ZrB2 ceramic and ZrB2 ceramic composites with the addition of SiC, WC, and SiC/WC are successfully synthesized by a spark plasma sintering method. During high-temperature oxidation, SiC additive form a SiO2 amorphous outer scale layer and SiC-deplete ZrO2 scale layer, which decrease the oxidation rate. WC addition forms WO3 during the oxidation process to result in a ZrO2/WO3 liquid sintering layer, which is known to improve the antioxidation effect. The addition of SiC and WC to ZrB2 reduces the oxygen effective diffusivity by one-fifth of that of ZrB2. The addition of both SiC and WC shows the formation of a SiO2 outer dense glass layer and ZrO2/WO3 layer so that the anti-oxidation effect is improved three times as much as that of ZrB2. Therefore, SiC- and WC-added ZrB2 has a lower two-order oxygen effective diffusivity than ZrB2; it improves the anti-oxidation performance 3 times as much as that of ZrB2.
본 연구에서는 동해안에서 10개의 석호들을 대상으로 어류군집의 조성의 차이를 파악하였고, 갈대 줄기의 탄 소와 질소안정동위원소분석을 통하여 각 석호생태계의 유역환경을 예측하였다. 석호들 사이에서 어류의 조성 (특히, 회유성 어류) 및 섭식기능군은 지형학적인 특성에 따라 분포의 차이를 보였다. 10곳의 석호들에서 갈대 줄기 δ13C과 δ15N값 각각 -28.40±0.11‰에서 -26.87 ±0.25‰과 -1.09±1.45‰에서 12.08±0.53‰의 범위 를 보였다. 이들 석호에서의 갈대의 줄기 δ15N 값의 차 이는 토지 이용에 따른 인위적인 오염원의 차이와 석호 의 지형학적인 특성 등과 관련이 있음을 보였다. 이 연 구는 어류의 서식지 확보, 석호생태계에서의 생물다양성 의 보전과 유역의 오염원에 대한 관리를 위한 유용한 정보를 제공할 수 있다.
Fish kill incidents are not rare in the upstream region of the Han River where overall water quality is suitable for supporting a fish community. However, the causes of fish kills are often not identified. In this study we examined the cause of a fish kill in an upstream tributary of the North Han River (Seo Stream, Yanggu County). In the field survey at the time when the fish kill occurred, the results did not indicate any harmful concentrations of heavy metals or toxic pesticides. Instead several tons of gingko (Ginkgo biloba) seed coat wastes were found in the water along the reach of fish kill site. Because gingko is known to be toxic, it was suspected as a cause of the fish kill. Recently gingko production has been increasing in Korea, and it is common practice for farmers to wash the seed coats of seeds in streams because the seed coats are toxic and emit an offensive odor. Toxicity of gingko fruit to humans is well known, but the toxicity to aquatic biota has not been previously reported. We investigated the toxicity of gingko seed coat extract to an invertebrate (Daphnia magna) and a fish (Oryzias latipes). After 48 hours exposure to seed coat extract the EC50 of Daphnia immobilization was 0.35% of a mixture corresponding to a dissolved organic carbon (DOC) concentration of 413 mgC L−1. In the fish experiment, the LC50 after 96 hours exposure was 0.4% of the extract mixture corresponding to a DOC of 440 mgC L−1. Thus gingko seed coat is toxic to aquatic animals and gingko washing was the likely cause of the fish kill incident. Our results suggest that gingko seed coat waste should be treated properly and not disposed of in streams.
뇌신경계 인터벤션 시술은 장시간의 시술로 인해 피부의 수포, 탈모, 홍반 등의 방사선 피폭으로 인한 위해가 빈번히 보고되고 있다. 인체공학적으로 제작된 Bismuth (원자번호 83;Bi) 차폐체를 뇌혈관계 인터벤션 시술에 적용함으로써 의료방사선 피폭으로부터 두피 및 수정체의 방사선 피폭을 최소화하고자 하였다. 측정 부위는 4부위로 후두부(9 points), 양쪽 측두부(12 points), 양쪽 수정체부(6 points), 코 끝부(6 points)이며, 측정 소자는 광자극 형광 선량계(Optically Stimulated Luminescence Dosimeter: OSLD)를 각 지점(points)에 측 정기를 부착 후 자체 제작된 Bismuth차폐 기구를 사용 전(A그룹)과 후(B그룹)를 측정한 후 피부표면선량(en trance surface dose)을 비교 분석하였다. A 그룹(Bismuth unshield)과 B 그룹(Bismuth shield)의 피부선량 평균은 A 그룹은 92.44 mGy였고, B 그룹 은 67.55 mGy로 측정되었다. A 그룹에 비해 B 그룹에서 평균 26.92% 감소되었다. 후두부의 피부선량 평균은 A 그룹(9 point)은 146.08 mGy, B 그룹(9 point)은 103.23 mGy로 측정되었고 A 그룹에 비해 B 그룹에서 평균 29.32 % 감소하였다. 측두부의 피부선량 평균은 A 그룹(6 point)은 101.90 mGy, B 그룹(6 point)은 72.69 mGy로 측정되었고 A 그룹에 비해 B 그룹에서 평균 28.67% 감소하였다. 수정체부의 피부선량 평균은 A 그룹(3 point)은 27.51 mGy, B 그룹(3 point)은 21.39 mGy로 측정되었고 A 그룹에 비해 B 그룹에서 평균 22.26% 감소하였다. Bismuth 차폐체의 사용은 뇌혈관 중재적 시술 후 나타날 수 있는 일시적 탈모 및 기타 확률적 영향에 따른 방사선 장해를 감소시킬 수 있는 대안이 될 것으로 사료된다.
In the current concrete structure of the highway is still the major problem most of concrete deterioration caused by the freeze-thaw and deicing salt, which is of issues that are not completely resolved. In particular, a single freezing event does not cause much harm, durability of concrete under multi-deterioration environment by repeated freeze-thaw and deicing salt is rapidly degraded and reduce its service life. In this study, the exposure environmental condition according the regional highway points were established. The damage condition and chloride content of the concrete at general and severe environmental exposure condition were also investigated. In addition, the experimental test of chloride ion permeability, scaling resistant and freeze-thaw resistance were carried out to improve the durability of the mechanical placing concrete of subsidiary structure. According to the results of this study, in observation of concrete surface condition, the concrete exposed by severe environmental condition showed broad ranges of damage with high chloride contents. Meanwhile, the water-binder(W/B) ratio and the less water content, and fly ash concrete than the specified existing mix proportion is significantly improved the durability. Also, the optimal mix proportion derived for test is satisfied the strength and air contents, water-binder ratio, and durability criteria of concrete specifications, as well as service life seems greatly improved.