Search Results - "Liang, Junmei"
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Improved conversion of stearic acid to diesel-like hydrocarbons by carbon nanotubes-supported CuCo catalysts
Published in Fuel processing technology (01-06-2019)“…In this study, a novel carbon nanotube (CNT)-supported CuCo catalyst was successfully synthesized by wet impregnation. Experimental and theoretical results on…”
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Response of Soil Bacterial Communities and Potato Productivity to Fertilizer Application in Farmlands in the Agropastoral Zone of Northern China
Published in Agronomy (Basel) (01-07-2024)“…The characteristics and responses of soil bacterial communities and potato productivity to different fertilization treatments in farmlands in the agropastoral…”
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Exogenous Organic Matter Improves Potato Yield by Regulating the Microbiological Fertility Index
Published in Agronomy (Basel) (01-03-2024)“…The nutrient availability of carbon (C), nitrogen (N), and phosphorus (P) has been decreasing due to a decline in the biological function of yellow soil,…”
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Crystalline phase engineering in WO3/g-C3N4 composites for improved photocatalytic performance under visible light
Published in Materials research express (01-06-2020)“…The photocatalytic performance of a semiconductor material is significantly related to its crystalline phase, thus, crystalline phase engineering is of…”
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Effective hydrodeoxygenation of palmitic acid to diesel-like hydrocarbons over MoO 2 /CNTs catalyst
Published in Chemical engineering science (01-10-2015)Get full text
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阴山北麓向日葵需水规律及水氮耦合效应研究
Published in Guanʻgai paishui xuebao (01-10-2023)“…【目的】明确向日葵需水规律,提高水氮耦合效应。【方法】采用田间小区试验,设定3个灌水量,分别为雨养W0、补灌W1(67.5 mm)和常规灌溉W2(135 mm),3个施氮水平,分别为N0(不施氮)、推荐施氮N1(135 kg/hm2)、过量施氮N2(270…”
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基于Richards模型研究不同水氮水平对向日葵干物质积累与产量的影响
Published in Guanʻgai paishui xuebao (01-07-2023)“…【目的】揭示灌水施氮对向日葵生长的调控作用和产量形成与干物质积累的定量关系。【方法】2021年在北方农牧交错带内蒙古阴山北麓武川旱作区以食用向日葵(龙葵27)为研究对象,采用裂区试验设计,主因素为3种灌溉模式:不灌雨养W0(覆膜种植,播后保苗水300 m3/hm2)、补水灌溉W1(覆膜种植,生育期总灌水量为900…”
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Boosting aqueous zinc-ion storage in MoS2 via controllable phase
Published in Chemical engineering journal (Lausanne, Switzerland : 1996) (01-06-2020)“…•The few-layered MoS2 nanosheets with different phase contents were prepared by an efficient controllable phase engineering.•The optimized material shows…”
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Photothermal enhanced enzymatic activity of lipase covalently immobilized on functionalized Ti3C2TX nanosheets
Published in Chemical engineering journal (Lausanne, Switzerland : 1996) (15-12-2019)“…•Lipase is covalently bonded onto the surface of Ti3C2TX nanosheets.•The immobilized lipase shows an enhanced activity after NIR light irradiation.•The…”
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Structural design of hexagonal/monoclinic WO3 phase junction for photocatalytic degradation
Published in Materials research bulletin (01-01-2020)“…Degradation activities of catalysts can be enhanced by building a hexagonal/monoclinic tungsten oxide (WO3) phase junction (h/m-WO3) on their surfaces. Through…”
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Preparation of Hollow Cobalt–Iron Phosphides Nanospheres by Controllable Atom Migration for Enhanced Water Oxidation and Splitting
Published in Small (Weinheim an der Bergstrasse, Germany) (01-04-2021)“…Transition metal phosphides (TMPs), especially the dual‐metal TMPs, are highly active non‐precious metal oxygen evolution reaction (OER) electrocatalysts…”
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Quasi zero-dimensional MoS2 quantum dots decorated 2D Ti3C2Tx MXene as advanced electrocatalysts for hydrogen evolution reaction
Published in International journal of hydrogen energy (01-03-2022)“…Developing advanced noble-metal-free electrocatalysts for the hydrogen evolution reaction (HER) is still a great challenge. Herein, a novel HER catalyst with…”
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Chemically-confined mesoporous γ-Fe2O3 nanospheres with Ti3C2Tx MXene via alkali treatment for enhanced lithium storage
Published in Journal of power sources (31-05-2021)“…Developing Fe2O3-based anode materials with high electrical conductivity and structure stability is crucial for high-performance lithium-ion batteries (LIBs)…”
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Effective hydrodeoxygenation of palmitic acid to diesel-like hydrocarbons over MoO2/CNTs catalyst
Published in Chemical engineering science (02-10-2015)“…The liquid-phase deoxygenation reaction of palmitic acid has been investigated in a batch reactor over carbon nanotubes (CNTs)-supported MoO2 and Pd catalysts…”
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Chemoselective hydrodeoxygenation of palmitic acid to diesel-like hydrocarbons over Ni/MoO2@Mo2CTx catalyst with extraordinary synergic effect
Published in Chemical engineering journal (Lausanne, Switzerland : 1996) (01-07-2020)“…An efficient strategy is proposed by engineering Ni-based catalyst (Ni/MoO2@Mo2CTx) with extraordinary catalytic performance in the HDO of palmitic acid. To…”
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Transition Metal/Metal Oxide Interface (Ni–Mo–O/Ni4Mo) Stabilized on N‑Doped Carbon Paper for Enhanced Hydrogen Evolution Reaction in Alkaline Conditions
Published in Industrial & engineering chemistry research (14-04-2021)“…Designing hydrogen evolution reaction catalysts with high performance in alkaline conditions is important for reducing energy consumption during water…”
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Co-liquefaction of microalgae and polypropylene in sub-/super-critical water
Published in RSC advances (2017)“…In the current study, Dunaliella tertiolecta ( D. tertiolecta ) and polypropylene (PP) were chosen to investigate the co-liquefaction process of microalgae and…”
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Interface Engineering to Improve the Rate Performance and Stability of the Mn-Cathode Electrode for Aqueous Zinc-Ion Batteries
Published in ACS applied materials & interfaces (01-06-2022)“…Aqueous zinc-ion batteries (ZIBs), especially the aqueous zinc–manganese batteries, have received considerable attention due to their low cost, safety, and…”
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Hydrodeoxygenation of Palmitic Acid with Novel Two-Dimensional Ti 3 C 2 T x MXene-Supported Ni Catalyst
Published in Industrial & engineering chemistry research (07-09-2022)Get full text
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Hydrodeoxygenation of Palmitic Acid with Novel Two-Dimensional Ti3C2T x MXene-Supported Ni Catalyst
Published in Industrial & engineering chemistry research (07-09-2022)“…Hydrodeoxygenation (HDO) of fatty acids to alkanes is key to convert renewable resources into biofuels. Here, we design a new Ti3C2T x MXene-confined Ni…”
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