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Dynamic Changes of Tobacco-growing Soil Nutrients and Enzymes After Application of Amelioration Materials 被引量:1
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作者 Zhanghong CAO Gexuan SU +8 位作者 Yongjun LIU Shuguang PENG Yongsheng DENG Jin CHEN Deyuan PENG zhenghua wang Jingjing WU Qianping YAN Xiaohua DENG 《Agricultural Biotechnology》 CAS 2020年第4期87-91,共5页
[Objectives]This study was conducted to clarify the improvement effects of different soil amelioration materials such as lime,green manure and bio-organic fertilizer on acidic tobacco-planting soil.[Methods]The dynami... [Objectives]This study was conducted to clarify the improvement effects of different soil amelioration materials such as lime,green manure and bio-organic fertilizer on acidic tobacco-planting soil.[Methods]The dynamic changes of soil pH,soil nutrients and enzyme activity were studied by applying lime,lime+green fertilizer,and lime+green fertilizer+biological organic fertilizer.[Results]①After the application of amelioration materials,the soil pH and available phosphorus content of tobacco-growing soil showed a stepwise change of first increasing and then decreasing,and became stable at 60 d after tobacco transplanting;the soil organic matter,alkali-hydrolyzable nitrogen and available potassium content showed a gradual change trend of"high-low-high";and the soil invertase and urease activity showed a gradual change trend of"low-high-low".②To 90 d after tobacco transplanting,the application of amelioration materials increased soil pH by 1.29-1.62 units,and increased organic matter content by 15.21%-20.86%,alkali-hydrolyzable nitrogen content by 6.83%-18.17%,available phosphorus content by 54.15%-217.85%,rapidly available potassium content by 11.42%-30.86%,soil invertase activity by 70.09%-18.93%,and soil urease activity by 64.07%-130.47%.③The combination of lime+green manure+alkaline microbial organic fertilizer had the best effect on the improvement of acidic tobacco-growing soil,and the effect of lime+green manure+acid microbial organic fertilizer on acidic soil was the second.[Conclusions]When applying lime,green fertilizer and alkaline bio-organic fertilizer should be applied to achieve sustainable improvement of strongly acidic soil. 展开更多
关键词 Amelioration materials Soil pH Main nutrients of tobacco-growing soil Soil enzymes
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The effect of NiO-Ni_(3)N interfaces in in-situ formed heterostructure ultrafine nanoparticles on enhanced polysulfide regulation in lithium-sulfur batteries
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作者 Jun Pu zhenghua wang +3 位作者 Pan Xue Kaiping Zhu Jiachen Li Yagang Yao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第5期762-770,共9页
Inhibiting the “shuttle effect” of soluble polysulfides and improving reaction kinetics are the key factors necessary for further exploration of high-performance Li-S batteries. Herein, an effective interface engine... Inhibiting the “shuttle effect” of soluble polysulfides and improving reaction kinetics are the key factors necessary for further exploration of high-performance Li-S batteries. Herein, an effective interface engineering strategy is reported, wherein nitriding of an Ni-based precursor is controlled to enhance Li-S cell regulation. The resulting in-situ formed NiO-Ni_(3)N heterostructure interface not only has a stronger polysulfide adsorption effect than that of monomeric NiO or Ni_(3)N but also has a faster Li ion diffusion ability than a simple physical mixture. More importantly, this approach couples the respective advantages of NiO and Ni_(3)N to reduce polarization and facilitate electron transfer during polysulfide reactions and synergistically catalyze polysulfide conversion. In addition, ultrafine nanoparticles are thought to effectively improve the use of additive materials. In summary, Li-S batteries based on this NiO-Ni_(3)N heterostructure have the features of long cycle stability, rapid charging-discharging, and good performance under high sulfur loading. 展开更多
关键词 NiO-Ni_(3)N heterostructure Interface effect Ultrafine nanoparticles Li-S batteries Polysulfides
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Microwave hydrothermal synthesis of WO_(3)(H_(2)O)_(0.333)/CdS nanocomposites for efficient visible-light photocatalytic hydrogen evolution
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作者 Tingting MA Zhen LI +3 位作者 Wen LIU Jiaxu CHEN Moucui WU zhenghua wang 《Frontiers of Materials Science》 SCIE CSCD 2021年第4期589-600,共12页
WO_(3)(H_(2)O)_(0.333)/CdS(WS)nanocomposites are obtained via a rapid microwave hydrothermal method,and they are served as visible light-driven photocatalysts for the H2 generation.By using Pt as the cocatalyst,the WS... WO_(3)(H_(2)O)_(0.333)/CdS(WS)nanocomposites are obtained via a rapid microwave hydrothermal method,and they are served as visible light-driven photocatalysts for the H2 generation.By using Pt as the cocatalyst,the WS nanocomposite with 70 wt.%CdS reaches the H2 evolution rate of 10.32 mmol$g-1$h-1,much quicker than those of WO_(3)(H_(2)O)_(0.333)and CdS.The cycling test reveals the good photocatalytic stability of the WS nanocomposite.The carrier transfer mechanism of WS nanocomposites can be explained by the Z-scheme mechanism.The existence of the Z-scheme heterojunction greatly helps to separate photogenerated carriers and thus improves the photocatalytic activity.The present work provides a rapid synthesis method for preparing Z-scheme heterojunction photocatalysts,and may be helpful for the green production of hydrogen. 展开更多
关键词 NANOCOMPOSITE SEMICONDUCTOR PHOTOCATALYSIS hydrogen evolution
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