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1.
为解决魏家地煤矿工作面煤层透气性系数低,采空区瓦斯治理难的安全生产问题,以该矿北1103工作面为工程背景,采用数值模拟和现场实践等方法,对地面钻孔瓦斯抽采后,采空区自燃“三带”的变化规律进行了分析研究,并给出了相关自然发火对应防治措施。结果表明,北1103工作面经地面钻孔抽采瓦斯后,采空区散热带宽度由56 m增加至61 m;氧化带宽度由29 m增加至39 m;窒息带宽度由315 m减少至300 m。本次研究有效解决了北1103采空区瓦斯涌出量大与自然发火隐患问题。研究结果适用于魏家地煤矿采取综合立体瓦斯抽采治理模式的工作面,极大地保护了工作面安全回采,对落实矿井的安全高效生产及经济价值效益具有良好的工程示范意义。 相似文献
2.
《Advanced Powder Technology》2022,33(9):103722
Through a facile hydrothermal method, we have successfully prepared Ti3C2/Bi2.15WO6 (TC/BWO) composite, and systematically investigated their reactivity for the photocatalytic reduction of Cr(VI) under visible light. X-ray diffraction and Raman analysis confirm the formation of heterostructure between Bi2.15WO6 and Ti3C2. The resultant 7TC/BWO composite exhibits enhanced photoactivity toward Cr(VI) reduction. After 120 min irradiation, the conversion of Cr(VI) reaches 92.5% with the quasi-first-order kinetic constant of k = 0.0145 min?1, which is higher than that of pure BWO (30% and k = 0.0005 min?1). The electrochemical and photoluminescent characterization confirm that the introduction of Ti3C2 is conducive to the separation of carriers, thus significantly improves the photocatalytic performance of TC/BWO. Furthermore, the radical capture experiments verify that the electrons are important for enhancing reduction of Cr(VI) to Cr(III). As a result, this research provides a comprehensive understanding of the reduction of Cr(VI) by TC/BWO composite under visible light. 相似文献
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静压气悬浮轴的悬浮技术,是利用多孔质材料做成的轴承,对高压气体节流降压,在轴承和轴之间形成一层薄的气膜,使轴悬浮,实现轴的无接触式工作,从而达到降低摩擦提高工作效率的目的。本论文基于的50冷吨的气悬浮离心制冷机组,名义工况的制冷量为170 kW,制冷能效5.6,IPLV值7.3,通过对该系统及测试数据进行分析,用理论计算制热量和实测制热量之间的差值,得出从100%负荷到25%负荷工况,悬浮轴的供气量的流量,大约在6 g/s~9 g/s,占系统制冷剂循环量的0.82%~2.2%。 相似文献
5.
《International Journal of Hydrogen Energy》2022,47(85):36216-36231
The fuel cell/battery durability and hybrid system stability are major considerations for the power management of fuel cell hybrid electric bus (FCHEB) operating on complicated driving conditions. In this paper, a real time nonlinear adaptive control (NAC) with stability analyze is formulated for power management of FCHEB. Firstly, the mathematical model of hybrid power system is analyzed, which is established for control-oriented design. Furthermore, the NAC-based strategy with quadratic Lyapunov function is set up to guarantee the stability of closed-loop power system, and the power split between fuel cell and battery is controlled with the durability consideration. Finally, two real-time power management strategies, state machine control (SMC) and fuzzy logic control (FLC), are implemented to evaluate the performance of NAC-based strategy, and the simulation results suggest that the guaranteed stability of NAC-based strategy can efficiently prolong fuel cell/battery lifespan and provide better fuel consumption economy for FCHEB. 相似文献
6.
《International Journal of Hydrogen Energy》2022,47(63):27279-27292
This study assesses a sustainable solution to greenhouse gases (GHGs) mitigation using constructed wetland-microbial fuel cells (CW-MFC). Roots of wetland plant Acorus Calamus L. are placed in biological anode to better enable anode microorganisms to obtain rhizosphere secretion for power improvement. Three selected cathode materials have a large difference in GHG emissions, and among them, carbon fiber felt (CFF) shows the lowest emissions of methane and nitrous oxide, which are 0.77 ± 0.04 mg/(m2·h) and 130.78 ± 13.08 μg/(m2·h), respectively. The CFF CW-MFC achieves the maximum power density of 2.99 W/m3. As the influent pH value is adjusted from acidic to alkaline, the GHGs emissions are reduced. The addition of Ni inhibits GHGs emission but decreases the electricity, the power density is reduced to 1.09 W/m3, and the methane and nitrous oxide emission fluxes decline to 0.20 ± 0.04 mg/(m2·h) and 15.49 ± 1.86 μg/(m2·h), respectively. Low C/N ratio reduces methane emission, while high C/N ratio effectively inhibits nitrous oxide emission. At the influent pH 8 and C/N = 5:1, the methane emission flux is approximately 10.60 ± 0.27 mg/(m2·h), and the nitrous oxide emission flux is only 10.90 ± 1.10 μg/(m2·h). Based on the above experimental results by controlling variable factors, it is proposed that CW-MFC offers an environment-friendly solution to regulate GHG emissions. 相似文献
7.
《International Journal of Hydrogen Energy》2022,47(67):28782-28793
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
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不同进气氛围耦合废气再循环对双燃料发动机工作过程的影响 总被引:1,自引:1,他引:0
基于正庚烷、甲烷、乙烷、丙烷多组分混合物简化动力学机理耦合三维计算流体力学(computational fluid dynamics,CFD)数值模型,模拟研究高替代率时不同进气氛围(H2、O2组分)耦合废气再循环(exhaust gas recirculation,EGR)对天然气/柴油双燃料发动机低负荷工作过程的影响机理。研究表明:在不同EGR率下,进气掺氢会使缸内燃烧速率显著加快,OH活性基浓度明显升高,CH4排放显著降低,但CO排放升高;进气掺氧后,缸压及瞬时放热率峰值、最大压力升高率、最高燃烧温度及OH活性基浓度均升高,碳烟、CO和CH4后期氧化作用增强使其最终排放降低,但NOx排放升高。在EGR率小于29%,掺氢比小于2.5%时,在实现较低CO、碳烟排放的同时能显著降低CH4排放和NO2/NOx比例;高EGR率时,进气掺氧能降低CO、碳烟排放,并改善CH4与NOx 相似文献
10.
为解决现有瓦斯抽采钻孔封孔工艺的封孔效果较差、导致瓦斯抽放效果不佳的问题,研究提出了新的瓦斯抽采钻孔密封关键工艺,在胡底煤业13091巷进行了瓦斯抽采现场试验。试验结果显示,应用该工艺后瓦斯抽采浓度、瓦斯抽采量均有大幅提高,取得了显著的瓦斯抽采效果和经济社会效益。 相似文献