Effect of positive and negative corona discharge field on vigor of millet seeds
To investigate the effects of corona discharge field treatment of different electric field strength with the different polarities on the vigor of millet seeds, the positive and negative corona discharge fields generated with arc-shaped prick electrodes and plate electrodes are different for millet s...
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sg-ntu-dr.10356-1457152021-01-06T00:53:14Z Effect of positive and negative corona discharge field on vigor of millet seeds Wang, Jing Song, Hualu Song, Zhanhua Lu, Yuanyuan Yan, Yinfa Li, Fade School of Electrical and Electronic Engineering Engineering::Electrical and electronic engineering Electrical Conductivity Corona Discharge Field To investigate the effects of corona discharge field treatment of different electric field strength with the different polarities on the vigor of millet seeds, the positive and negative corona discharge fields generated with arc-shaped prick electrodes and plate electrodes are different for millet seeds respectively. The treatment voltage was (2 × n kV, n = 1, 2. . .10) and the time treated was 2 min. The results showed that after treatment by the corona discharge field, the germination potential, germination rate, germination index and vigor index of millet seeds increased to different degrees compared with the control. The optimal treatment voltages of the positive and negative corona discharge field were 12 kV. Under the optimal treatment voltage, the germination indexes (germination potential, germination rate, germination index, vigor index) of millet seeds were significantly different from the control (p <; 0.01), and the millet seeds treated by the positive corona discharge field compared with the control group, the germination potential, germination rate, germination index and vigor index increased by 21.2%, 23.0%, 19.9% and 23.2% respectively. The germination indexes of the millet seeds treated by the negative corona discharge field increased by 29.1%, 28.5%, 26.9% and 32.1%. It was also found that under the same treatment voltage, the electrical conductivity of the leachates of the millet seed treated with the negative corona discharge field was lower than that of the positive, which indicated that the negative corona discharge field would repair the cell membrane more effectively. According to various indicators, it can be concluded that the negative corona discharge field treatment was better than the positive. Published version 2021-01-06T00:53:14Z 2021-01-06T00:53:14Z 2020 Journal Article Wang, J., Song, H., Song, Z., Lu, Y., Yan, Y., & Li, F. (2020). Effect of positive and negative corona discharge Field on vigor of millet seeds. IEEE Access, 8, 50268-50275. doi:10.1109/access.2020.2979288 2169-3536 https://hdl.handle.net/10356/145715 10.1109/ACCESS.2020.2979288 8 50268 50275 en IEEE Access © 2020 IEEE. This journal is 100% open access, which means that all content is freely available without charge to users or their institutions. All articles accepted after 12 June 2019 are published under a CC BY 4.0 license, and the author retains copyright. Users are allowed to read, download, copy, distribute, print, search, or link to the full texts of the articles, or use them for any other lawful purpose, as long as proper attribution is given. application/pdf |
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Engineering::Electrical and electronic engineering Electrical Conductivity Corona Discharge Field Wang, Jing Song, Hualu Song, Zhanhua Lu, Yuanyuan Yan, Yinfa Li, Fade Effect of positive and negative corona discharge field on vigor of millet seeds |
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To investigate the effects of corona discharge field treatment of different electric field strength with the different polarities on the vigor of millet seeds, the positive and negative corona discharge fields generated with arc-shaped prick electrodes and plate electrodes are different for millet seeds respectively. The treatment voltage was (2 × n kV, n = 1, 2. . .10) and the time treated was 2 min. The results showed that after treatment by the corona discharge field, the germination potential, germination rate, germination index and vigor index of millet seeds increased to different degrees compared with the control. The optimal treatment voltages of the positive and negative corona discharge field were 12 kV. Under the optimal treatment voltage, the germination indexes (germination potential, germination rate, germination index, vigor index) of millet seeds were significantly different from the control (p <; 0.01), and the millet seeds treated by the positive corona discharge field compared with the control group, the germination potential, germination rate, germination index and vigor index increased by 21.2%, 23.0%, 19.9% and 23.2% respectively. The germination indexes of the millet seeds treated by the negative corona discharge field increased by 29.1%, 28.5%, 26.9% and 32.1%. It was also found that under the same treatment voltage, the electrical conductivity of the leachates of the millet seed treated with the negative corona discharge field was lower than that of the positive, which indicated that the negative corona discharge field would repair the cell membrane more effectively. According to various indicators, it can be concluded that the negative corona discharge field treatment was better than the positive. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Wang, Jing Song, Hualu Song, Zhanhua Lu, Yuanyuan Yan, Yinfa Li, Fade |
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Article |
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Wang, Jing Song, Hualu Song, Zhanhua Lu, Yuanyuan Yan, Yinfa Li, Fade |
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Wang, Jing |
title |
Effect of positive and negative corona discharge field on vigor of millet seeds |
title_short |
Effect of positive and negative corona discharge field on vigor of millet seeds |
title_full |
Effect of positive and negative corona discharge field on vigor of millet seeds |
title_fullStr |
Effect of positive and negative corona discharge field on vigor of millet seeds |
title_full_unstemmed |
Effect of positive and negative corona discharge field on vigor of millet seeds |
title_sort |
effect of positive and negative corona discharge field on vigor of millet seeds |
publishDate |
2021 |
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https://hdl.handle.net/10356/145715 |
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