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29篇 您的检索式:作者名="Shuyong Zhang"
    题名 作者 年代 出处 被引量
1Ni-Co/Mg-Al catalyst derived from hydrotalcite-like compound prepared by plasma for dry reforming of methane显示文摘Ni-Co bimetallic catalysts with different Ni/Co content were derived from cold plasma jet decomposition and reduction of hydrotalcite-like compounds containing Ni,Co,Mg and Al,and their catalytic performance was investigated with dry reforming of methane.Experimental results showed that the hydrotalcite-like precursors could be completely decomposed and partly reduced by cold plasma jet,and the Nicontained catalysts exhibited much higher activity than the catalyst without Ni.Especially,the catalyst with Ni/Co ratio of 8/2 achieved not only the highest conversions of 80.3%and 69.3%for CH4 and CO2,respectively,but also the best stability in 100 h testing.The catalysts were characterized by XRD,XPS,TEM and N2 adsorption techniques,and the results showed that the better performance of the 8Ni2Co bimetallic catalyst was attributed to its higher metal dispersion,smaller metal particle size,as well as the interaction effect between Ni and Co,which were brought by the special catalyst preparation method.Huali Long Yan Xu Xiaoqing Zhang Shijing Hu Shuyong Shang Yongxiang Yin Xiaoyan Dai 2013Journal of Energy Chemistry2013,22,5:8
2Effects of drought stress on the photosynthetic physiological parameters of Populus 3 euramericana ‘‘Neva''显示文摘Populus 9 euramericana ‘‘Neva'' is the main poplar species in China, where drought stress is becoming extremely urgent. We carried out this research to study the effects of drought stress on the photosynthesis of Populus 9 euramericana ‘‘Neva''. Drought stress was induced by 58–62%(light), 48–52%(moderate), and 38–42%(severe) relative soil moisture content(RSMC). The effects of drought stress on photosynthetic rate, chlorophyll fluorescence parameters, and other related physiological parameters were investigated during treatment. Net photosynthetic rate(PN), and stomatal conductance decreased significantly and intercellular CO_2 concentration initially increased and then declined, whereas the stomatal limitation factors showed opposite trends in the light under moderate drought stress. Photosystem II(PSII) maximum photochemical efficiency, actual photochemical efficiency,and photochemical quenching decreased gradually under drought stress, whereas nonphotochemical quenching initially increased and then declined. Superoxide dismutase,peroxidase, and catalase activities initially increased and then decreased as RSMC was reduced, whereas malondialdehyde(MDA) content and relative electric conductivity(REC) increased gradually. These results suggest that stomatal factors accounted for the decline in PNunder light and moderate drought stress, whereas leaf PNdecreased mainly due to non-stomatal factors under severe drought stress. PSII was damaged; thus, photosynthetic electron transfer was restricted, indicating that heat dissipation is important for the light protection mechanism of plants.Antioxidant enzymes increased at the beginning of treatment, and the increased MDA and REC led to cell membrane damage. These results suggest that poplar seedlings stabilized their photosynthetic apparatus by reducing the light trapping ability under light and moderate drought stress conditions. This helped dissipate heat and enhance antioxidant enzyme activity. Stomatal factors accounted for the decline in P_N, whereas damage to PSII and antioxidant enzymes under severe drought stress suggested that the decline in P_N was caused by non-stomatal restrictive factors.Guoting Liang Jianwen Bu Shuyong Zhang Guo Jing Guangcan Zhang Xia Liu 2019Journal of Forestry Research2019,30,2:3
3Thermal evolution effects on the properties of converting Cs-polluted soil into pollucite-base glass-ceramics for radioactive cesium immobilization显示文摘The Fukushima nuclear accident in Japan on March 11,2011,produced large amounts of Cs-polluted soil which must be controlled to prevent the spread of hazardous Cs into the environment.In this paper,the effects of heat treatment on the structure and properties of Cs-containing glass-ceramics,as a simulated nuclear waste form,were systematically investigated.Cesium atoms are chemically bonded in the pollucite structure,and the amorphous phase further encapsulates the pollucite crystals in the glassceramics,thus providing an extra protective layer for the immobilized Cs.XRD analysis,Raman and FT-IR studies on the glass-ceramics synergistically indicated that the optimum crystallization temperature for pollucite is around 1000℃.The pollucite is predominantly the main crystalline phase with a narrow crystal size distribution between 0.5 and 2 mm.Standard leaching test results show that the leaching rate of Cs was very low(3.0×10^(-3) g/(m^(2)·d)).The study offers a practical method for immobilizing Cs in pollucite-base glass-ceramics.Moreover,the experimentally obtained data may provide some important references for converting Cs-polluted soil into pollucite-base glass-ceramics waste form.Yong Yang Xin Cao Lifen Shi Zhengyi Zhang Pingping Wang Jinwei Li Yangshan Sun Shuyong Chen Tianhe Wang Liyun Ma Shou Peng 2021Journal of Materiomics2021,7,6:2
4Stannous oxalate: An efficient catalyst for poly(trimethylene terephthalate) synthesis显示文摘A complete study on the catalytic activity of stannous oxalate for poly(trimethylene terephthalate) (PTT) synthesis via esterification method is carried out by comparison to the well known catalysts (tetrabutyl titanate (TBT), dibutyltin oxide (Bu2SnO), and stannous octoate (SOC)). Their catalytic activity in the esterification process is monitored by measuring the amount of water generated, while intrinsic viscosity (IV) and content of terminal carboxyl groups (CTCG) are used as the index in the polycondensation process. Stannous oxalate shows higher activity than the other catalysts. Decrease in reaction time and improvements in PTT property are observed. The higher catalytic activity of stannous oxalate is attributed to its chelate molecular structure.JIA ShuYong REN YuRong ZHANG Dan HU Jing ZENG Yi WANG GongYing 2008Science China Chemistry2008,51,3:2
5The effects of phenolic acid on nitrogen metabolism in Populus 3 euramericana ‘Neva’显示文摘The declines in soil fertility and productivity in continuously cropped poplar plantations are related to phenolic acid accumulation in the soil.Nitrogen is a vital life element for poplar and whether the accumulation of phenolic acid could influence nitrogen metabolism in poplar and thereby hinder continuous cropping is not clear.In this study, poplar cuttings of Populus × euramericana‘Neva’ were potted in vermiculite, and phenolic acids at three concentrations(0 X, 0.5 X and 1.0 X) were added according to the actual content(1.0 X) in the soil of a second-generation poplar plantation.Each treatment had eight replicates.We measured gas exchange parameters and the activities of key enzymes related to nitrogen metabolism in the leaves.Leaf photosynthetic parameters varied with the concentration of phenolic acids.The net photosynthetic rate(P_N) significantly decreased with increasing phenolic acid concentration, and non-stomatal factors might have been the primary limitation for P_N.The activities of nitrate reductase(NR), glutamine synthetase(GS) and glutamate synthase(GOGAT), as well as the contents of nitrate nitrogen, ammonium nitrogen, and total nitrogen in the leaves decreased with increasing phenolic acid concentration.This was significantly and positively related to P_N(P<0.05).The low concentration of phenolic acids mainly affected the transformation process of NO_3^- to NO_2^-, while the high concentration of phenolic acids affected both processes, where NO_3^- was transferred to NO_2^- and NH_4^+ was transferred to glutamine(Gln).Overall, phenolic acid had significant inhibitory effects on the photosynthetic productivity of Populus × euramericana‘Neva’.This was probably due to its influence on the activities of nitrogen assimilation enzymes, which reduced the amount of amino acids that were translated into protein and enzymes.Improving the absorption and utilization of nitrogen by plants could help to overcome the problems caused by continuous cropping.Hui Li Huicheng Xie Zilong Du Xianshuang Xing Jie Zhao Jing Guo Xia Liu Shuyong Zhang 2018Journal of Forestry Research2018,29,4:2
6A recommended rate for application of Chaetomium globosum ND35 fungus fertilizer on poplar plantations in China显示文摘Previous studies showed that Chaetomium globosum ND35 fungus fertilizer can improve the microbial community structure and enzyme activities of replanted soil.However, it remains unclear whether can improve the physiological and ecological characteristics of plants under successive rotation.In this study, we investigated the photosynthetic, physiological, and biochemical indexes including photosynthetic parameters, chlorophyll fluorescence, and chlorophyll content of 1-year-old poplar seedlings under seven different doses(range from 0 to1.67 g kg^(-1)) of C.globosum ND35 fungus fertilizer to study the effects of fungus fertilizer on photosynthesis of Poplar.Our results showed that:(1) With increasing application of fungus fertilizer in replanted soil, chlorophyll content of poplar leaves(Chl) increased, while physiological indexes such as electron transport rate(ETR),net photosynthetic rate(P_n), quantum efficiency(U),nitrate reductase(NR) activity and root vigor initially increased and then declined.Meanwhile, heat dissipation that depended on the xanthophyll cycle declined and nonphotochemical quenching(NPQ) initially increased and then decreased.When the dose of C.globosum ND35 fungus fertilizer was 0.67 g kg^(-1)(T3) and 1.00 g kg^(-1)(T4), excess light energy of photosynthetic apparatus was reduced, and photosynthetic apparatus distributed more light energy to the direction of photochemical reactions,which improved the efficiency of energy use.Plant height and biomass of leaves, stems, and roots were maximum at T3.We conclude that applying appropriate amounts of C.globosum ND35 fungus fertilizer can improve root physiological activity and capacity for use of light by poplar leaves.This can improve the operating states of the photosynthetic apparatus and lead to increased photosynthetic efficiency of poplar leaves and accumulation of dry matter.This suggests a strategy to alleviate the successive rotation obstacle of soil nutrient depletion.Xuanxuan Xia Kexiang Gao Xianshuang Xing Rui Yang Shuyong Zhang Zilong Du Jing Guo Xia Liu 2018Journal of Forestry Research2018,29,4:2
7The electrochemical behavior of PbSO 4 with different structures on Pb显示文摘Yonglang Guo Lin Niu Shuyong Zhang Shenhao Chen 2000Journal of Power Sources2000,,1:1
8Effect of compound Guizhu capsule on phosphate and tension homology deleted on chromsome ten and murine double mimute 2 gene expression in lung cancer of mice显示文摘OBJECTIVE: To observe the inhibitory effect of the Chinese herbal compound Guizhu capsule(CGZC)on lung cancer and explore the possible mechanism underlying its actions by evaluating its effects on the expression of phosphate and tension homology deleted on chromsome ten(PTEN) and murine double mimute 2(MDM2) in lung cancer model mice.METHODS: A mouse model of transplanted lung cancer was established by subcutaneous inoculation of cancer cells into the axillae of mice. Twenty-four hours later, the mice were weighed and randomly divided into the model control group, cisplatin group(DDP group), and high, moderate and low dosage CGZC groups, with ten mice in each group. The control mice received an equal volume of distilled water. DDP was intraperitoneally injected at 1 mg/kg in the DDP group, once a day for 3days. CGZC diluted with distilled water was admin-istered at 20 g/kg(10 times the clinical adult dosage) in the high-dose group, 10 g/kg(5 times the clinical adult dosage) in the moderate-dose group and 5 g/kg(2.5 times the clinical adult dosage) in the low-dose group once a day for 10 days. On the11 th day, the mice were weighed and killed. The tumor tissues were weighed and the tumor inhibition rate was calculated. PTEN and MDM2 protein expression were detected by immunohistochemical analysis of tumor tissues.RESULTS: The CGZC high-and moderate-dose groups showed a significant inhibitory effect on tumor growth(P < 0.05); there was no significant difference between the high dose group and the DDP group(P > 0.05). The CGZC high-dose group also showed enhanced expression of PTEN protein(P <0.01) and decreased expression of MDM2 protein(P < 0.01) in lung cancer cells of the mice. There was no significant difference between the high dose group and the DDP group.CONCLUSION: CGZC has a significant inhibitory effect on transplanted lung cancer in mice. The mechanism may involve reducing expression of PTEN and decreasing the expression of MDM2 in the lung cancer tissues of the mice.Cao Yong Zhang Shuyong Zhang Ge Zhang Na Zhang Lixia Huang Yuanliang Yuan Naijun Tang Xiaojuan Du Jiajin Fang Jiuyun 2017Journal of Traditional Chinese Medicine2017,37,4:1
9Effects of pulse flow and leading edge sweep on mixed flow turbines for engine exhaust heat recovery显示文摘Recovery of heat energy from internal combustion engine exhaust will achieve significant road transportation CO2 reduction. Turbocharging and turbogenerating are most commonly used technologies to recover engine exhaust heat energy.Engine exhaust pulse flow can significantly affect the turbine performance of turbocharging and turbogenerating systems,and it is necessary to consider the pulse flow effects in turbine design and performance analysis.An investigation was carried out by numerical simulation on the mixed flow turbine pulse flow performance and flow fields.Results showed that the variations of the turbine efficiency and flowfiled under pulsating flow conditions demonstrate significant unsteady effects.The effect of blade leading edge sweep on turbine pulse flow performance was studied.It is shown that increasing of the leading edge sweep angle can improve the turbine average instantaneous efficiency by about 2 percent under pulsating flow conditions.ZHANG YangJun CHEN Li ZHUGE WeiLin ZHANG ShuYong 2011Science China(Technological Sciences)2011,54,2:1
10Deformation mechanism of NiTi shape memory alloy subjected to severe plastic deformation at low temperature显示文摘Yanqiu Zhang Shuyong Jiang Li Hu Yulong Liang 2013Materials Science & Engineering A2013,,:1
11Comparison of chromium nitride coatings deposited by DC and RF magnetron sputtering显示文摘Shuyong Tan Xuhai Zhang Xiangjun Wu Feng Fang Jianqing Jiang 2010Thin Solid Films2010,,7:1
12Cu(II) complexation of high molecular weight (HMW) fluorescent substances in root exudates from a wetland halophyte ( Salicornia europaea L.)显示文摘Xiangliang Pan Jianying Yang Daoyong Zhang Xi Chen Shuyong Mu 2010Journal of Bioscience and Bioengineering2010,,2:1
13Study on Soil Moisture Distributing Characteristics of Artificial Forest in Mountainous Region显示文摘Physical characteristics of soil structure and soil moisture of five kinds of artificial forests were researched in Shengquan Temple Forestry Farm, in the southern mountainous area of Jinan City, in order to offer scientific management and nurture of forest vegetation in mountainous area of North China. Results indicated that: (1) In these artificial forests researched, some indexes expressing soil pedonydrological physical character, such as soil density, porosity, infiltration rate, were much better than those in bare land, and these indexes showed this order: mixed forest > pure forest, Kalopanax pictus > Koelreuteria paniculata > Pistacia chinensis. (2) In dry and rainy seasons, with the increasing of soil depth, soil water content decreased in most parts of forest, and their extent of change was less than those in bare land. (3) With the increasing of soil depth, soil saturated water content decreased in all kinds of forests. Water storing capacity of surface soil layer was the best in the mixed forest, while differences were little in other forest. Water storing and adjusting capacity was good in the mixed forest, while water offering capacity had little discrepancy in all forests. Conclusions show that judging from water conservation and water use efficiency, mixed forest is better than pure forest, and in pure forest K. pictus is better than K. paniculata. Therefore, it is proposed that in the future, mixed forest should be fostered and managed firstly, the species being made up of K. pictus and P. chinensis. In the pure forest, K. pictus is much better than others. Nowadays K. paniculata, and P. chinensis, especially their soil surface vegetation and litter, should be protected. As to poor forest, closing hill for afforestation should be adopted. Poor forest have better be reconstructed to be mixed forest in available conditions.XIA Jiangbao ZHANG Guangcan ZHANG Shuyong WANG Guixia HAN Wei 2005Chinese Forestry Science and Technology2005,4,4:1
14Effect of Substrate Biaa and Temperature on Magnetron Sputtered CrSiN Films显示文摘Tan Shuyong Zhang Xuhai Wu Xiangjun 0,,:1
15Resistin and insulin resistance in hepatocytes: Resistin disturbs glycogen metabolism at the protein level显示文摘Yang Yang Meifang Xiao Yiqing Mao Hui Li Shuyong Zhao Yi Gu Rong Wang Jianqiang Yu Xuemei Zhang David M. Irwin Gang Niu Huanran Tan 2008Biomedicine & Pharmacotherapy2008,,5:1
16Fractal features and infiltration characteristics of the soil from different land uses in a small watershed in a rocky,mountainous area in Shandong Province显示文摘We studied infiltration and fractal mechanisms on sloping farmlands in a small watershed in Shandong Province in the rocky mountain areas of northern China.We studied soil fraction and soil water retention curves,and developed a soil infiltration model to analyze its quantitative relationship with soil particle size and pore dimensions under four types of land use,including sloping farmland,abandoned land,natural forest,and forest plantation(Malus pumila,Crataegus pinnatifida).Soil stability infiltration rate ranked as sloping farmland>abandoned land>natural forest>forest plantation.The sequence of soil particle size and pore dimension ranked as natural forest>forest plantation>abandoned land>sloping farmland.There were significant positive correlations between soil particle size and pore dimension,and both were positively correlated with the percent volume of silt and clay.They were negatively correlated with soil infiltration rate.The Horton model and the power function model were more suitable for simulating soil infiltration and the infiltration rate.We concluded that the soil in this area displayed typical fragments of rocky mountainous regions due to the loss of silt and clay caused by cultivation on sloping farmland.The uniformity and fractal dimensions of soil particle sizes and pore distribution decreased,thereby enhancing soil infiltration capacity and decreasing soil water retention capacity.Lei Wang Rui Yang Shuyong Zhang Guangcan Zhang Xia Liu 2020Journal of Forestry Research2020,31,3:1
17Critical responses of photosynthetic efficiency of Goldspur apple tree to soil water variation in semiarid loess hilly area显示文摘Zhang Shuyong Zhang Guangcan Gu Siyu 2010Photosynthetica2010,48,4:1
18Isothermal precision forging of complex-shape rotating disk of aluminum alloy based on processing map and digitized technology显示文摘Yanqiu Zhang Shuyong Jiang Yanan Zhao Debin Shan 2013Materials Science & Engineering A2013,,:1
19Transcriptome and degradome sequencing reveals changes in Populus×euramericana‘Neva’caused by its allelopathic response to p-hydroxybenzoic acid显示文摘Plant species produce different types of allelopathic chemicals in nature;however,little is known about the differential regulation of plant allelopathy.Because allelopathy caused by p-hydroxybenzoic acid(pHBA)is one of the main obstacles to continuous cropping of Populus×euramericana ‘Neva’,we examined gene expression dynamics in Neva leaves induced by pHBA.The expression of genes related to photosynthesis and respiration changed,while mRNA involved in regulating gene expression during allelopathy was degraded.Some miRNAs that are involved in plant allelopathy target crucial genes for regulating reactive oxygen species.Moreover,coexpression regulatory networks were constructed based on profiles of the identified miRNA-target interactions and the differentially expressed miRNA-target pairs.These findings provide a mechanistic framework for understanding allelopathy in plants.Guoting Liang Jing Guo Shuyong Zhang Guangcan Zhang 2021Journal of Forestry Research2021,32,5:0
20Research progress and developing trends on microorganisms of Xinjiang specific environments显示文摘Microorganisms and its metabolic types are diverse in Xinjiang because of those extreme/special environments of drought, high or low temperature, saline and alkaline, oligotrophy. This article reviewed the research progress and achievements of various microbial resources (bacteria, fungi and actinomycete) in the special environments from the point of its ecology, development and application. Meanwhile, the development trend, protection and sustainable utilization of the microorganism resources were discussed.Pan, HuiXia Cheng, ZhengMing Zhang, YuanMing Mu, ShuYong Qi, XiaoLing 2010Journal of Arid Land2010,2,1:0
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