• 제목/요약/키워드: Nickel sulfide

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첨단산업용 핵심광물(흑연, REE, Ni, Li, V)의 지질학적 부존특성 및 활용현황 (Situation of Utilization and Geological Occurrences of Critical Minerals(Graphite, REE, Ni, Li, and V) Used for a High-tech Industry)

  • 고상모;이범한;허철호
    • 자원환경지질
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    • 제56권6호
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    • pp.781-797
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    • 2023
  • 최근 들어 첨단산업에 활용되는 핵심광물의 확보를 위한 광물수요국들의 대응이 빠르게 진행되고 있다. 흑연은 중국 생산량이 압도적 우위에 있지만, EV 배터리 부문의 기하급수적인 성장에 따라 글로벌 공급에서 변화가 초래되고 있으며, 동 아프리카에서의 활발한 탐사가 좋은 사례이다. 우리나라에서도 생산이 증가되고 있다. 희토류는 첨단산업에 폭넓게 사용되고 있는 핵심원료이다. 세계적으로 희토류를 생산하는 광상은 카보너타이트형, 라테라이트형 및 이온흡착형 광상이 개발 중에 있다. 중국의 생산이 다소 감소되는 추세이지만 여전히 압도적인 우위를 점하고 있다. 최근 수년간의 변화는 미얀마의 급부상과 베트남의 생산 증가이다. 니켈은 다양한 화학 및 금속 산업에 사용되어 온 금속이지만 최근 밧데리 비중이 점차 증가되고 있는 추세이다. 세계 니켈 광상은 초염기성암에서 유래된 유화형 광상과 라테라이트형 광상으로 크게 구분된다. 유화형 광상은 호주에서 개발이 지속적으로 증가 할 것으로 예측되며, 라테라이트형 광상은 인도네시아에서의 개발이 촉진 될 것으로 보인다. 리튬이온 배터리 수요에 따라 니켈 시장도 견인될 것으로 전망된다. 세계 리튬 광상은 염호형(78%)과 암석/광물형(스포듀민 19%), 점토형(3%)이 생산되고 있다. 암석형 광상이 염호형 광상보다 품위가 다소 높지만 매장량이 적고 페그마타이트에 함유된 스포듀민 리튬광물이 대상이다. 칠레, 아르헨티나, 미국에서는 염호형 광상을 주로 개발하고 있으며, 호주와 중국에서는 염호 및 암석/광물 두 근원으로부터 리튬을 추출하고 있고 캐나다에서는 암석/광물로부터만 생산한다. 바나듐은 전통적으로 강철 합금에 약 90% 이용되어 왔으나 최근 대규모 전력 저장을 위한 바나듐 레독스 흐름배터리 용도가 증가 추세에 있다. 세계 바나듐 공급원은 광산에서 생산하는 바나듐을 함유한 철광석(81%)과 부산물에서 회수하는 바나듐(2차 근원, 18%)으로 양대분 된다. 81%를 차지하는 바나듐-철광석 근원은 제강공정에서 유래된 바나듐 슬래그가 70%를 차지하고 광산에서 생산하는 1차 근원인 광석은 30%에 불가하다. 이러한 공급원으로부터 중간재인 바나듐 산화물이 제조된다. 바나듐 광상은 함바나듐 티탄자철석형 광상, 사암 모암형 광상, 셰일 모암형 광상과 바나듐산염형 광상으로 구분되는데 함바나듐 티탄자철석형 광상만이 현재 개발되고 있다.

유동층 반응기를 이용한 구리와 니켈의 황화물 결정화에 결정화 시약 및 pH가 미치는 영향 (Effects of crystallization reagent and pH on the sulfide crystallization of Cu and Ni in fluidized bed reactor)

  • 정은후;심수진;윤성택;홍석원
    • 상하수도학회지
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    • 제28권2호
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    • pp.207-215
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    • 2014
  • Wastewater containing heavy metals such as copper (Cu) and nickel (Ni) is harmful to humans and the environment due to its high toxicity. Crystallization in a fluidized bed reactor (FBR) has recently received significant attention for heavy metal removal and recovery. It is necessary to find optimum reaction conditions to enhance crystallization efficacy. In this study, the effects of crystallization reagent and pH were investigated to maximize crystallization efficacy of Cu-S and Ni-S in a FBR. CaS and $Na_2S{\cdot}9H_2O$ were used as crystallization reagent, and pH were varied in the range of 1 to 7. Additionally, each optimum crystallization condition for Cu and Ni were sequentially employed in two FBRs for their selective removal from the mixture of Cu and Ni. As major results, the crystallization of Cu was most effective in the range of pH 1-2 for both CaS and $Na_2S{\cdot}9H_2O$ reagents. At pH 1, Cu was completely removed within five minutes. Ni showed a superior reactivity with S in $Na_2S{\cdot}9H_2O$ compared to that in CaS at pH 7. When applying each optimum crystallization condition sequentially, only Cu was firstly crystallized at pH 1 with CaS, and then, in the second FBR, the residual Ni was completely removed at pH 7 with $Na_2S{\cdot}9H_2O$. Each crystal recovered from two different FBRs was mainly composed of CuxSy and NiS, respectively. Our results revealed that Cu and Ni can be selectively recovered as reusable resources from the mixture by controlling pH and choosing crystallization reagent accordingly.

Enhancement of Thermoelectric Properties in Cold Pressed Nickel Doped Bismuth Sulfide Compounds

  • Fitriani, Fitriani;Said, Suhana Mohd;Rozali, Shaifulazuar;Salleh, Mohd Faiz Mohd;Sabri, Mohd Faizul Mohd;Bui, Duc Long;Nakayama, Tadachika;Raihan, Ovik;Hasnan, Megat Muhammad Ikhsan Megat;Bashir, Mohamed Bashir Ali;Kamal, Farhan
    • Electronic Materials Letters
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    • 제14권6호
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    • pp.689-699
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    • 2018
  • Nanostructured Ni doped $Bi_2S_3$ ($Bi_{2-x}Ni_xS_3$, $0{\leq}x{\leq}0.07$) is explored as a candidate for telluride free thermoelectric material, through a combination process of mechanical alloying with subsequent consolidation by cold pressing followed with a sintering process. The cold pressing method was found to impact the thermoelectric properties in two ways: (1) introduction of the dopant atom in the interstitial sites of the crystal lattice which results in an increase in carrier concentration, and (2) introduction of a porous structure which reduces the thermal conductivity. The electrical resistivity of $Bi_2S_3$ was decreased by adding Ni atoms, which shows a minimum value of $2.35{\times}10^{-3}{\Omega}m$ at $300^{\circ}C$ for $Bi_{1.99}Ni_{0.01}S_3$ sample. The presence of porous structures gives a significant effect on reduction of thermal conductivity, by a reduction of ~ 59.6% compared to a high density $Bi_2S_3$. The thermal conductivity of $Bi_{2-x}Ni_xS_3$ ranges from 0.31 to 0.52 W/m K in the temperature range of $27^{\circ}C$ (RT) to $300^{\circ}C$ with the lowest ${\kappa}$ values of $Bi_2S_3$ compared to the previous works. A maximum ZT value of 0.13 at $300^{\circ}C$ was achieved for $Bi_{1.99}Ni_{0.01}S_3$ sample, which is about 2.6 times higher than (0.05) of $Bi_2S_3$ sample. This work show an optimization pathway to improve thermoelectric performance of $Bi_2S_3$ through Ni doping and introduction of porosity.

자연동(自然銅)에 대(對)한 문헌적(文獻的) 고찰(考察) (A Philological Study on The Pyrite)

  • 설재욱;김세진;안혜림;정일문;신미숙;장하정;최진봉
    • 대한한의학방제학회지
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    • 제14권1호
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    • pp.82-104
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    • 2006
  • Objectives: The aim of this study is to find the therapeutic meaning of the Pyrite in herbal medication. Methods: About the origin, the component, the processing the drug, the properties and tastes of drugs, the meridian tropism, the effects, the treating disease, the contraindication and the method of administration. We have researched thirty three literatures to mention the pyrite in time sequence. Results: 1. The pyrite belongs to the metallic herbs and it consists of Iron sulfide, sometimes containing small amounts of cobalt, nickel. silver, and gold. 2. The processing the drug are the tempering, the annealing with vinegar. the refining drug with water or RADIX GLYCYRRHIZAE and et cetra, and accoring to these methods, the pyrite classified into three groups - the rough pyrite, the tempered pyrite, the annealed pyrite. 3. The properties and tastes of drugs is pungent and regular. If pyrite is well refine, it is nearly safe form the metallic virulence. the meridian tropism is mainly liver meridian. 4. From old times, pyrite has come into general use to treat the injury of muscles and tendons and bone facture because it is effective on dissipating blood stasis, alleviating pain and reunion of bone, muscles and ligament. 5. When the symptom is gone, a medicine to contain pyrite must be stoped taking. Because of pyrite's effect on regulateing Gi and promoting blood flow. Conclusions: This study showed that the pyrite is useful herb to treat the injury of muscles and tendons and bone facture.

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카본 코팅된 니켈-코발트 황화물의 요크쉘 입자 제조 및 소듐 이온 배터리의 음극 소재 적용 (Synthesis of Carbon Coated Nickel Cobalt Sulfide Yolk-shell Microsphere and Their Application as Anode Materials for Sodium Ion Batteries )

  • 서효영;박기대
    • 한국분말재료학회지
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    • 제30권5호
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    • pp.387-393
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    • 2023
  • Transition metal chalcogenides are promising cathode materials for next-generation battery systems, particularly sodium-ion batteries. Ni3Co6S8-pitch-derived carbon composite microspheres with a yolk-shell structure (Ni3Co6S8@C-YS) were synthesized through a three-step process: spray pyrolysis, pitch coating, and post-heat treatment process. Ni3Co6S8@C-YS exhibited an impressive reversible capacity of 525.2 mA h g-1 at a current density of 0.5 A g-1 over 50 cycles when employed as an anode material for sodium-ion batteries. However, Ni3Co6S8 yolk shell nanopowder (Ni3Co6S8-YS) without pitch-derived carbon demonstrated a continuous decrease in capacity during charging and discharging. The superior sodium-ion storage properties of Ni3Co6S8@C-YS were attributed to the pitch-derived carbon, which effectively adjusted the size and distribution of nanocrystals. The carbon-coated yolk-shell microspheres proposed here hold potential for various metal chalcogenide compounds and can be applied to various fields, including the energy storage field.

폐플라스틱 열분해유의 납사 전환을 위한 수첨처리 및 수첨분해 촉매연구 (Study of Hydrotreating and Hydrocracking Catalysts for Conversion of Waste Plastic Pyrolysis Oil to Naphtha)

  • 김기덕;권은희;김광호;임석현;;고강석;전상구;노남선
    • 공업화학
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    • 제34권2호
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    • pp.126-130
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    • 2023
  • 플라스틱의 폐기물 및 화학원료로의 재활용 분야에 대한 사회적 관심이 급격히 높아지고 있는 상황에서, 폐플라스틱 열분해유를 이용한 납사 생산은 가장 기술 장벽을 낮춰 시대적 요구에 가장 빠르게 대응할 수 있는 방법이다. 따라서 본 연구에서는 폐플라스틱 열분해유를 이용한 수첨처리, 수첨분해에 대한 연구를 진행하였다. 자세하게는 수첨처리를 통한 불순물 제거, 수첨분해를 통한 납사 수율 증대를 목적으로 연구를 진행하였다. 그 결과 폐플라스틱 열분해유 중 200 ℃ 이하의 비점을 가지는 납사유분은 황화물계 촉매를 이용한 370 ℃, 2시간 조건에서의 수첨처리를 통해 90 wt% 이상의 황 및 질소 전환율, 염소의 경우 거의 100 wt%에 가까운 전환율을 확인하였고, 200 ℃ 이상 비점을 가지는 폐플라스틱 열분해 중질유분은 NiMo/ZSM-5 촉매를 이용한 400 ℃, 2시간의 수첨분해를 통해 35.7 wt%의 납사 수율을 얻을 수 있음을 확인하였다.

옥천대(沃川帶) 우라늄광층(鑛層)의 구조규제(構造規制) 및 지구화학적(地球化學的) 특성연구(特性硏究) (Lithologic and Structural Controls and Geochemistry of Uranium Deposition in the Ogcheon Black-Slate Formation)

  • 이대성;윤석규;이종혁;김정택
    • 자원환경지질
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    • 제19권spc호
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    • pp.19-41
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    • 1986
  • Structural, radioactive, petrological, petrochemical, mineralogical and stable isotopic study as well as the review of previous studies of the uranium-bearing slates in the Ogcheon sequence were carried out to examine the lithological and structural controls, and geochemical environment in the uranium deposition in the sequence. And the study was extended to the coal-bearing formation (Jangseong Series-Permian) to compare the geochemical and sedimentologic aspects of uranium chemistry between Ogcheon and Hambaegsan areas. The results obtained are as follows: 1. The uranium mineralization occurs in the carbonaceous black slates of the middle to lower Guryongsan formation and its equivalents in the Ogcheon sequence. In general, two or three uranium-bearing carbonaceous beds are found with about 1 to 1.5km stratigraphic interval and they extend from Chungju to Jinsan for 90km in distance, with intermittent igneous intrusions and structural Jisturbances. Average thickness of the beds ranges from 20 to 1,500m. 2. These carbonaceous slate beds were folded by a strong $F_1$-fold and were refolded by subsequent $F_1$-fold, nearly co-axial with the $F_1$, resulting in a repeated occurrence of similar slate. The carbonaceous beds were swelled in hing zones and were shrinked or thined out in limb by the these foldings. Minor faulting and brecciation of the carbonaceous beds were followed causing metamorphism of these beds and secondary migration and alteration of uranium minerals and their close associations. 3. Uranium-rich zones with high radioactive anomalies are found in Chungju, Deogpyong-Yongyuri, MiwonBoun, Daejeon-Geumsan areas in the range of 500~3,700 cps (corresponds to 0.017~0.087%U). These zones continue along strike of the beds for several tens to a few hundred meters but also discontinue with swelling and pinches at places that should be analogously developed toward underground in their vertical extentions. The drilling surveyings in those area, more than 120 holes, indicate that the depth-frequency to uranium rich bed ranging 40~160 meter is greater. 4. The features that higher radioactive anomalies occur particularly from the carbonaceous beds among the argillaceous lithologic units, are well demonstrated on the cross sections of the lithology and radioactive values of the major uranium deposits in the Ogcheon zone. However, one anomalous radioactive zone is found in a l:ornfels bed in Samgoe, near Daejeon city. This is interpreted as a thermal metamorphic effect by which original uranium contents in the underlying black slate were migrated into the hornfels bed. 5. Principal minerals of the uranium-bearing black slates are quartz, sericite, biotite and chlorite, and as to chemical composition of the black slates, $Al_2O_3$ contents appear to be much lower than the average values by its clarke suggesting that the Changri basin has rather proximal to its source area. 6. The uranium-bearing carbonaceous beds contain minor amounts of phosphorite minerals, pyrite, pyrrhotite and other sulfides but not contain iron oxides. Vanadium. Molybdenum, Barium, Nickel, Zirconium, Lead, Cromium and fixed Carbon, and some other heavy metals appear to be positive by correlative with uranium in their concentrations, suggesting a possibility of their genetic relationships. The estimated pH and Eh of the slate suggests an euxenic marine to organic-rich saline water environment during uranium was deposited in the middle part of Ogcheon zone. 7. The Carboniferous shale of Jangseong Series(Sadong Series) of Permian in Hambaegsan area having low radioactivity and in fluvial to beach deposits is entirely different in geochemical property and depositional environment from the middle part of Ogcheon zone, so-called "Pibanryong-Type Ogcheon Zone". 8. Synthesizing various data obtained by several aspects of research on uranium mineralization in the studied sequence, it is concluded that the processes of uranium deposition were incorporated with rich organic precipitation by which soluble uranyl ions, $U{_2}^{+{+}}$ were organochemically complexed and carried down to the pre-Ogcheon sea bottoms formed in transitional environment, from Red Sea type basin to Black Sea type basin. Decomposition of the organic matter under reducing conditions to hydrogen sulfide, which reduced the $UO{_2}^{+2}$ ions to the insoluble uranium dioxide($UO_2$), on the other side the heavy metals are precipitated as sulfides. 9. The EPMA study on the identification of uraninite and others and the genetic interpretation of uranium bearing slates by isotopic values of this work are given separately by Yun, S. in 1984.

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