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101.
分析了蒸汽相变凝并及水浴协同治理技术。A钢铁厂烧结一次混合机采用该技术改造后,工作环境明显改善,车间环境空气颗粒物质量浓度大幅降低,设备各项运行参数良好,排放质量浓度满足钢铁企业超低排放指标限值要求。  相似文献   
102.
Abnormal permeation behavior of hydrogen through niobium has been investigated in this paper, i.e. the permeation flux saturated with long-term decrease after reaching a maximum. The diffusivity and permeability have been deduced from the decay edge of permeation transient. Three kinds of polycrystalline niobium foils with different annealing temperature have been compared, to verify the effect of defects and grain properties on the permeability and diffusivity. In the temperature range of (773–1023) K, the heat treatment along with the permeation cycles could either reduce or increase the permeability and diffusivity depending sensitively on temperature and showing a temperature threshold around 950 K. The permeation flux is proportional to square root of pressure, revealing that the abnormal permeation was still bulk diffusion-limited. The diffusivity gradually decreased with permeation cycles, and became more and more sensitive to pressure. The niobium foil expanded macroscopically along the gradient of hydrogen concentration, which reveals the strong and unrecoverable lattice distortion in this temperature and pressure range. The X-ray diffraction studies showed that splitting of all the Nb peaks and shifting of Nb-D peaks along with hydrogen loadings. The phase transition was expected to eliminate the lattice strain during hydrogen loading and which in turn acted as a diffusion barrier.  相似文献   
103.
104.
The quest for a low-carbon energy transition has grown in recent years as concerns about the effects of climate change have grown. In this context, several governments around the world are concerned about hydrogen's possible role in a decarbonized energy system. As a result, this paper will provide a high-level overview of the hydrogen value chain, as well as an analysis of current and emerging trends in the global hydrogen market, particularly in the Middle East and North Africa (MENA), which are considered the cornerstone of the current global energy system traditional fossil fuel. Egypt, as a case study, could instruct other emerging countries in general, and natural gas suppliers in particular, how to maximize gains by switching from current imports to blue hydrogen made from natural gas. Policymakers who are responsible for Egypt's national hydrogen strategy should focus on global energy insights, international experience, and natural gas-sourced blue hydrogen as a step to renewables-sourced green hydrogen.  相似文献   
105.
The objective of this study was to evaluate the influence of pH on rheological and viscoelastic properties of solutions based on blends of type A (GeA) or type B (GeB) gelatin and chitosan (CH). Solutions of GeA, GeB, CH, GeA:CH, and GeB:CH were prepared in several pH (3.5–6.0) and analyzed for determination of zeta-potential. Rheological analyses (stationary and dynamic essays) were carried out with blends allowing to study the effect of pH on shear stress, apparent viscosity, loss (G”) and storage (G’) moduli, and angle phase (Tanδ). Zeta potential of all biopolymers decreased linearly as a function of pH. CH presented higher values, and GeB, the lowest one, being the only having negative values at pH > 5. Overall, the pH influenced the rheological and viscoelastic properties of the colloidal solutions: shear stress and apparent viscosity increased as a function of pH. Other assays were carried out at 3% and 5% strain, for GeA:CH and GeB:CH, respectively. In the sol domain, G’ and G” (1 Hz) increased linearly for GeA:CH. But for GeB:CH, they increased in two linear different regions: one function between pH 3.5 and 5.0 and another one between 5.0 and 6.0, being a more important effect was visible in this last domain probably due to the negative net charge of gelatin, above it pI. An effect in two domains was also visible for Tanδ, explained in the same manner as previously. The GeB:CH blends behaved like diluted solutions, and transition temperatures increased as a function of pH.  相似文献   
106.
Naringin (NAR), a major flavanone (FVA) glycoside, is a component of food mainly obtained from grapefruit. We used NAR as a food additive to improve the solubility and permeability of hydrophobic polyphenols used as supplements in the food industry. The spray-dried particles (SDPs) of NAR alone show an amorphous state with a glass transition temperature (Tg) at 93.2 °C. SDPs of hydrophobic polyphenols, such as flavone (FVO), quercetin (QCT), naringenin (NRG), and resveratrol (RVT) were prepared by adding varying amounts of NAR. All SDPs of hydrophobic polyphenols with added NAR were in an amorphous state with a single Tg, but SDPs of hydrophobic polyphenols without added NAR showed diffraction peaks derived from each crystal. The SDPs with NAR could keep an amorphous state after storage at a high humidity condition for one month, except for SDPs of RVT/NAR. SDPs with NAR enhanced the solubility of hydrophobic polyphenols, especially NRG solubility, which was enhanced more than 9 times compared to NRG crystal. The enhanced solubility resulted in the increased membrane permeability of NRG. The antioxidant effect of the hydrophobic NRG was also enhanced by the synergetic effect of NAR. The findings demonstrated that NAR could be used as a food additive to enhance the solubility and membrane permeability of hydrophobic polyphenols.  相似文献   
107.
The tumor microenvironment (TME) plays a key role in the poor prognosis of many cancers. However, there is a knowledge gap concerning how multicellular communication among the critical players within the TME contributes to such poor outcomes. Using epithelial ovarian cancer (EOC) as a model, we show how crosstalk among cancer cells (CC), cancer associated fibroblasts (CAF), and endothelial cells (EC) promotes EOC growth. We demonstrate here that co-culturing CC with CAF and EC promotes CC proliferation, migration, and invasion in vitro and that co-implantation of the three cell types facilitates tumor growth in vivo. We further demonstrate that disruption of this multicellular crosstalk using gold nanoparticles (GNP) inhibits these pro-tumorigenic phenotypes in vitro as well as tumor growth in vivo. Mechanistically, GNP treatment reduces expression of several tumor-promoting cytokines and growth factors, resulting in inhibition of MAPK and PI3K-AKT activation and epithelial-mesenchymal transition - three key oncogenic signaling pathways responsible for the aggressiveness of EOC. The current work highlights the importance of multicellular crosstalk within the TME and its role for the aggressive nature of EOC, and demonstrates the disruption of these multicellular communications by self-therapeutic GNP, thus providing new avenues to interrogate the crosstalk and identify key perpetrators responsible for poor prognosis of this intractable malignancy.  相似文献   
108.
When planning large-scale 100% renewable energy systems (RES) for the year 2050, the system capacity is usually oversized for better supply-demand matching of electrical energy since solar and wind resources are highly intermittent. This causes excessive excess energy that is typically dissipated, curtailed, or sold directly. The public literature shows a lack of studies on the feasibility of using this excess for country-scale co-generation. This study presents the first investigation of utilizing this excess to generate green hydrogen gas. The concept is demonstrated for Jordan using three solar photovoltaic (PV), wind, and hybrid PV-wind RESs, all equipped with Lithium-Ion battery energy storage systems (ESSs), for hydrogen production using a polymer electrolyte membrane (PEM) system. The results show that the PV-based system has the highest demand-supply fraction (>99%). However, the wind-based system is more favorable economically, with installed RES, ESS, and PEM capacities of only 23.88 GW, 2542 GWh, and 20.66 GW. It also shows the highest hydrogen annual production rate (172.1 × 103 tons) and the lowest hydrogen cost (1.082 USD/kg). The three systems were a better option than selling excess energy directly, where they ensure annual incomes up to 2.68 billion USD while having payback periods of as low as 1.78 years. Furthermore, the hydrogen cost does not exceed 2.03 USD/kg, which is significantly lower than the expected cost of hydrogen (3 USD/kg) produced using energy from fossil fuel-based systems in 2050.  相似文献   
109.
地应力与岩体红外辐射现象理论初探   总被引:12,自引:0,他引:12  
陈健民 《煤炭学报》1995,20(3):256-259
针对发生在井上、下与地应力有关的大量低温红外辐射现象,提出了电弧理论、流动电位理论、压电效应理论等宏观解释。把地应力加速积累过程中产生的各种效应作为激发能量源,提出了岩体矿物中“原子振动能量子”跃迁机理。这项理论研究的重要意义在于,对岩爆、地震、远期气象预报是十分有价值的红外信息。  相似文献   
110.
对 Si 掺杂和 Zn 掺杂 p 型 GaAs 液相外延材料进行光致发光研究。用发射波长为510.6 nm 和578.2 nm 的溴化亚铜激光器为激发光源,样品的低温由氦循环致冷机提供,样品室温度在10~300K 中可调。在所选取的狭缝宽度下谱仪的分辨率大致为2 nm,所提供的数据全部经过系统灵敏度校正并进行分峰拟合。对 Si 掺杂 p 型 GaAs 样品 PL 谱中一些主要特征进行讨论,认为A_1,A_2,A_3三个发射带分别对应着导带“尾”态中电子向价带和两个浅受主能级的跃迁,它们随温度变化的情况,和带隙宽度及电子填充状态随温度变化有关。此外,我们还观察了掺 Zn 的 p 型 GaAs 样品的 PL 谱,与掺 Si 样品比较,具有明显不同的特征,谱线在长波端(~950 nm)的上扬趋势表明在低能区域可能存在一个与深能级复合有关的宽发射带。  相似文献   
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