
Sanjay kumar Gilhare,

Subhash Chandra,

Nitin Kumar Koumary,

Laxminath Bhdra,
- Ph.D. scholar, Department of Farm Machinery and Power Engineering, Swami Vivekanand College of Agricultural Engineering and Technology and Research Station, Faculty of Agricultural Engineering, Indira Gandhi Krishi Vishwavidyalaya (IGKV), Raipur, Chhattisgarh, India
- Associate Professor, College of Agricultural Engineering and Technology, Dr. Rajendra Prasad Central Agricultural University Pusa, Samastipur, Bihar, India
- Ph.D. scholar, Department of Farm Machinery and Power Engineering, Swami Vivekanand College of Agricultural Engineering and Technology and Research Station, Faculty of Agricultural Engineering, Indira Gandhi Krishi Vishwavidyalaya (IGKV), Raipur, Chhattisgarh, India
- Ph.D. scholar, Department of Farm Machinery and Power Engineering, Swami Vivekanand College of Agricultural Engineering and Technology and Research Station, Faculty of Agricultural Engineering, Indira Gandhi Krishi Vishwavidyalaya (IGKV), Raipur, Chhattisgarh, India
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The machine used in the experiment was designed for suitability to the pot-type seedlings. In pot-type seedlings, soil in from of soil block, keeps the roots of the seedling enact and therefore ensures minimum mortality and maximum survival of the seedlings. The compactness and seedling settlement time, before its removal form cage for planting, guides the soil block strength against breakage. The minimum damage of soil block in pot for Chilli (3.35%) and Brinjal (1.65%) was at bulk density 1.44 g/cm3 and moisture content between 10 to 16 %. Upon decrease in value of bulk density from 1.44g/cm3 to the range between 1.30g/cm3 to 1.27 g/cm3 the damage of pot was 5.0% in Chilli and 5.0 to 6.65% in Brinjal respectively. The variation in pot damage at 1.27g/cm3 bulk density and above 10.0% moisture level was with value 5% in Chilli and 6.65%. The minimum mortality of seedlings was 1.65% in Chilli at moisture level above 10% and below 16% in the soil block having bulk density between 1.30-1.27 g/cm3. For the same range of soil density and soil moisture mortality of Brinjal seedling was ranging between 6.65 to 8.35%. Maximum seedling mortality was observed at 1.44 g/cm3 bulk density and below 6% moisture level with value 15.0% in Chilli and 18.35% Brinjal respectively.
Keywords: Plantation, Brijal, Chilli, Seedling, Bulk Density.
Sanjay kumar Gilhare, Subhash Chandra, Nitin Kumar Koumary, Laxminath Bhdra. Optimization of Bulk Density and Moisture Content in Different Stages of Plantation for the Single Row Manually Operated Vegetable Transplanter for Brinjal and Chilli.. Research & Reviews : Journal of Botany. 2025; ():-.
Sanjay kumar Gilhare, Subhash Chandra, Nitin Kumar Koumary, Laxminath Bhdra. Optimization of Bulk Density and Moisture Content in Different Stages of Plantation for the Single Row Manually Operated Vegetable Transplanter for Brinjal and Chilli.. Research & Reviews : Journal of Botany. 2025; ():-. Available from: https://journals.stmjournals.com/rrjob/article=2025/view=0
References
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- Bhambota, S., Dixit, A. K., Manes, G. S., & Singh, S. K. (2018). Development and evaluation of vertical cup with split base type metering mechanism cum dibbler for semi-automatic transplanter using cell feed type nursery. Int. J. Curr. Microbiol. App. Sci, 7(6), 3600-3611.
- Khadatkar A, Mathur SM, Gaikwad BB, Pandirwar A, Shrinivas DJ. Biometric properties of plug vegetable seedlings relevant to the design of vegetable transplanter. Journal of Agricultural Engineering. 2020;57(1):16-24.
- Kumar GP, Raheman H. Development of a walk-behind type hand tractor powered vegetable transplanter for paper pot seedlings. Biosystems engineering. 2011 Oct 1;110(2):189-97.
- Magar, Ajit & Nalawade, Sachin & Walunj, Avdhoot & Khadatkar, Abhijit & Bhangare, Sanjay & Bhalekar, Madhukar. (2023). Engineering Properties of Some Plug-type Vegetable Seedlings for Development of Automatic Vegetable Transplanter. Journal of Agricultural Engineering. 60. 1-13. 10.52151/jae2023601.1792.
- Nandede, Balaji & Raheman, Hifjur. (2016). A tractor drawn vegetable transplanter for handling paper pot seedlings. AMA, Agricultural Mechanization in Asia, Africa and Latin America. 47. 87-92.
- Paradkar, Vikas & Raheman, Hifjur & Rahul, K.. (2021). Development of a metering mechanism with serial robotic arm for handling paper pot seedlings in a vegetable transplanter. Artificial Intelligence in Agriculture. 5. 10.1016/j.aiia.2021.02.001.
- Yu, G. & Liao, Z. & Xu, L. & Zhao, P. & Wu, C.. (2015). Optimization design and test of large spacing planetary gear train for vegetable pot-seedling planting mechanism. Nongye Jixie Xuebao/Transactions of the Chinese Society for Agricultural Machinery. 46. 38-44. 10.6041/j.issn.1000-1298.2015.07.006.
- Thorat PV, Jhala KB, Jadhav ML. Design, development and performance evaluation of manually operated two row trolley type vegetable transplanter. Int. J. Curr. Microbiol. App. Sci. 2017;6(1l):3577-89.
- Nandede BM, Raheman H. Multi-stage metering mechanism for transplanting of vegetable seedlings in paper pots. Journal of The Institution of Engineers (India): Series A. 2015 Dec;96:295-300.
- Nage SM, Mathur SM, Meena SS. Vegetable Transplanters for India: A Review. Agricultural Science Digest-A Research Journal. 2023;43(2):129-34.

Research & Reviews : Journal of Botany
| Volume | |
| Received | 23/10/2024 |
| Accepted | 27/11/2024 |
| Published | 02/01/2025 |