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31篇 您的检索式:作者名="Pieczonka"
    题名 作者 年代 出处 被引量
1湘西沃溪金矿床矿石矿物学特征及深部找矿意义显示文摘借助电子探针分析技术,对沃溪矿床V3矿脉深部(29中段)矿体进行了矿石矿物学观察和分析,发现深部矿体自然金中Ag、Sb、Pb、Bi等杂质元素的含量明显比浅部(24中段以上)自然金相应组分的含量偏高,深部自然金的成色(≤995)比浅部自然金的成色(≥999)明显偏低;深部矿体矿石中发育辉锑矿、黄铁矿、闪锌矿、黄铜矿、黝铜矿、硫锑矿、车轮矿等矿物,形成明显比浅部矿体组成复杂的矿物组合,显示矿床深部发育Au-Pb-Zn-Bi±Cu的矿化作用。上述表明:沃溪矿床深部可能发育具Au-Pb-Zn-Bi±Cu等元素组合的新矿体。它不同于浅部的W-Sb-Au元素组合的特征。因而深部找矿工作应多注重Au-Pb-Zn-Bi±Cu多元素矿床。彭渤 刘升友 Piestrzvnski Adam Jadwiga Pieczonka 唐晓燕 余昌训 谢淑容 2008中国地质2008,35,6:20
2湘西沃溪钨锑金矿床黄铁矿中发现Au-Sb矿物相显示文摘利用扫描电镜和电子探针等方法,对沃溪钨锑金矿床中产于(块状白钨矿-石英脉中的)黄铁矿微裂隙中的自然金和Au-Sb矿物相进行了较详细的观察和研究。结果表明,黄铁矿中Au-Sb矿物相除了有前人已经鉴定出的方锑金矿(AuSb2.13)外,还新发现有锑金矿(Au1.02Sb)矿物相。二者以显微颗粒的形式存在于黄铁矿显微裂隙中。黄铁矿微裂隙中Au-Sb矿物相的存在,指示矿床成矿在黄铁矿形成之后存在Au-Sb混溶的成矿流体。自然金、方锑金矿、锑金矿等矿物的沉淀析出可能是Au-Sb混溶流体从高温(高于350℃)向低温(250℃)演变的结果。此外,Au-Sb矿物相的发现对改进矿石冶炼中Au、Sb的分离技术有参考价值。彭渤 Adam Piestrzynski 刘升友 Jadwiga Pieczonka 2007地质通报2007,26,5:3
3Mineralogical and geochemical constraints on environmental impacts from waste rock at Taojiang Mn-ore deposit, central Hunan, China显示文摘Bo Peng Adam Piestrzynski Jadwiga Pieczonka Meilian Xiao Yaozhu Wang Shurong Xie Xiaoyan Tang Changxun Yu Zhi Song 2007Environmental Geology2007,,7:2
4The electroless deposition of nickel on SiC particles for aluminum matrix composites显示文摘F. Kretz Z. Gácsi J. Kovács T. Pieczonka 2003Surface & Coatings Technology2003,,:1
5Red bed-type gold miner- alisation, Kupferschiefer, south-west Poland显示文摘Piestrzynski A Pieczonka J Gauszek A 2002Mineralium Deposi- ta2002,37,5:1
6Understanding the capacity fading mechanism in LiNi 0.5 Mn 1.5 O 4 /graphite Li-ion batteries显示文摘Jung-Hyun Kim Nicholas P.W. Pieczonka Zicheng Li Yan Wu Stephen Harris Bob R. Powell 2012Electrochimica Acta2012,,:1
7Synthesis and evaluation of antimicrobial activity of hydrazones derived from 3-oxido-1 H -imidazole-4-carbohydrazides显示文摘Adam M. Pieczonka Aleksandra Strzelczyk Beata Sadowska Grzegorz Mlostoń Pawe? St?czek 2013European Journal of Medicinal Chemistry2013,,:1
8A new approach to morpholin-2-one derivatives via the reaction of β- amino alcohols with dicyanofumarates显示文摘Mloston G Pieczonka A M Ali K A 2012Arkivoc2012,,3:1
9Planimetric and volumetric glacier changes in the Khumbu Himal,Nepal,since 1962 using Corona,landsat TM and ASTER data显示文摘Bolch T Buchroithner M Pieczonka T 2008Journal of Glaciology2008,54,187:1
10Surface-enhanced Raman scattering on colloidal nanostructures显示文摘R.F. Aroca R.A. Alvarez-Puebla N. Pieczonka S. Sanchez-Cortez J.V. Garcia-Ramos 2005Advances in Colloid and Interface Science2005,,1:1
11Atmosphere effect on sin- tering behaviour of astaloy CrM and astaloy CrL H6gan/is pow-ders with manganese and carbon additions显示文摘Pieczonka T Sutowski M Cia A 2012Archives of Met- allurgy and Materials2012,57,4:1
12Chemically selective sensing through layer - by - layer incorporation of biorecognition into thin film substrates for surface -enhanced resonance raman scattering 显示文摘Pieczonka N P W Goulet P J G Aroca R F 2006Journal of the American Chemical Society2006,128,12:1
13Dimensional changes occurring during reactive sintering of Ni-Al-Mo elemental powder mixtures 显示文摘PIECZONKA T MOLINARI A GIALANELLA S 1997Powder Metallurgy1997,40,:1
14Dimensional behaviour of aluminiurn sintered in different atmospheres 显示文摘PIECZONKA T SCHUBERT T BAUNACK S 2008Materials Science and Engineering: A2008,478,1:1
15Longest Time Series of GlacierMass Changes in the Himalaya based on Stereo Imagery显示文摘Bolch T Pieczonka T Benn D 2010Cryosphere Discuss2010,4,:1
16Persistent liquid phase sintering of 316L stainless steel 显示文摘MOLINARI A Straffelini G Pieczonka T 1998International Journal of Powder Metallurgy1998,34,2:1
17The electroless deposition of nickel on SiC particles for aluminum matrix composites显示文摘KRETZ F GACSI Z KOVACS J PIECZONKA T 0,,:1
18Comparative study of LiMnPO4/C cathodes synthesized by polyol and solid-state reaction methods for Li-ion batteries显示文摘PIECZONKA NPW LIU Zhong-yi HUQ A 2013Journal of Power Sources2013,230,10:1
19查看详情显示文摘Pieczonka N. P. W Liu Z. Y Ash F. H Kim J.H 0,,:1
20Comparative Study of LiMnP04/C Cathodes Synthesized by Polyol and Solid-State Reaction Methods for Li-ion Batteries显示文摘Nicholas P W Pieczonka Liu Z Y 2013Journal of Power Sources2013,230,:1
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