effect of silicon, nitrogen and potassium on industrial tomato production

effect of silicon, nitrogen and potassium on industrial tomato production

;Ana Lúcia Hanisch2;José Alfredo da Fonseca2;Alvadi Antonio Balbinot Junior3;Evandro Spagnollo4
حقوق بشر 2013 Vol. 3 pp. -
116
hanisch22013revistaeffect

Abstract

Tomato production is at second place among vegetable crops in Brazil in economical relevance. The aim of this research was to evaluate silicon, nitrogen and potassium effect on yield. The experiment was carried out at FAL-UnB in a completely randomized design, with 14 forms of fertilization (control - no fertilization; 2, 4, 6 and 8 kg ha-1 of SiO2; 60, 120, 180 e 240 kg ha-1 of nitrogen; 100, 200, 300 e 400 kg ha-1 of K2O; NPK according to soil analyses), three genotypes (Viradoro, Tospodoro and HEI 035) in two periods of evaluation/ harvest, totalizing 84 treatments, in four replicates, in a total of 336 experimental parcels. A MAPA norm was used to evaluate yield and classify fruits. The lowest fertilizers doses in each nutrient resulted in the highest yield of adequate tomato fruits for processing. HEI 035 showed the lowest discolored and insect damaged fruits, statistically different from those observed on the other genotypes. Nevertheless, HEI 035 showed the highest fruit number with black heart disorder, statistically different from Tospodoro´s result, which was the lowest. The highest number of cracked fruits in each nutrient dose was observed at the lowest dose, and did not differ statistically from control, but differed from NPK that showed the lowest result. HEI 035 showed the highest number of blossom-end rot fruits. It can be concluded that the lowest fertilizer doses in each fertilizer (silicon, nitrogen and potassium) result in the highest yield of adequate tomato fruits for processing.

Citation

ID: 136491
Ref Key: hanisch22013revistaeffect
Use this key to autocite in SciMatic or Thesis Manager

References

Blockchain Verification

Account:
NFT Contract Address:
0x95644003c57E6F55A65596E3D9Eac6813e3566dA
Article ID:
136491
Unique Identifier:
10.21206/rbas.v3i2.223
Network:
Scimatic Chain (ID: 481)
Loading...
Blockchain Readiness Checklist
Authors
Abstract
Journal Name
Year
Title
5/5
Creates 1,000,000 NFT tokens for this article
Token Features:
  • ERC-1155 Standard NFT
  • 1 Million Supply per Article
  • Transferable via MetaMask
  • Permanent Blockchain Record
Blockchain QR Code
Scan with Saymatik Web3.0 Wallet

Saymatik Web3.0 Wallet