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| 1 | ChatGPT, AI-generated content, and engineering management显示文摘This study explores the integration of ChatGPT and AI-generated content (AIGC) in engineering management. It assesses the impact of AIGC services on engineering management processes, mapping out the potential development of AIGC in various engineering functions. The study categorizes AIGC services within the domain of engineering management and conceptualizes an AIGC-aided engineering lifecycle. It also identifies key challenges and emerging trends associated with AIGC. The challenges highlighted are ethical considerations, reliability, and robustness in engineering management. The emerging trends are centered on AIGC-aided optimization design, AIGC-aided engineering consulting, and AIGC-aided green engineering initiatives. | Zuge YU Yeming GONG | 2024 | Frontiers of Engineering Management2024,11,1: | 0 |
| 2 | Research on Soil Conservation and Improvement Technology in Zhaoyang District显示文摘The environment of tobacco-growing soil directly affects the yield and quality of tobacco leaves.In order to solve problems of tobacco-growing soil degradation,low organic matter content and unbalanced soil nutrient supply and promote sustainable and healthy development of tobacco production,this paper comprehensively discussed conservation and improvement techniques of tobacco-growing soil based on existing problems in Zhaoyang District,aiming to provide reference for tobacco-growing soil conservation. | Jing YANG Shifu ZHONG Liting FANG Wei YAN Shixian PU Dianli MA Wenkai XIA Haohan GONG Mengsheng ZHANG Yeming FU Xia NI | 2024 | Agricultural Biotechnology2024,13,1: | 0 |
| 3 | Effects of Microbial Fertilizers in Improving Acidic Tobacco-planting Soil and Tobacco Leaf Quality显示文摘[Objectives]This study was conducted to improve acidic soil and enhance the quality of tobacco leaves.[Methods]The effects of different microbial fertilizers on improving acidic tobacco-planting soil and tobacco leaf quality were investigated through plot experiments.[Results]The application of microbial fertilizers could improve the pH value of acidic soil,and composite microbial agent A showed the best application effect.The application of bio-organic fertilizer was beneficial to improving the contents of available phosphorus and available boron in acidic soil.The application of composite microbial agent A was beneficial to improving the contents of available phosphorus and available potassium in acidic soil,and could promote the growth of tobacco plants and improve the economic traits of flue-cured tobacco and the coordination of chemical components in tobacco leaves.The application of composite microbial agent B led to a downward trend in the content of available boron in acidic soil.The application of composite microbial agent B could promote the absorption of nutrients by tobacco plants,and improve their disease resistance and the quality of tobacco leaves.Due to the differences in functional microorganisms contained,the application effects of different microbial fertilizers in improving acidic tobacco-planting soil and improving tobacco leaf quality varied.Overall,the application of microbial fertilizers could increase soil pH,activate soil nutrients,promote tobacco growth,enhance disease resistance,increase tobacco output value,and improve tobacco quality.Microbial fertilizers have good application prospects in improving acidic soil and improving tobacco quality.[Conclusions]The application of microbial fertilizers to improve acidic tobacco-planting soil can ensure the normal growth and development of tobacco plants and the improvement of tobacco leaf quality,achieving high-quality and sustainable development of Zhaotong tobacco. | Xia NI Shungang SHEN Xianyi ZENG Dewen LI Yeming FU Min CHEN Chaokai YU Libing QI Ying-guo RUAN Changchong ZI Haohan GONG Guangjun HU Mengsheng ZHANG Xu ZHANG Shu PENG Hongbing LI | 2023 | Agricultural Biotechnology2023,12,2: | 0 |
| 4 | Effects of Different Chemical Fertilizer Reduction Techniques on Flue-cured Tobacco Production显示文摘[Objectives]This study was conducted to find out the most suitable special formula fertilizer for flue-cured tobacco production in tobacco-growing areas of Zhaotong City,so as to provide a basis for scientific fertilization and reduced application of inorganic fertilizers with improved efficiency in tobacco production in Zhaotong City.[Methods]Different formulas of special base fertilizer and special topdressing for tobacco were designed by optimizing and adjusting the application amounts and proportions of nitrogen,phosphorus,potassium and medium trace elements in fertilizer formulas,and the formulas of special base fertilizer and special topdressing for flue-cured tobacco production were selected through a field plot experiment.[Results]The combination of special base fertilizer and special topdressing was conducive to the early growth and rapid growth of tobacco plants under the condition of reduced fertilizer application,and the treatment using organic-inorganic compound fertilizer as the special base fertilizer was the most obvious,with an average growth period of two days increased.Compared with conventional fertilization,the yield,output value,average price,proportion of superior tobacco and proportion of medium and superior tobacco increased in the organic-inorganic compound fertilizer treatment,with the yield increasing by 5.96%,the output value increasing by 17.08%,the average price increasing by 10.49%,the proportion of superior tobacco increasing by 4.63%,and the proportion of medium and superior tobacco increasing by 2.44%.It was concluded from indexes including growth period,agronomic traits,disease incidence and economic traits,the fertilization mode of organic-inorganic compound fertilizer with the addition of trace elements(boron,magnesium and zinc)applied as the base fertilizer and nitrogen and potassium topdressing was most efficient and economic.[Conclusions]This study provides a basis for scientific fertilization and reduced application of inorganic fertilizers with improved efficiency in tobacco production in Zhaotong City. | Longfeng GUI Lei XIA Jing YANG Wei YAN Yu ZHOU Yuzhong ZHOU Haohan GONG Mengsheng ZHANG Yeming FU Xianyi ZENG Xia NI | 2023 | Agricultural Biotechnology2023,12,6: | 0 |
| 5 | 降低可退货运输物品损失率的最优决策显示文摘可回收运输物品(RTI)因其在减少包装垃圾和提高供应链可持续性方面的优势而被广泛使用。然而,RTI的损失将导致产品流与RTI 供应不匹配,从而影响运营的连续性。本文研究了一个由单个制造商和单个零售商组成的RTI供应链,假设零售商可以通过投资于员工培训来减少RTI的损失。我们首先开发一个库存模型来最小化系统的总成本。然后分析了RTI闭环供应链的最优决策问题。我们比较了零售商投资于减少RTI损失和不投资于RTI损失的情况。结果表明,零售商投资减少RTI损失将提高供应链效率,降低系统总成本。然而,零售商只有在成本下降时才会投资。因此,我们认为侧付款是一种有效的激励,以刺激零售商的投资。并建立了考虑投资成本分担的非对称纳什议价模型来协调RTI供应链。我们比较了制造商和零售商的总最优成本。结果表明,该系统能够实现协调,降低了制造商和零售商的最优总成本。 | Xiangxiang Fan Yeming Gong Xianhao Xu Bipan Zou | 2019 | 绿色包装2019,0,3: | 0 |