• 제목/요약/키워드: Phase equilibria diagrams

검색결과 3건 처리시간 0.018초

Phase Behaviors of Binary Protein Systems: Consideration of Structural Effects

  • Kim, Sang-Gon;Kong, Sung-Ho;Bae, Young-Chan;Kim, Sun-Joon
    • Macromolecular Research
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    • 제11권4호
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    • pp.241-249
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    • 2003
  • A molecular-thermodynamic model to describe the salt-induced protein precipitation is developed based on the perturbation theory. We employed the modified perturbed hard-sphere-chain (PHSC) equation of state for copolymer mixtures to take into account the pre-aggregation effect among protein particles. Hypothetical pressure-composition diagrams are computed with various size differences and salt concentrations. The precipitation behaviors are also studied for various types of pre-aggregation effect for the given systems.

태백산광화대(太白山鑛化帶) 연화(蓮花)-거도광산(巨道鑛山)에 있어서의 스카른과 광석광물(鑛石鑛物)의 수반관계(隨伴關係) 및 상평형(相平衡) (Skarn-Ore Associations and Phase Equilibria in the Yeonhwa-Keodo Mines, Korea)

  • 윤석규
    • 자원환경지질
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    • 제16권1호
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    • pp.1-10
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    • 1983
  • The Yeonhwa (I, II) and Keodo mines, neighboring in the middle part of the Taebaegsan mineral belt, contain three distinct classes of skarn deposits: the zinc-lead skarn at Yeonhwa (I, II), the iron skarn at Keodo south (Jangsan orebodies), and the copper skarn at Keodo north (78 orebodies). The present study characterizes the three classes of skarn deposits mainly in terms of skarn/ore associations examined from chemical compositional point of view, and applies existing quantitative phase diagrams to some pertinent mineral assemblages in these mines. At Yeonhwa I the Wolam I orebody shows a vertical variation in skarn minerals ranging from clinopyroxene/garnet zone on the lower levels through clinopyroxene (without garnet) zone on the intermediate levels, and finally to rhodochrosite veins on the upper levels and surface. Ore minerals, sphalerite and galena, associate most closely with the intermediate clinopyroxene zone. At Keodo, the Jangsan iron skarn hosted in quartz monzodiolite as a typical endoskarn, shows a skarn zoning, from center of orebody to outer side, magnetite zone, magnetite/garnet zone, garnet clinopyroxene zone, and clinopyroxene/epidote/plagioclase zone. The 78 copper skarn in the Hwajeol limestone indicates a zoning, from quartz porphyry side toward limestone side, orthoclase/epidote zone, epidote/clinopyroxene zone, and clinopyroxene/garnet zone; chalcopyrite and other copper sulfides tend to be in clinopyroxene/garnet zone. Mioroprobe analyses of clinopyroxenes and garnets from the various skarn zones mentioned above revealed that the Yeonhwa zinc/lead skarns are characterized by johansenitic clinopyroxene (Hd 25-78, Jo 15-23) and manganoan andraditic garnet (Ad 13-97, Sp 1-24), whereas the Jangsan iron skarn at Keodo by Mn-poor diopsidic clinopyroxene (Di 78-93, Jo 0.2-1.0) and Mn-poor grossularitic grandite (Gr 65-77, Sp 0.5-1.0). The 78 copper skarn at Keodo is characterized by Mn-poor diopsidic-salite (Di 66-91, Jo 0.2-1.1) and Mn-poor andraditic grandite(Ad 40-74, Sp 0.5-1.1). The compositional charateristics of iron, copper, and zinc-lead skarns in the Yeonhwa-Keodo mines are in good correlations with those of the foreign counterparts. Compiling a $T-XCO_2$ phase diagram for the Jangsan endoskarns, a potential upper limit of temperature of the main stage of skarn formation is estimated to be about $530^{\circ}C$, and a lower limit to be $400^{\circ}C$ or below assuming $XCO_2=0.05$ at P total=1kb. Applying a published log $fS_2$-log $fo_2$ diagram to the Keodo 78 and Yeonhwa exoskarns, it is revealed that copper sulfides and zinc-lead sulfides do not co-exist stably below log $fS_2=-4$ and log $fO_2=-23$ at $T=400^{\circ}C$ and ${\times}CO=1$ atm.

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유물분석 자료를 통한 백제지역의 제철과 철기 제작기술 연구 (A Study on Iron Manufacturing and Technology through Analysis Reports of Iron artifacts in the Baekje Area)

  • 김수기
    • 보존과학회지
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    • 제30권4호
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    • pp.335-343
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    • 2014
  • 현재까지 분석된 백제지역 출토 철기 유물의 금속미세조직과 비금속개재물 분석 자료들을 한강, 금강, 영산강 유역권으로 분류하여 조업 온도를 추정하고 제강 및 열처리 기술을 지역적 시대별 특성을 조사하였다. 세 지역 모두 시대에 관계없이 고체저온환원으로 괴련철이나 해면철이 주 제철 방법으로 판단된다. 비금속개재물의 산화물 삼원상태도로 재해석한 결과 로내 온도는 $1,100{\sim}1,300^{\circ}C$ 정도에서 조업하였던 것으로 추정된다. 철광석은 자철광석이 주원료이며, $TiO_2$가 높은 것들은 사철을 사용하였던 것으로 보인다. $CaO/SiO_2$의 비율이 0.4 이상인 유물들은 석회질의 융제를 인위적으로 넣었던 것으로 판단된다. 제강은 저탄소강을 단야로에서 숯으로 가열할 때 나오는 CO, $CO_2$ gas로 침탄시키는 고체 침탄강임을 알 수 있었다. 또한 의도적으로 필요 부분의 강도를 높이는 침탄작업과 담금질을 하였던 것으로 보아 3세기에는 백제지역의 철기제작자들은 열처리 기술을 인지하고 있었다.