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1.
大排田岩体位于粤北澜河铀矿集区内,对研究区内大排田岩体粗中粒斑状黑云母花岗岩进行了详细的岩相学和地球化学分析,以探讨其岩石成因、岩浆源区及与铀成矿的关系。结果表明,大排田岩体中粗粒斑状黑云母花岗岩具有高SiO2(73.6%~76.5%),富Al2O3(12.4%~13.5%)、富碱(K2O=5.21%~5.63%,Na2O=2.44%~2.76%),且钾大于钠,贫MgO(0.23%~0.52 %)、铝饱和指数(A/CNK)为1.30~1.56,FeOt/MgO为3.21~6.61,属于高钾钙碱性过铝质花岗岩。大排田岩体微量元素显示了Rb、Th、U、Ta相对富集, Ba、Nb、Sr等元素相对亏损特征。稀土元素配分模式总体呈右倾型,轻重稀土分馏明显,轻稀土相对富集(112×10-6~245×10-6),重稀土相对亏损(26.7×10-6~53.3×10-6),Eu显示了负异常特征。上述地球化学特征指示其具有A2型花岗岩特征。推测其形成于拉张构造背景下,由变泥质沉积岩发生部分熔融形成的。  相似文献   
2.
The combination of inorganic (e.g., ferrite nanoparticles) and organic (e.g., conducting polymers) materials in the fabrication of heterojunctions or composites is an attractive scheme in the field of photocatalysis. We took the advantage of this phenomenon by fabricating MFerrite (M = Co, Ni, and Zn) @polypyrrole (MFerrite@Ppy) nanocomposites with a varying weight percentage of Ppy for the hydrogen production through photocatalytic water splitting under visible light irradiation. The structural, spectral, morphological, compositional, and optical features of the as-prepared nanocomposites were analyzed in full depth. The average crystallite sizes were estimated to be 30–40 nm from the XRD patterns which were further validated by TEM images from which a core-shell structure of the composites can be inferred. Likewise, the SEM images revealed spherical Ppy particles with a diameter in the range of 100–300 nm. From a photocatalytic viewpoint, CoFerrite@30Ppy is endowed with some peculiar characteristics including but not limited to strong light-harvesting ability (ranging between 300 and 650 nm), narrow optical band gap (as low as 1.6 eV), and higher photoluminescence (PL) lifetime (6.41 ns) which justify why it stands out among all composites in terms of photocatalysis. Under 8 h illumination of simulated visible light and using triethanolamine (TEOA) as a hole scavenger and Eosin-Y (EY) as a dye sensitizer, the photocatalytic hydrogen evolution (HER) amount for CoFerrite@30Ppy was found to be 10.44 mmol g?1, far greater than any other composite catalysts in this study. From the PL spectra, it can be pointed out that sensitization of CoFerrite with 30 wt % Ppy conduces to simultaneous deceleration of the electron-hole recombination process and acceleration of the transference of excitons within the system.  相似文献   
3.
The development of cost-effective bifunctional catalysts with excellent performance and good stability is of great significance for overall water splitting. In this work, NiFe layered double hydroxides (LDHs) nanosheets are prepared on nickel foam by hydrothermal method, and then Ni2P(O)–Fe2P(O)/CeOx nanosheets are in situ synthesized by electrodeposition and phosphating on NiFe LDHs. The obtained self-supporting Ni2P(O)–Fe2P(O)/CeOx exhibit excellent catalytic performances in alkaline solution due to more active sites and fast electron transport. When the current density is 10 mA cm?2, the overpotential of hydrogen evolution reaction and oxygen evolution reaction are 75 mV and 268 mV, respectively. In addition, driven by two Ni2P(O)–Fe2P(O)/CeOx electrodes, the alkaline battery can reach 1.45 V at 10 mA cm?2.  相似文献   
4.
Electrolysis of water for producing hydrogen instead of traditional fossil fuels is one of the most promising methods to alleviate environmental pollution and energy crisis. In this work, Fe and F ion co-doped Ni3S2 nanoarrays grown on Ni foam substrate were prepared by typical hydrothermal and sulfuration processes for the first time. Density functional theory (DFT) calculation demonstrate that the adsorption energy of the material to water is greatly enhanced due to the doping of F and Fe, which is conducive to the formation of intermediate species and the improvement of electrochemical performance of the electrode. The adsorption energy of anions (F and S) and cations (Fe and Ni) to water in each material was also calculated, and the results showed that F ion showed the most optimal adsorption energy of water, which proved that the doping of F and Fe was beneficial to improve the electrochemical performance of the electrode. It is worth noting that the surface of Fe–F–Ni3S2 material will undergo reconstruction during the process of water oxidation reaction and urea oxidation reaction, and amorphous oxides or hydroxides in situ would be formed on the surface of electrode, which are the real active species.  相似文献   
5.
It is extremely desirable to develop high hydrogen evolution activity and stable visible-light-driven photocatalysts. The sluggish oxidation process and holes accumulation are the main obstacles to high catalysis activity and photo-stability. An efficient γ-NiOOH/ZnCdS photocatalyst was prepared by in-situ hydrothermal method. The γ-NiOOH nanosheets distribute on ZnCdS nanospheres surface and accelerate holes transfer. The hydrogen evolution rate is up to 48.60 mmol g?1 h?1 under visible-light illumination (λ = 400–780 nm), about 10.8 times of pure ZnCdS (4.50 mmol g?1 h?1) and 1.8 times of general β-NiOOH modified ZnCdS (27.40 mmol g?1 h?1). And apparent quantum yield of γ-NiOOH/ZCS-100 is up to 18.23% (400 nm). The carrier lifetime extends from 5.50 ns (ZnCdS) to 6.10 ns (γ-NiOOH/ZCS), examined by steady photoluminescence and time-resolved photoluminescence. Moreover, the γ-NiOOH/ZCS photocatalyst has exhibited excellent photo-stability even after one-year of storage. The γ-NiOOH nanosheets can be an excellent co-catalyst on accelerating both holes transfer and oxidation process for high photo-stability and photo-activity.  相似文献   
6.
Highly-efficient and stable non-noble metal electrocatalysts for overcoming the sluggish kinetics of oxygen evolution reaction (OER) is urgent for water electrolysis. Biomass-derived biochar has been considered as promising carbon material because of its advantages such as low-cost, renewable, simple preparation, rich structure, and easy to obtain heteroatom by in-situ doping. Herein, Ni2P–Fe2P bimetallic phosphide spherical nanocages encapsulated in N/P-doped pine needles biochar is prepared via a simple two-step pyrolysis method. Benefiting from the maximum synergistic effects of bimetallic phosphide and biochar, high conductivity of biochar encapsulation, highly exposed active sites of Ni2P–Fe2P spherical nanocages, rapid mass transfer in porous channels with large specific surface area, and the promotion in adsorption of reaction intermediates by high-level heteroatom doping, the (Ni0.75Fe0.25)2P@NP/C demonstrates excellent OER activity with an overpotential of 250 mV and a Tafel slope of 48 mV/dec at 10 mA/cm2 in 1 M KOH. Also it exhibits a long-term durability in 10 h electrolysis and its activity even improves during the electrocatalytic process. The present work provides a favorable strategy for the inexpensive synthesis of biochar-based transition metal electrocatalysts toward OER, and improves the water electrolysis for hydrogen production.  相似文献   
7.
杨耀红  刘盈  代静 《资源与产业》2022,24(3):114-125
流域是由干流和多个、多级支流组成的相互影响的复杂系统,为了解决流域水污染和水生态环境问题,需要干流和支流各地区的共同治理。然而,现有的研究大多关注上下游水污染治理机制的研究,对于干流与多个支流间治污协作机制的研究较少,因此水污染协同治理机制很难在全流域实施。论文为系统性解决流域跨界水污染问题,形成覆盖整个流域的水污染治理机制,将上下游跨界水污染治理研究拓展到干流和两个支流,研究干流政府和两支流政府决策行为的变化规律和影响因素。基于演化博弈模型,通过构建三方政府博弈收益矩阵并求解复制动态方程,探讨补偿赔偿奖励融合机制下三方政府策略选择的演化稳定路径,并讨论了博弈均衡点策略演化的稳定条件。基于数值仿真分析了污染转移系数、干流政府对支流政府的奖励以及初始治污意愿等参数对三方策略选择的影响规律。研究结果表明:1)支流政府之间的主要影响因素是污染转移系数和初始治污意愿,某一支流污染转移系数越大,其他支流治理意愿越低,当污染转移系数超过某一临界值时,其他支流会选择不治理的策略,同时支流政府的初始治污意愿越高,其稳定于治理策略的速度越快,污染转移系数的临界值越大;2)干支流政府之间的主要影响因素是干流政府对支流政府的补偿和奖励以及支流政府对干流政府的生态赔偿,干流政府对支流政府额外治污减排的奖励越多,越能激励支流政府治污减排。研究结论可为干流和多个支流间形成生态补偿、赔偿和奖励机制以达到治污减排目标提供参考。  相似文献   
8.
Nickel selenide electrocatalysts for hydrogen evolution reaction (HER) with a high efficiency and a low-cost have a significant potential in the development of water splitting. However, the inferiority of the high overpotential and poor stability restricts their practical applications. Herein, a composite nanostructure consists of ultrasmall NiSe2 nanocrystals embedded on graphene by microwave reaction is reported. The prepared NiSe2/reduced graphite oxide (rGO) electrocatalyst exhibited a high HER activity with an overpotential of 158 mV at a current density of 10 mA/cm2 and a corresponding moderate Tafel slope of 56 mV/dec in alkaline electrolyte. In addition, a high retention of electrochemical properties (approximately 100%) was demonstrated with an unchangeable microstructure after 100 h of continuous operation.  相似文献   
9.
硫酸盐法制浆企业的碳排放及碳捕获与利用技术   总被引:2,自引:2,他引:0       下载免费PDF全文
本文首先介绍了硫酸盐浆厂生产纸浆过程中CO2的排放来源,进一步分析了“林浆一体化”企业的整体碳足迹,然后综述了温室气体排放核算方法,并介绍了硫酸盐浆厂的CO2捕获及利用技术研究进展,包括黑液中酸析木质素的生产、沉淀碳酸钙的生产、塔罗油的提取、木质素纳米颗粒的生产等。最后探讨了将硫酸盐浆厂与生物质精炼厂相结合以进一步降低碳排放的可能性。  相似文献   
10.
由于色谱分离需要耗费大量的时间,导致传统LC-MS研究中药成分的分析通量较低,而多级质谱全扫描(MS/MSALL)采用了气态分段技术(GPF),可以在直接注射(DI)模式下,采集每个表观质量数MS1信号的MS2图谱,实现MS1-MS2数据列表的高通量构建。为快速表征枸杞子化学成分组,本研究采用DI-MS/MSALL全面采集枸杞子提取物中各化学成分的多级质谱数据,根据高分辨MS1和MS2碎片离子信息推导质谱裂解途径,结合数据库检索以及相关文献,从枸杞子中初步鉴定了38个化学成分,包括1个氨基酸类、19个有机酸类、2个糖脂类、6个苯丙素类、1个黄酮类、6个生物碱类以及3个酰胺类化合物。DI-MS/MSALL可作为中药等复杂体系快速全面定性分析的有力工具。  相似文献   
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