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  • PI Snailkill (Metaldehyde 2.5% Pellet )

    PI PI Snailkill Insecticide (Metaldehyde 2.5% Pellet) - 1 KG

    Technical Content : Snailkill contains Metaldehyde 2.5% in Pellet form PI SNAILKILL is an excellent and renowned molluscicide which is a sure death to snails and slugs that are harmful and various pests to many important agricultural crops like Potato, Sweet potato, Carrot, Citrus plants, Grapevine, Tea plantations, Paddy seedlings and also in storage cellars, green houses, mushroom beds etc. SNAILKILL is a ready to use molluscicide. Mode of Action SNAILKILL pellets acts on the target pests through contact action. On ingestion, it is rapidly hydrolysed to acetaldehyde, this causes the mollusc to produce excess mucus, dehydrate and ultimately die. Dosage: Crops Pests Dosage (Per Ha.) Citrus, Rubber, Rice, Tea and Vegetables Snails, Slugs, Giant, African Snails Available in ready to use 2.5% Dust. Note - For field-scale applications, it would be best to use 15 to 25 kg per acre in crops like citrus, rubber, rice, tea & vegetable Method of application Find out affected areas in the evening, place small quantity of Snailkill baits (about 50-80 g per 100 sq. ft. area) near crawling path, near plant base, between the rows of crop plants or any other place where the snails and slugs are a nuisance Frequency of application: Depends on pest incidence or severity of disease. Manufacturing Or Marketing Company - PI Industries LTD. Precautions Use protective hand gloves during use of this insecticide. Do not eat, drink or smoke during application of product. Store in a cool, dry and ventilated place under lock and key and avoid prolonged storage. Keep out of the reach of children and pets.

    Rs. 1,202.25

  • PI Keefun Insecticide - 250 ML Crops PI Keefun Insecticide - 250 ML Pests

    PI PI Keefun Insecticide

    Product Description PI Keefun is a METI (Mitochondrial Electron Transfer Inhibitor) insecticide that is effective against a broad range of sucking and chewing pests, including aphids, thrips, diamondback moth, tobacco caterpillar, scale insects, and some fungal diseases. It is also effective against some fungal diseases. Keefun is a contact and ingestion insecticide, meaning that it kills pests when they come into contact with it or ingest it. Keefun works by inhibiting the electron transport chain in the mitochondria of the pest's cells. This leads to a cessation of the production and supply of energy in the cell, resulting in the death of the pest. The electron transport chain is a series of proteins that transfer electrons from one molecule to another, releasing energy in the process. Keefun blocks one of the proteins in the electron transport chain, preventing the flow of electrons and halting the production of energy. Mode of Action PI Keefun works by inhibiting the electron transport chain in the mitochondria of the pest's cells. This leads to a cessation of the production and supply of energy in the cell, resulting in the death of the pest. The electron transport chain is a series of proteins that transfer electrons from one molecule to another, releasing energy in the process. Keefun blocks one of the proteins in the electron transport chain, preventing the flow of electrons and halting the production of energy. Features In addition to its broad-spectrum activity and effective mode of action, PI Keefun also has a number of other features that make it a desirable insecticide. These features include: Long residual activity Low toxicity to mammals and birds Environmentally friendly Benefits The use of Keefun can provide a number of benefits to farmers, including: Protection of crops from a wide range of pests Help to prevent crop losses Improvement of crop quality and yield Reduction of the need for other pesticides Safety for humans and the environment Dosage The recommended dosage of Keefun varies depending on the crop and the pest being targeted. For most crops, the recommended dosage is 2 ml per liter of water. Targeted Disease PI Keefun is effective against a variety of insect pests, including: Psylla Thrips Diamondback moth Tobacco caterpillar Scale insects Some fungal diseases Target Crops PI Keefun can be used on a variety of crops, including: Vegetables – Tomato, Chili, Brinjal, Cucurbits Fruits – Pomegranate, Mango, papaya Field crops – Wheat, Paddy, Soyabean Frequency of application - Depends on pest incidence or severity of disease. Compatibility - Compatible with sticking agents Frequency of application - Depends on pest incidence or severity of disease. Manufacturing Or Marketing Company –PI Industries Ltd. Mode Of Formulation – Emulsified Mobility In Plant - Systemic Application Method Direction Of Use- Foliage Spraying

    Rs. 869.00 - Rs. 3,190.00

  • PI Kitazin Insecticide - 100 ML Crops PI Kitazin Fungicide - 100 ML Diseases

    PI PI Kitazin Insecticide

    Product Description PI Kitazin is a broad-spectrum, systemic fungicide with curative and protectant action. It is used to control a wide range of fungal diseases in fruits, vegetables, and field crops. Active ingredient: Kitazin 48% EC (propiconazole) Mode of action: It is absorbed by the plant and translocated throughout the tissues. It works by inhibiting the ergosterol synthesis pathway, which is essential for fungal cell membrane formation. Application:  It can be applied as a foliar spray or drench. The dosage and frequency of application will vary depending on the crop and the disease being controlled. Crop Disease Dosage (ml/acre) Rice Blast, sheath blight, and brown spot. 200 ml per acre Wheat Leaf spot and rust 150 ml per acre Maize Northern corn leaf blight and gray leaf spot 150 ml per acre Cotton Angular leaf spot and early blight 100 ml per acre Vegetables Angular leaf spot, damping off, fruit rot, early blight and late blight 100 - 150  ml per acre  Benefits: Kitazin is effective against a wide range of fungal diseases Curative and protectant action Systemic activity Low toxicity to mammals and fish Moderate insecticidal activity against hoppers Phytotonic effect on the plants Manufacturer: ‎PI Industries Available Packing: Available in 100 ml, 250 ml, 500 ml and 1 liter packs. Compatibility - Compatible with most pesticides Method of Application- Spray Safety precautions: Wear protective clothing and gloves when handling PI Kitazin . Avoid contact with eyes and skin. Wash hands thoroughly after handling. Store in a cool, dry place.  

    Rs. 288.00 - Rs. 920.00

  • PI Roket Insecticide Pests PI Roket Insecticide Crop

    PI PI Roket Insecticide

    Product Description PI ROKET is a ready to use combi product. It is a non-systemic insecticide having contact and stomach action. It is effective against several insect pests (both chewing and sucking types). Technical Content : Profenofos 40% + Cypermethrin 4%EC Features Ready to use formulation- Synergestic effect with stomach and contact action. Fast knock down and excellent control on hard to control pest. Broad Spectrum- Effective control of eggs and different larval stages of insect. Translaminar action- Controls the pest which are present on lower side of leaf. Application Start application when the insect infestation reaches economic threshold level and repeat at an interval of 10-15 days depending upon environmental condition. Water dilution depends on the type of spray pump and crop growth. Dosage also depends on the pest intensity and crop growth. Stop last application 14 days before harvest of crop. Dosage : Use PI Roket 1000-1500 ml (440 - 660 g a.i.) per Hectare Precautions: Do not spray against the wind direction. Read & follow all instructions on the label & leaflet carefully. Save the container with the label to show to the physician in case of accidental poisoning. Do not smoke, eat or drink during application. Wash hands and body thoroughly after spraying.

    Rs. 280.00 - Rs. 1,070.00

  • PI Fosmite Insecticide Crops PI Fosmite Insecticide Insects

    PI PI Fosmite Insecticide

    Technical Content : Organo-phosphorous 50% EC Features Broad Spectrum- Works on wide range of chewing and sucking pest. Works even on Mites. Safe and Convenient- Does not leave any undesirable residues at recommended dose. Relatively safer for beneficial insects. Compatible with most commonly used pesticides. Application Method Use 150 - 200 Litre of water volume per acre for effective spray.

    Rs. 278.00 - Rs. 570.00

  • PI Vibrant Insecticide - 1 KG Pests PI Vibrant Insecticide - 1 KG Crops

    PI PI Vibrant Insecticide - 1 KG

    Technical Content : Thiocyclam Hydrogen Oxalate 4% GR Benifits Plants protected by VIBRANT will achieve their full potential and result into more number of Sturdy and Productive Tillers. Application of VIBRANT at recommended time provides effective protection against stem borer in early phase of crop life cycle.Larvae trying to enter the base of Rice plant are checked as they die quickly after coming under influence of VIBRANT treatment The high quality granule formulation is easy to broadcast and dissolves well in water. Dosage : Use PI Vibrant 12.5 kg per Hectare.

  • PI Nominee Gold Herbicide - 100 ML PI Nominee Gold Herbicide - 100 ML Crops

    PI PI Nominee Gold Herbicide - 100 ML

    Technical Content : Bispyribac Sodium 10% SC Features NOMINEE GOLD controls major grasses, sedges and broad leaf weeds of rice. NOMINEE GOLD offers a wide application window from 2-5 leaf stages of weeds. NOMINEE GOLD gives freedom of need based application only when the weeds emerge. NOMINEE GOLD is safe for rice. NOMINEE GOLD gets absorbed quickly in weeds and results are unaffected even if it rains after 6 hours of application. NOMINEE GOLD has low dosage thus cost effective. Application Method Shake the bottle well before well Targeted weeds should directly be exposed to NOMINEE GOLD spray Use Flat fan / Flood jet nozzle only Ensure uniform spray only Avoid Spray if rain is expected in 6 hrs. Re-flood the field within 48 - 72 hrs. of application. Maintain water for 5-7 days to suppress weed emergence. Dosage : Use PI Nominee Gold 200 - 250 ml (20 - 25 g a.i.)

    Rs. 587.00 - Rs. 1,118.00

Insecticides - Agriplex

Here are some High-Quality Insecticides or Pesticides to Control Insects or Pests. Buy the Best Quality and 100% genuine Insecticides online at Agriplex for the management of Insects.

Insecticides are pesticides used to kill insects. They include ovicides and larvicides used against insect eggs and larvae, respectively. Insecticides are used in agriculture, medicine, industry, and by consumers.

The mode of action describes how the pesticide kills or inactivates a pest. It provides another way of classifying insecticides. Mode of action can be important in understanding whether an insecticide will be toxic to unrelated species, such as fish, birds, and mammals.

Insecticides may be repellent or non-repellent. Social insects such as ants cannot detect non-repellents and readily crawl through them. As they return to the nest they take insecticide with them and transfer it to their nestmates. Over time, this eliminates all of the ants including the queen.

Types of insecticides

There are three different types of insecticides. They are

Systemic insecticides
 Systemic insecticides, after uptake, are distributed systemically throughout the whole plant. When insects feed on the plant, they ingest the insecticide. Systemic insecticides produced by transgenic
plants are called plant-incorporated protectants (PIPs). For instance, a gene that codes for a specific Bacillus thuringensis biocidal protein was introduced into corn and other species.

Contact insecticides
Contact insecticides are toxic to insects upon direct contact. These can be inorganic insecticides, which are metals and include the commonly used sulfur, and the less commonly used arsenates, copper, and fluorine compounds. Contact insecticides can also be organic insecticides, i.e. organic chemical compounds, synthetically produced, and comprising the largest numbers of pesticides used today. Or they can be natural compounds like pyrethrum, neem oil, etc.

Insecticides in Agriculture: A Double-Edged Sword

Insecticides are a crucial tool in a farmer's arsenal, protecting crops from destructive insects that can devastate yields. Their use has played a significant role in increasing agricultural productivity, but it's not without drawbacks.

Classification of insecticides based on chemical nature

Based on their chemical nature, insecticides are classified into four groups:

        1. Organic insecticides
        2. Synthetic insecticides
        3. Inorganic insecticides
        4. Miscellaneous compounds

Benefits:

  • Protecting Crops: Insecticides effectively control insect pests that damage crops. This can be anything from aphids munching on leaves to beetles burrowing into fruits. By eliminating these pests, farmers can ensure they harvest a healthy crop.
  • Increased Yields: Reduced insect damage translates to a greater quantity of crops being brought to market. This is particularly important in feeding the growing global population.
  • Disease Prevention: Some insects transmit diseases to plants. Insecticides can help prevent these diseases, further protecting crops.

Drawbacks:

  • Environmental Impact: Insecticides can harm non-target organisms like beneficial insects, pollinators (bees, butterflies), and predators that naturally keep pest populations in check. This disrupts the ecosystem and can lead to unintended consequences.
  • Water and Soil Contamination: Insecticide runoff can contaminate water sources and harm aquatic life. Residues can also linger in the soil, affecting future crops.
  • Pest Resistance: Overuse of insecticides can lead to insects developing resistance, rendering the insecticide ineffective. This necessitates using stronger chemicals or finding alternative pest control methods.

The Future of Insecticides:

The use of insecticides in agriculture is a complex issue. While they provide undeniable benefits, their potential downsides cannot be ignored. The focus is now on Integrated Pest Management (IPM) which combines various methods to control pests, minimizing reliance on chemical insecticides. This includes:

    • Promoting beneficial insects that prey on pests.
    • Planting pest-resistant crop varieties.
    • Using targeted application methods to minimize environmental impact.

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