap aluminum chips relatively increased to 5% and 8% compared to the commercial polyester sound proof wall. The scrap aluminum perforated plate also relatively increased to 13% compared to the commercial polyester sound proof wall.
Y-type barium ferrite ( Me=Zn, Co, Cu) expected as an electromagnetic wave absorber were prepared by the glass-ceramic method. The glasses with composition of were prepared. Single-phase powders of Y type barium ferrite were obtained with the composition . The shape of Y-type crystals depended strongly on the heating temperature and changed from a plate-like hexagon to a complex polyhedron with increasing heating temperature. Correlation was recognized between saturation magnetization and crystal shape. Electromagnetic wave absorption characteristics was affected by the saturation magnetization and crystal shape.
Al0.24Ga0.76As/GaAs 다중 양자우물 구조의 고아 흡수 특성을 표면 광전압 방법을 사용하여 연구하였다. SPV 측정결과 1.42eV 부근에서 두 개의 신호가 나탔으며, 이는 화학적 에칭으로 GaAs 기판의 신호와 GaAs 완충층과 관련된 신호임을 확인 할 수 있었다. Al0.24Ga0.76As와 관련된 전이 에너지를 관찰하고, Kuech 등이 제안한 조성식을 이용하여 Al 조성(x=24%)을 결정하였다. 그리고 다중 양자우물에서 나타나는 전이 에너지 값들은 envelope-weve function approximation(EFA)로 계산한 이론치와 잘 일치하였다. 입사광의 세기에 따라 광 전압이 선형적으로 변한다는 것을 알 수 있었고, 온도가 감소함에 따른 전이 에너지의 변화를 관찰하였다.