نوع مقاله : مقاله مروری انگلیسی
نویسندگان
- شیبین یان 1، 2
- فاجان یانگ 1، 2
- یوهوان لی 1
- شیآن لی 1
- جینگ لی 1، 2
- شُوِه وانگ 1، 2
- گوانگدی لی 1، 2
- آنچی چن 1، 2
1 دانشکده مهندسی مکانیک و خودرو، دانشگاه فناوری چینگدائو، چینگدائو ۲۶۶۵۲۰، شاندونگ، چین
2 آزمایشگاه کلیدی ملی صرفهجویی انرژی سیالات صنعتی و کنترل آلودگی (دانشگاه فناوری چینگدائو)، وزارت آموزش، چینگدائو ۲۶۶۵۲۰، شاندونگ، چین
چکیده
سویا بهعنوان یک غله، روغن و محصول اقتصادی حیاتی در چین عمل میکند، با این حال این کشور در حال حاضر برای این محصول نرخ خودکفایی نگرانکنندهای دارد. فرآیند کاشت، که بحرانیترین مرحله تولید سویا است، بهطور مستقیم عملکرد و کیفیت محصول را تعیین میکند. نکته قابلتوجه این است که عملکرد نامطلوب دستگاههای کاشت دقیق بذر، به دلیل مشکلات مربوط به دقت کاشت بذر، همچنان گلوگاه اصلی محدودکننده افزایش عملکرد است. هدف این مطالعه، تجزیه و تحلیل وضعیت فعلی تولید سویا، برجسته کردن پیشرفتهای تکنولوژیکی در دستگاههای کاشت بذر و ارائه استراتژیهای بهبود برای افزایش کیفیت کاشت و کاهش وابستگی به واردات است و در نتیجه یک مبنای نظری ارائه میدهد. این مقاله منابع را بهطور سیستماتیک از پایگاههای دادهای مانند CNKI، Web of Science، Elsevier و IEEE Xplore که شامل مقالات مجلات معتبر علمی، اسناد ثبت اختراع و گزارشهای صنعتی منتشرشده هستند بین سالهای 2000 تا 2024 استخراج نمود. این مقاله تجزیه و تحلیل مقایسهای از انواع، اصول کار و پیشرفت تحقیقات در دستگاههای کاشت بذر سویا در چین و دیگر کشورها انجام میدهد. نتایج نشان داد که دستگاههای کاشت بذر چینی عمدتا مکانیکی هستند و مشکلاتی مانند آسیب بیش از حد به بذر و میزان بالای بذر تلف شده دارند، در حالیکه ماشین های کاشت بذر در برخی کشورها بصورت پنوماتیک بوده و دقت بالایی دارند اما هزینه آنها بالاست و مشکل قابلیت انطباق دارند.
کلیدواژهها
موضوعات
- Chen, L., Gao, F., Yang, Y., & Cui, X. (2020). Key sowing technology and ensuring measures for summer soybean in Yucheng city. Soybean Science & Technology, 4, 40-42.
- Chen, M., Diao, P., Zhang, Y., Gao, Q., Yang, Z., & Yao, W. (2018). Design of single-disk double-row air-aspirated seed discharger for soybean narrow-row dense-planting planter. Transactions of the Chinese Society of Agricultural Engineering, 34, 8-16. https://doi.org/10.11975/j.issn.1002-6819.2018.21.002
- Chen, W., Hu, P., Zhang, B., Qiu, T., & Yang, S. (2022). Design and experiment of no-tillage precision planters with staggered seedling belts for soybean. Journal of Chinese Agricultural Mechanization, 43(2), 1-7. https://doi.org/10.13733/j.jcam.issn.2095-5553.2022.02.001
- Colletti, A., Attrovio, A., Boffa, L., Mantegna, S., & Cravotto, G. (2020). Valorisation of by-products from soybean (Glycine max (L.) Merr.) processing. Molecules, 25(9), 2129. https://doi.org/10.3390/molecules25092129
- Ding, L., Yuan, Y., Dou, Y., Li, C., He, Z., Guo, G., Zhang, Y., Chen, B., & Li, H. (2024a). Design and Experiment of Air-Suction Maize Seed-Metering Device with Auxiliary Guide. Agriculture, 14(2), 169. https://doi.org/10.3390/agriculture14020169
- Ding, X., Hao, W., Liu, K., Wang, B., He, Z., Li, W., Cui, Y., & Yang, Q. (2024b). Development of a universal plug tray seeder for small seeds based on electrostatic adsorption. Computers and Electronics in Agriculture, 227, 109651. https://doi.org/10.1016/j.compag.2024.109651
- Dong, J., Zhang, S., Zheng, Z., Wu, J., Huang, Y., & Gao, X. (2024). Development of a novel perforated type precision metering device for efficient and cleaner production of maize. Journal of Cleaner Production, 443, 140928. https://doi.org/10.1016/j.jclepro.2024.140928
- Dong, Z., Wang, C., & Zhang, J. (2021). Effect of growth stages and varieties on yield and nutritional value of whole-plant soybean. Feed Research, 44(9), 94-98. https://doi.org/10.13557/j.cnki.issn1002-2813.2021.09.022
- Du, R., Yan, X., Zhang, S., Liu, S., & Liu, L. (2022). Design and experiment of compensating hollow wheel type corn precision metering device. Journal of Agricultural Mechanization Research, 44(8), 205-209+219. https://doi.org/10.13427/j.cnki.njyi.2022.08.036
- Gai, M., Yang, J., Li, X., Qu, Z., Li, H., & Yu, Y. (2023). Design and test of guided horizontal disc soybean precision seeder. Jiangsu Agricultural Science, 51(22), 200-206. https://doi.org/10.15889/j.issn.1002-1302.2023.22.027
- Ge, H., He, H., Li, H., Mao, Y., Shi, Z., & Chen, X. (2023). The design for the nest-eye wheel type soybean seed-metering device based on EDEM. Journal of Shandong Agricultural University (Natural Science Edition), 54(1), 150-158. https://doi.org/10.3969/j.issn.1000-2324.2023.01.024
- Han, D., Wang, Q., Yan, J., He, B., Lv, X., Dai, S., & Chen, L. (2023). Optimization and experiment of an air-suction mung bean precision seed-metering device. Journal of China Agricultural University, 28(9), 147-157. https://doi.org/10.11841/j.issn.1007-4333.2023.09.14
- Han, D., Zhang, D., Yang, L., Cui, T., Ding, Y., & Dian, X. (2017). Optimization and experiment of inside-filling air-blowing seed metering device based on EDEM-CFD. Transactions of the Chinese Society for Agricultural Machinery, 48(11), 43-51. https://doi.org/10.6041/j.issn.1000-1298.2017.11.006
- He, F., Deng, G., Cui, Z., Zhen, S., Li, G., & Li, L. (2020). Design and simulation test of single-slot cassava seed stalk seeding device. Journal of Chinese Agricultural Mechanization, 41(4), 6-12. https://doi.org/10.13733/j.jcam.issn.2095-5553.2020.04.002
- He, J., & Wu, T. (2022). Changes of Nutritional Components in Soybean During Cooking. China Condiment, 47(4), 187-189. https://doi.org/10.3969/j.issn.1000-9973.2022.04.036
- He, L., Liu, X., Zhang, J., Yao, G., & Zhou, Y. (2015). Kinematics analysis and experimental study on grid inter-row weed control device for paddy field. Journal of Agricultural Mechanization Research, 37(5), 151-154. https://doi.org/10.13427/j.cnki.njyi.2015.05.033
- Hou, S., Zhou, Z., Wei, Z., Zhu, W., & Chen, H. (2020). Design and experiment of flexible mechanical soybean precision seed-metering device. Transactions of the Chinese Society for Agricultural Machinery, 51, 77-86. https://doi.org/10.6041/j.issn.1000-1298.2020.10.010
- Huai, Y., Zhang, S., Wu, T., Azam, M., Li, J., Sun, S., Han, T., Li, B., & Sun, M. (2022). Potential evaluation of molecular markers related to major nutritional quality traits in soybean breeding. Acta Agronomica Sinica, 48(8), 1957-1976. https://doi.org/3724/SP.J.1006.2022.14127
- Huang, Y., Li, P., Dong, J., Chen, X., Zhang, S., & Liu, Y. (2022). Design and experiment of side-mounted guided high speed precision seed metering device for soybean. Transactions of the Chinese Society for Agricultural Machinery, 53, 44-53. https://doi.org/10.6041/j.issn.1000-1298.2022.10.005
- Jia, H., Chen, Y., Zhao, J., Guo, M., Huang, D., & Zhuang, J. (2018). Design and key parameter optimization of an agitated soybean seed metering device with horizontal seed filling. International Journal of Agricultural and Biological Engineering, 11(2), 76-87. https://doi.org/10.25165/j.ijabe.20181102.3464
- Jin, X., Chen, Z., Zhao, J., Zhao, B., Li, M., Zhou, L., & Ji, J. (2024). Optimization and testing of a mechanical roller seeder based on DEM-MBD rice potting tray. Computers and Electronics in Agriculture, 227, 109670. https://doi.org/10.1016/j.compag.2024.109670
- Jing, C., Zhou, J., Zhang, C., & Zhou, S. (2019). Research Process in Nutrients Ingredients and Biological Activities of Glycine soja Seeds. Soybean Science, 38(4), 644-649. https://doi.org/10.11861/j. issn.1000-9841.2019.04.0644
- Kang, Y., Liao, Q., Liao, Y., Han, J., Chen, H., & Zhang, Q. (2023) Design and experiment of rapeseed wide-width folding shallow-rotation combined precision direct seeder. Transactions of the Chinese Society for Agricultural Machinery, 54(8), 42-52. https://doi.org/10.6041/j.issn.1000-1298.2023.08.004
- Lai, Q., Jia, G., Su, W., Hong, F., Zhao, J. (2020). Design and Test of Ginseng Precision Special-hole Type Seed-metering Device with Convex Hull. Transactions of the Chinese Society for Agricultural Machinery, 51(7), 60-71. https://doi.org/10.6041/j.issn.1000-1298.2020.07.008
- Lei, X., Hu, H., Wu, W., Liu, H., Liu, L., Yang, W., Zhou, Z., & Ren, W. (2021). Seed motion characteristics and seeding performance of a centralised seed metering system for rapeseed investigated by DEM simulation and bench testing. Biosystems Engineering, 203, 22-33. https://doi.org/10.1016/j.biosystemseng.2020.12.017
- Li, C., Cui, T., Zhang, D., Yang, L., He, X., Li, Z., Jing, M., Dong, J., & Xing, S. (2023). Design and experiment of a centrifugal filling and cleaning high-speed precision seed metering device for maize. Journal of Cleaner Production, 426, 139083. https://doi.org/10.1016/j.jclepro.2023.139083
- Li, C., Tang, Y., McHugh, A., Wu, X., Liu, M., Li, M., Xiong, T., Ling, D., Tang, Q., & Liao, M. (2022a). Development and performance evaluation of a wet-resistant strip-till seeder for sowing wheat following rice. Biosystems Engineering, 220, 146-158. https://doi.org/10.1016/j.biosystemseng.2022.05.019
- Li, C., Yuan, M., Li, Y., Li, Z., Xu, N., & Wang, H. (2022b). Effects of different sowing dates and densities on yield and agronomic traits in autumn vegetable soybean. Molecular Plant Breeding, 20(13), 4506-4512. https://doi.org/10.13271/j.mpb.020.004506
- Li, Y., Zhao, S., Yang, F., Liu, P., Li, B., Song, Q., Yan, S., & Li, X. (2024a). Research on the Flexible Gradual Seed-Cleaning Method of the Brush-Type Single-Seed Soybean Planter. Agriculture, 14(3), 399. https://doi.org/10.3390/agriculture14030399
- Li, C., Zhang, D., Yang, L., Cui, T., He, X., Li, Z., Dong, J., Xing, S., Jiang, Y., & Liang, J. (2024b). "Research on high-speed and clean production with a high-speed centrifugal maize precision seed metering device featuring variable hole insert numbers. Computers and Electronics in Agriculture, 227, 109620. https://doi.org/10.1016/j.compag.2024.109620
- Li, C., Zhang, D., Yang, L., Cui, T., He, X., Li, Z., Dong, J., Xing, S., Jiang, Y., & Liang, J. (2024c). Research on a centrifugal high-speed precision seed metering device for maize with airflow-assisted seed filling and cleaning. Computers and Electronics in Agriculture, 226, 109434. https://doi.org/10.1016/j.compag.2024.109434
- Li, H., & Gao, F. (2023). Parametric design and experiment of air suction precision metering device for wheat. Journal of Chinese Agricultural Mechanization, 44(7), 9-15. https://doi.org/10.13733/j.jcam.issn.2095-5553.2023.07.002
- Li, J., Lai, Q., Zhang, H., Zhang, Z., Zhao, J., & Wang, T. (2021a). Suction force on high-sphericity seeds in an air-suction seed-metering device. Biosystems Engineering, 211, 125-140. https://doi.org/10.1016/j.biosystemseng.2021.08.031
- Li, W., Xu, H., Li, X., Li, H., & Yu, Y. (2024d). Design and experiment of horizontal disc soybean single-grain precision seed metering device. Journal of Agricultural Mechanization Research, 46(6), 109-115. https://doi.org/10.13427/j.cnki.njyi.2024.06.040
- Li, X., Ji, J., Cao, S., & Feng, X. (2018). Design and parameter analysis of the precision spoon-wheel seed meter for corn. Journal of Agricultural Mechanization Research, 40(3), 13-16. https://doi.org/10.13427/j.cnki.njyi.2018.03.003
- Li, X., Zhang, H., Qu, Z., & Yu, Y. (2021b). Design and experiment of inside-filled seed metering device for soybean. Soybean Science, 40(4), 546-552. https://doi.org/10.11861/j.issn.1000-9841.2021.04.0546
- Liao, Y., Sun, M., Liao, Q., Wang, C., Zhen, J., & Wu, A. (2023). Ordering of seed flow in seed guiding of precision sowing for rapeseed. Transactions of the Chinese Society of Agricultural Engineering, 39(23), 23-35. https://doi.org/10.11975/j.issn.1002-6819.202305214
- Liu, Y., Ling, J., Li, B., Ma, T., Song, J., & Tian, Y. (2017). Design and experiment of horizontal disc seed metering device for maize seeder. Transactions of the Chinese Society of Agricultural Engineering, 33(8), 37-46. https://doi.org/10.11975/j.issn.1002-6819.2017.08.005
- Moroșan, E., Lupu, C., Mititelu, M., Musuc, A., Rusu, A., Răducan, I., Karampelas, O., Voinicu, I., Neacșu, S., Licu, M., Pogan, A., Cîrnațu, D., Ilie, E., & Dărăban, A. M. (2023). Evaluation of the nutritional quality of different soybean and pea varieties: Their use in balanced diets for different pathologies. Applied Sciences, 13(15), 8724. https://doi.org/3390/app13158724
- Qu, Y., Ma, W., Wang, K., Zhu, F., Zhang, H., Yang, H., & Liang, F. (2023). Effects of sowing method and fertilizing amount on photosynthetic capacity, yield, and quality of soybean. Chinese Agricultural Science Bulletin, 39(27), 17-23.
- Shang, Z., Zhang, K., Yang, D., & Ma, Z. (2023). Simulation optimization of seed plate of air suction soybean seed-metering device based on DEM-CFD coupling. Journal of Chinese Agricultural Mechanization, 44(11), 1-8. https://doi.org/10.13733/j.jcam.issn.2095-5553.2023.11.001
- Sharma, S., Kaur, M., Goyal, R., & Gill, B. (2014). Physical characteristics and nutritional composition of some new soybean (Glycine max (L.) Merrill) genotypes. Journal of Food Science and Technology, 51, 551-557. https://doi.org/10.1007/s13197-011-0517-7
- Wang, H., Zhang, J., Zhao, X., Yang, N., & Liu, Q. (2015). Pneumatic-spoon combined corn precision seed-metering device. Journal of Agricultural Mechanization Research, 37(9), 88-91.
- Wang, Q., Zhu, L., Li, M., Huang, D., Jia, H., & Zhuang, J. (2019). Vibration characteristics of corn no-tillage finger-type precision planter and its effect on seeding performance. Transactions of the Chinese Society of Agricultural Engineering, 35(9), 9-18. https://doi.org/10.11975/j.issn.1002-6819.2019.09.002
- Wang, Y., Gao, Y., Tai, Y., Wang, Y., Lv, J., & Yang, D. (2021). Design and test of pickup finger potato precision seed metering device. Transactions of the Chinese Society for Agricultural Machinery, 52(11), 49-58. https://doi.org/10.6041/j.issn.1000-1298.2021.11.005
- Wei, Y., He, L., Zhang, H., Zhang, Y., Liu, L., & Jiang, B. (2023). Analysis on the Generation Mechanism of Dependence Risk of China′s Soybean Import: From the Perspective of Interdependence. Soybean Science, 42(6), 757-768. https://doi.org/10.11861/j.issn.1000-9841.2023.06.0757
- Wu, J., Hu, J., Xing, L., Shen, C., Chi, L., Zhang, J., & Liu, J. (2023). Spatial dependence of soybean price and policy responses between China and major soybean import countries. Journal of China Agricultural University, 28(4), 227-237. https://doi.org/10.11841/j.issn.1007-4333.2023.04.20
- Yang, L., Yan, B., Cui, T., Yu, Y., He, X., Liu, Q., Liang, Z., Yin, X., & Zhang, D. (2016) Global overview of research progress and development of precision maize planters. International Journal of Agricultural and Biological Engineering, 9(1), 9-26. https://doi.org/10.3965/j.ijabe.20160901.2285
- Yu, X., Xiong, Q., Gan, B., Xie, J., Yu, Q., & Chen, Y. (2023). Nutrients analysis and near infrared identification of organic and non-organic soybeans. Journal of Food Safety & Qualit, 14(7), 139-147. https://doi.org/10.19812/j.cnki.jfsq11-5956/ts.2023.07.015
- Yuan, G., Zhang, T., & Liu, Y. (2017). Design of a spoon wheel type seed metering device and simulation of soybean seeds by discrete element method. Journal of Agricultural Mechanization Research, 39(11), 25-29. https://doi.org/10.13427/j.cnki.njyi.2017.11.004
- Zeng, X. (2017). The Strategic planning of soybean industry development in China. Chinese Journal of Agricultural Resources and Regional Planning, 38(9), 89-97. https://doi.org/10.7621/cjarrp.1005-9121.20170913
- Zhang, H., Zhang, C., Li, Z., Ding, L., Zhu, C., & Zhang, J. (2023a). Simulation analysis and optimization of vibration characteristics of corn finger clip seeding device based on EDEM-RecurDyn coupling. Transactions of the Chinese Society for Agricultural Machinery, 54(S1), 36-46. https://doi.org/10.6041/j.issn.1000-1298.2023.S1.005
- Zhang, X., Tan, Y., Zhang, L., Jiang, Y., & Zhang, R. (2023b). Journal of Chinese Agricultural Mechanization, 44(8), 155-161. https://doi.org/10.13733/j.jcam.issn.2095-5553.2023.08.021
- Zhang, X., Wen, Z., Wang, Q., Li, H., Zhang, Z., & Liu, J. (2022). Research on characteristics of airway pressure loss in seeding-wheel-type pneumatic seeder. Agriculture, 12(12), 2021. https://doi.org/10.3390/agriculture12122021
- Zhao, S. (2023). Effects of different sowing techniques on soybean plant growth and yield. Agricultural Machinery Using & Maintenance, (5), 105-107. https://doi.org/10.14031/j.cnki.njwx.2023.05.031
- Zhu, C., Liu, C., Li, F., Jia, X., Cao, M., & Wang, Y. (2023). Simulation and experiment of piezoelectric vibration super rice precision seeding and unifying device. Transactions of the Chinese Society for Agricultural Machinery, 54(12), 27-36. https://doi.org/10.6041/j.issn.1000-1298.2023.12.002
- Zuo, Q., Wang, B., Lv, R., Xu, H. Chen, S., Sun, Q., & Zuo, H. (2023). Production cost analysis of imported heat damaged soybean.
ارسال نظر در مورد این مقاله