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7篇 您的检索式:作者名="Lu Yinxiu"
    题名 作者 年代 出处 被引量
1Further study on deep penetrating geochemistry over the Spence porphyry copper deposit,Chile显示文摘深为发现矿物质 depositswas 隐藏渗透 geochemistrythe 表面探索技术的研究由澳大利亚、加拿大、中国的实验室在智利在 Spence 斑岩铜沉积物上执行了用选择弱沥滤方法并且简短这里被考察。乖僻、弱的铜异例在 Spence 沉积物上面被获得,它在一个厚山麓石子封面下面被隐藏。在文学,如此的模式在大多数是普通的弱选择沥滤研究在已知的埋葬的沉积物上执行了。在在未知区域的探索期间,如此的弱沥滤技术导致一些成功,许多弄干洞。在这份报纸,更强壮的选择沥滤方法为氧化物和硫化物被开发,它可以是产品由气体或水通过地质的时间的长跨度通过 overburden 向上带的一个活动先锋阶段转变了并且积累的稳定的结束。在这份报纸开发的方法获得的数据比以前的努力生产了更重要、一致的异常数据。因而,这里描述的 leach 途径可以增加深为隐藏的矿石存款在探索渗透地球化学的有效性。Xuejing Xie Yinxiu Lu Wensheng Yao Jinfeng Bai 2011Geoscience Frontiers2011,2,3:6
2Nanoscale Metals in Earthgas and Mobileforrm of Metals in Overburden in Wide-spaced Rcgional Exploration for Giant Ore Deposits in Overburden Terrains显示文摘Wang Xueqiu Cheag Zhizhong Lu Yinxiu 1997Geochem Explor1997,58,1:1
3Nanoscale metals in Earthgas and mobile forms of metals in overburden in wide-spaced regional exploration for giant deposits in overburden terrains 显示文摘Wang Xueqiu Cheng Zhizhong Lu Yinxiu Xu Li Xie Xuejin 1997J Geochem Explor1997,58,1:1
4Nanoscale metals in Earthgas and mobile forms of metals in overburden in wide- spaced regional exploration for giant deposits in overburden ter- rains显示文摘Wang Xueqiu Cheng Zhizhong Lu Yinxiu 1997Journal of Geochemical Exploration1997,58,1:1
5Nanoscals metals in earthgas and mobile forms of metal in wide-spaced regional exploration for giant ore deposits in overburden terrains显示文摘Wang Xueqiu Cheng Zhizhong Lu Yinxiu 1997Geochem Explor1997,58,1:1
6Nanoscale metals in earthgas and mobile forms of metals in overburden in wide-spaced regional exploration for giant ore deposits in overburden terrains显示文摘Wang Xueqiu Cheng Zhizhong Lu Yinxiu 1997Geochem Explor1997,58,1:1
7Bioinspired polysaccharide-based nanocomposite membranes with robust wet mechanical properties for guided bone regeneration显示文摘Polysaccharide-based membranes with excellent mechanical properties are highly desired.However,severe mechanical deterioration under wet conditions limits their biomedical applications.Here,inspired by the structural heterogeneity of strong yet hydrated biological materials,we propose a strategy based on heterogeneous crosslink-and-hydration(HCH)of a molecule/nano dual-scale network to fabricate polysaccharide-based nanocomposites with robust wet mechanical properties.The heterogeneity lies in that the crosslink-and-hydration occurs in the molecule-network while the stress-bearing nanofiber-network remains unaffected.As one demonstration,a membrane assembled by bacterial cellulose nanofiber-network and Ca2+-crosslinked and hydrated sodium alginate molecule-network is designed.Studies show that the crosslinked-and-hydrated molecule-network restricts water invasion and boosts stress transfer of the nanofiber-network by serving as interfibrous bridge.Overall,the molecule-network makes the membrane hydrated and flexible;the nanofiber-network as stress-bearing component provides strength and toughness.The HCH dual-scale network featuring a cooperative effect stimulates the design of advanced biomaterials applied under wet conditions such as guided bone regeneration membranes.Jian-Hong Xiao Zhen-Bang Zhang JiaHao Li Si-Ming Chen Huai-Ling Gao YinXiu Liao Lu Chen ZiShuo Wang YiFan Lu YuanZhen Hou HengAn Wu DuoHong Zou Shu-Hong Yu 2024National Science Review2024,11,3:0
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