Types and Classification of Pesticides Used on Tomatoes Grown in Mwea Irrigation Scheme, Kirinyaga County, Kenya
Momanyi, Violet Nakhungu, N. Keraka, Margaret, A. Abong’o, Deborah, N. Warutere, Peterson
European Journal of Nutrition & Food Safety · pp. 83–97 · Published 27 Nov 2019
10.9734/ejnfs/2019/v11i230145Abstract
This study evaluated 403 farmers from the open field and greenhouse farms in Mwea Irrigation Scheme on the types and classification of pesticides used to control pests and diseases on tomatoes, in July 2017 to June 2018. Five greenhouse tomato farmers were purposively selected while sample size of 196 open field farmers, calculated using Fisher’s formula. Cross-Sectional design using a structured questionnaire, face to face interviews and focus group discussions with 201 farmers in the eight wards, Gathingiri, Tebere, Kangai, Wamumu, Murinduko, Nyangati, Mutithi and Thiba. Accuracy of the data was ensured by pre-testing the questionnaire on tomato farmers from a neighbouring Maragua sub-county, errors were corrected, and omissions added to the questionnaire. Descriptive statistics was carried out for frequencies, percentages, means, standard errors, variance and data subjected to T-test at 95% Confidence Interval to determine significant differences between variables. Results from the interviews revealed that farmers applied 57 and 12 pesticides under different trade names on tomatoes in the open field and greenhouse farms respectively. Pyrethroids, carbamates, nicotinoids, organophosphates, and organochlorines were applied on tomatoes among others. The 20 and 12 pesticides mainly used in open field and greenhouse farms were WHO Class II (60%) and WHO Class III (42%), respectively. Farmers heavily relied on different types of pesticides to control a wide range of major pests and diseases as Tuta absoluta and blight respectively. Chlorantraniliprole and mancozeb are the main pesticides used in tomatoes. Most pesticides, WHO toxic class II including pyrethroids and carbamates should be used following manufacturers’ recommendations to prevent human health risks. Training and awareness by the Ministry of agriculture, Kirinyanga County government are needed on use of less toxic pesticides equally effective in controlling pests and diseases, such as WHO classes III and IV and bio-pesticides with minimal negative effects on human health.
Cited by 4
Brian Polo, Kelly L. Bennett, Sonia Barasa · BMC Genomics · 2025
Sheridan Wanjiku Philip, Vincent Madadi Odongo, Shem Oyoo Wandiga · F1000Research · 2022
N. Sh. Azimova, H. M. Khamidova, I. M. Khalilov · Микология и фитопатология · 2024
Hannah Karuri · Rhizosphere · 2023
Related research
- Synthetic Elicitor-Induced Defense Responses in Tomato (Solanum lycopersicum) Cultivated in Côte d'Ivoire against Bacterial Wilt Caused by Ralstonia solanacearum — shares topic coverage
- Antimycotic Potential of Alum on Postharvest Deterioration of Tomato — shares topic coverage
- Gene Editing for Disease Resistance in Crops: Success Stories and Challenges — shares topic coverage
- Effect of Hybrid Photovoltaic Solar Drying Method on the Physicochemical Properties of Fresh and Dried Tomato Slices — shares topic coverage
- A Review on Postharvest Storage, Processing and Preservation of Tomatoes (Lycopersicon esculentum Mill) — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
4
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.