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一种新的碳酸盐岩孔隙分类系统 被引量:2
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作者 Arve Lφnφy 万志峰 《海洋石油》 CAS 2007年第2期30-31,共2页
关键词 分类系统 碳酸盐岩 孔隙度 分类方案 沉积特征 成岩作用 流体特性 储层评价
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Bioleaching of chalcopyrite with different crystal phases by Acidianus manzaensis 被引量:7
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作者 Zhen-yuan NIE Wei-wei ZHANG +6 位作者 Hong-chang LIU Hong-rui ZHU Chang-hui ZHAO Duo-rui ZHANG Wei ZHU Chen-yan MA Jin-lan XIA 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第3期617-624,共8页
Bioleaching of chalcopyrite with different crystal structures (α-phase,β-phase and γ-phase) by Acidianus manzaensis was comparatively studied by synchrotron radiation based X-ray diffraction (SR-XRD) and S K-edge X... Bioleaching of chalcopyrite with different crystal structures (α-phase,β-phase and γ-phase) by Acidianus manzaensis was comparatively studied by synchrotron radiation based X-ray diffraction (SR-XRD) and S K-edge X-ray absorption near edge structure (XANES) spectroscopy. The α-phase,β-phase and γ-phase chalcopyrite was prepared by heating original chalcopyrite at 583, 773 and 848 K, respectively. Bioleaching results showed that [Cu^2+] in the leaching solution of α-phase,β-phase,γ-phase and original chalcopyrite after 10 days of bioleaching was 1.27, 1.86, 1.43 and 1.13 g/L, respectively, suggesting that β-phase had a better leaching kinetics than others. SR-XRD and XANES results indicated that jarosite and chalcopyrite were the main components in the leaching residues in all cases, and elemental sulfur formed in the early stage of bioleaching. While for β-phase and γ-phase chalcopyrite during bioleaching, bornite was produced in the initial stage of leaching, and turned into chalcocite on day 6. 展开更多
关键词 CHALCOPYRITE crystal structure BIOLEACHING Acidianus manzaensis SR-XRD XANES
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Role of Hydrogen Migrations in Carbonyl Peroxy Radicals in the Atmosphere
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作者 Sai-nan Wang Run-run Wu Li-ming Wang 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2019年第4期457-466,I0003,共11页
Carbonyl peroxy radicals (RC(O)O2) are the ubiquitous radical intermediates in the atmospheric oxidation of volatile organic compounds. In this work, theoretical studies are carried out to explore the role of the unim... Carbonyl peroxy radicals (RC(O)O2) are the ubiquitous radical intermediates in the atmospheric oxidation of volatile organic compounds. In this work, theoretical studies are carried out to explore the role of the unimolecular H-migration in the carbonyl peroxy radicals by using quantum chemistry and kinetics calculations. The results showed that H-migration could be significant in the atmosphere at least in CH3CH2CH2C(O)O2 and (CH3)2CHCH2C(O)O2 with rates of ∽0.012 and -0.58^-1 at 298 K. Subsequent reactions of CH3CHCH2C(O)OOH would lead to the products with multi-functional groups, which might affect the aerosol formation process;while (CH3)2CCH2C(O)OOH would transform to formaldehyde and acetone in a few steps. These processes would be important for the atmospheric modelling of volatile organic compounds under low-NOx conditions. 展开更多
关键词 Carbonyl peroxy radical H-migration Atmospheric oxidation
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