Academic literature on the topic 'Mechanical potato planting'

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Journal articles on the topic "Mechanical potato planting"

1

Rokon, Uz Zaman. "Performance of potato on mechanical planter with diverse irrigation method." Journal of Biodiversity and Environmental Sciences (JBES) 25, no. 2 (2024): 79–84. https://doi.org/10.5281/zenodo.15362195.

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Efficient planting techniques combined with appropriate irrigation methods play a crucial role in maximizing potato yields and ensuring sustainable agricultural practices. A field experiment was conducted Regional Agricultural Research Station, Jashore, Bangladesh, spanning the seasons of 2022-2023 and 2023-2024. The experiment employed the Bangladesh Agricultural Research Institute (BARI) developed potato planter for mechanized planting, compared with manual planting under three irrigation methods: i) Farmer practice (irrigation in both furrows), ii) Alternate furrow irrigation, and iii) Drip
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2

Hoque, M. A., M. A. Rahman, N. Jahan, T. N. Barna, and M. A. Hossain. "Planting and Harvesting Mechanization on Productivity, Energy Efficacy and Profitability of Potato Production." Asian Plant Research Journal 12, no. 3 (2024): 36–43. http://dx.doi.org/10.9734/aprj/2024/v12i3251.

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Potato occupied the first position among all the vegetables in respect of area and total production in Bangladesh. Effective and efficient use of energy are necessary for an improved agricultural production. Therefore, this research was undertaken for potato production to assess productivity, quantify energy flow and financial profitability of different production systems. The experimented four systems were manual planting and manual harvesting, machine planting and manual harvesting, manual planting and machine harvesting and machine planting and machine harvesting, respectively. The experime
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3

Hamid, Ahmed A. A. "Investigation on Field Performance of Plowing and Harvesting Potatoes in Southern Baghdad." Basrah Journal of Agricultural Sciences 37, no. 1 (2024): 196–211. http://dx.doi.org/10.37077/25200860.2024.37.1.15.

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This field experiment, was conducted to investigate a comparison of two methods for harvesting potatoes: mechanical and handy when using moldboard and chisel plow for primary tillage and three different distances for planting tubers in the rows 15, 25, and 35 cm in silt clay loam soil south of Baghdad. The factorial experiment followed a randomized complete block design with three replications using L.S.D. 5 % and 1 %. Mechanical harvest recorded the best valid potato tubers at 88.78 %, marketable yield of 31.74 ton. ha-1, efficiency lifted 95.68 %, tubers damage index 28.41, speeding up the h
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4

Kosariya, Yogesh Kumar. "Some Physico-Mechanical Characteristics of Potato Tubers Used as Seed for Development of Potato Planter." Indian Journal of Pure & Applied Biosciences 9, no. 3 (2021): 305–8. http://dx.doi.org/10.18782/2582-2845.8746.

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Agriculture mechanization plays very important role for horticulture crops. Role of machineries is increasing day by day. In order to compensate for labour scarcity, reduce labour drudgery and time consumption in manual or traditional sowing of potato tubers, a prototype was designed on the basis of various mechanical properties of potato tubers and the prototype was evaluated in the field. The potato tubers taken were divided into three categories i.e., round, oblong and long-oblong. Different mechanical properties of potato tubers were used for designing different lead units of the potato tu
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Pryshlyak, Viktor, and Andriy Mizyuk. "SYSTEM ANALYSIS OF AGRO-TECHNICAL AND MECHANICAL-TECHNOLOGICAL PREREQUISITES FOR CALCULATION, DESIGN AND CONSTRUCTION OF POTATO PLANTING MACHINES." ENGINEERING, ENERGY, TRANSPORT AIC, no. 2(113) (June 29, 2021): 134–41. http://dx.doi.org/10.37128/2520-6168-2021-2-14.

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This article reflects the results of research on developed innovative technologies and research results of advanced machines for mechanized processes in potato growing in the Forest-Steppe zone of Ukraine. It is worth noting that the technologies used on homesteads and farms are costly in the first place due to the fact that many works are done manually using simple agricultural implements. These works are labor-intensive and have low-productivity and the received products cannot be competitive in European and world markets. To implement modern European technologies, agricultural producers nee
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6

Dr., Ibrahim Naser, Olbinado Emiliano, Kasimie Fahad, and Baker James. "Effect of the Soil Amendments on the Mechanical Harvest of Potato Crop Grown under Centre Pivot Irrigation System." International Journal of Plant Science and Horticulture 1, no. 3 (2019): 129–49. https://doi.org/10.36811/ijpsh.2019.110013.

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A field trial was conducted at TADCO to evaluate the mechanical harvest of autumn potato crop under different soil amendments: sand, gypsum, cow manure, and granular sulfur. The application of the sand amendment to the soil of the pivot showed easier mechanical and semi-mechanical harvest. The potato yield under the mechanical harvest was less than semi-mechanical harvest by 15.48% at the different soil amendments. More bruises were observed on the potato tubers harvested by mechanical harvest which ranged 9.34-16.33%, while bruises at semi-mechanical harvest ranged 4.28-4.75%. The final yield
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7

De Maine, M. J. "A method of testing the resistance of potato cultivars to tuber damage caused by squeezing." Journal of Agricultural Science 106, no. 2 (1986): 255–58. http://dx.doi.org/10.1017/s0021859600063826.

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SUMMARYTubers from nine cultivars grown in four plantings over 3 years at two sites in Scotland were tested for resistance to cracking by squeezing between two flat surfaces. The force was applied by a lever to which a steel plate was fixed, pressing the tuber against a wooden base. The weight on the lever was recorded when wet hair-line cracks appeared on the tuber surface.There were significant differences between cultivars from the same planting. The rank positions of some cultivars were relatively stable but others differed widely between plantings. The grouping of cultivars into the upper
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8

Andrade-Piedra, I. Navarrete, N. Panchi, J. L. "Potato crop health quality and yield losses in Ecuador." Revista Latinoamericana de la Papa 21, no. 2 (2017): 69–88. http://dx.doi.org/10.37066/ralap.v21i2.280.

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The poor knowledge about the presence of diseases and pests affecting the potato crop in developing countries difficult the understanding of their distribution in agro-ecological systems and consequent effect on yield and seed quality. A combination of a monitoring and a field experiment were performed to: (1) determine the incidence and severity of pathogens and pests affecting foliage and seed tubers, (2) determine the influence of altitude and seed sources over seed quality, and (3) determine yield responses to seed quality. Disease and pest monitoring on the foliage and seed tubers was per
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9

Liashchenko, S. A., A. O. Rozhniatovskyi, S. I. Kupriianov, Ya Yu Martseniuk, and I. M. Tkachenko. "INFLUENCE OF ROW SPACING AND MECHANICAL LOAD AREA ON HYDRO-PHYSICAL SOIL PROPERTIES." Interdepartmental thematic scientific collection "Potato research", no. 48 (December 30, 2024): 80–91. https://doi.org/10.52087/0130-2094.2024.48.07.

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To determine the optimal agrotechnical measures for growing potato seed material. The following methods were used in the research: field – monitoring of hydro-physical soil properties in the experiment for growing potatoes, determining the effectiveness of combinations of row spacing, accounting for the yield; laboratory – determination of the hydrothermal coefficient (HTC), in accordance with generally accepted methods. Observations of changes in soil moisture depending on different row spacing after planting potatoes, at full germination, closing of potato tops in a row (flowering) and harve
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10

Almady, Saad S., Saad A. Al-Hamed, Samy A. Marey, Saleh M. Al-Sager, and Abdulwahed M. Aboukarima. "An Assessment of Some Mechanical Properties of Harvested Potato Tubers cv. Spunta." Agronomy 14, no. 6 (2024): 1116. http://dx.doi.org/10.3390/agronomy14061116.

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Mechanical properties of vegetables or crop materials play a noteworthy part in designing new related implements. These properties can be extracted from force–deformation curves. Several factors, such as soil preparation, irrigation, and pre- and post-harvest treatments influence them. The core objective of this investigation work was to analyze force–deformation curves obtained from compression, penetration, and shear tests of potatoes (Spunta cv.) produced with three tillage implements. The potatoes cv. Spunta were cultivated in loamy sand soil under the center-pivot irrigation system. The t
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