Newmarket, Ontario (Head Office)
1175 Stellar Drive, Unit #5
Newmarket, ON L3Y 7B8
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CANNA Terra Vega is a complete one-part nutrient for the growing stage, a soil and potting-mix plant fertilizer made to support strong vegetative growth and a healthy foundation before flowering.
Terra Vega is designed for the vegetative stage, where the plant focuses on building structure and capacity. Healthy, powerful growth is characterized by large vital shoots and lush root development, and Terra Vega is formulated to encourage that kind of strong plant development. This early strength matters because it forms the necessary base for abundant flowering in the next stage.
As a complete one-part nutrient, Terra Vega is intended to provide all essential elements needed during the growing stage. It is described as rich in nitrogen, supporting full absorption of water and nutrients when plants are actively pushing vegetative growth. It is also described as containing high value iron chelates and trace elements, with the goal of keeping key elements available for direct uptake during this phase.
Terra Vega is easy to use, dissolves easily, and dissolves directly, which helps keep day-to-day nutrition simple without turning the grow into constant adjustments. It is also described as extremely suitable for automatic run-to-waste irrigation systems, while still fitting hand watering setups in soil-style cultivation. If you want a streamlined base for the growth phase, the one-part format keeps the role clear: dependable vegetative nutrition in a single product.
This nutrient is suitable for growing in containers and beds, and it is suitable for growing in pots and open soil. It can be used for both indoor and outdoor cultivation, which makes it a flexible choice for soil gardeners and container growers who want the same vegetative-stage foundation across different environments. Terra Vega is also described as suitable for pre-fertilized types of soil and soilless mixes, including potting mixes that already have a base nutrient charge and stronger pH control, where consistent vegetative support is the goal.
CANNA Terra Vega is a good fit for growers who want a complete one-part nutrient for the vegetative stage, with rich in nitrogen support, iron chelates and trace elements, and broad suitability across pots, open soil, containers, beds, and indoor and outdoor cultivation.
Step-by-step mixing and feeding instructions for Canna Terra Vega - 1 Litre.
Fill your reservoir or watering container with clean, room-temperature water first. Shake the bottle of Canna Terra Vega - 1 Litre well before every use. Using the feeding schedule below, measure the recommended dose and add it directly to the water while stirring. Allow the solution to mix fully before adding any other fertilizers, additives, or supplements.
Always add nutrients to water — not the other way around. Mix thoroughly between products to ensure an even, stable nutrient solution.
Vegetative stage — Terra Vega
Flowering stage — Terra Vega
Warning – Important Safety Information
This product may cause mild skin irritation and eye irritation. Avoid unnecessary contact with skin, eyes, and clothing. Use only as directed.
General safety precautions
Read and follow all instructions on the product label and any accompanying documentation before use. Keep out of reach of children and pets. Do not ingest. Avoid breathing vapours, mist, or dust that may be generated during handling or use.
Wear appropriate personal protective equipment (PPE), such as protective gloves, long sleeves, long pants and closed-toe footwear. When there is a risk of splashing or airborne particles, use safety glasses or other suitable eye and face protection.
First aid – skin contact
IF ON SKIN OR HAIR: Remove contaminated clothing immediately. Rinse skin with clean water for several minutes, then wash with mild soap and water. If irritation or redness develops and persists, seek medical attention. Wash contaminated clothing before reuse.
First aid – eye contact
IF IN EYES: Rinse cautiously with clean water for several minutes, keeping eyelids open. Remove contact lenses if present and easy to do. Continue rinsing. If irritation persists, obtain medical advice.
First aid – ingestion and inhalation
IF SWALLOWED: Rinse mouth thoroughly with water. Do not induce vomiting unless instructed by a medical professional. Seek medical attention if you feel unwell.
IF INHALED: Move the person to fresh air and keep them comfortable for breathing. If coughing, breathing difficulty, dizziness or other symptoms occur, seek medical assistance.
Storage and handling
Store this product in its original closed container, in a cool, dry and well-ventilated area. Protect from extreme temperatures and direct sunlight. Keep container tightly sealed when not in use.
Avoid release to drains, natural waterways or outdoor soil. Dispose of unused product and empty containers in accordance with local regulations and the directions on the label.
Important: If medical advice is needed, keep the product label or container available. Always follow the specific instructions and safety recommendations provided by the manufacturer. This safety notice is intended as general guidance and does not replace official label directions or documentation.
| Total Nitrogen (N) | 2.6% |
|---|---|
| Ammoniacal Nitrogen (N) | 0.6% |
| Nitric Nitrogen (N) | 2.0% |
| Phosphorus Pentoxide (P2O5) | 1.1% |
| Potassium Oxide (K2O) | 3.1% |
| Total Magnesium (Mg) | 0.6% |
| Sulfur (S) | 0.2% |
| Boron (B) | 0.005% |
| Copper (Cu) | 0.001% |
| Chelated Iron (Fe) | 0.014% |
| Total Manganese (Mn) | 0.01% |
| Molybdenum (Mo) | 0.001% |
| Zinc (Zn) | 0.005% |
Ammoniacal Nitrogen (N) is a plant-available form of ammonium (NH₄⁺) that provides a steady, gentle source of nitrogen for healthy green growth. Unlike fast-release nitrogen types, ammoniacal nitrogen feeds plants slowly, helps stabilize root-zone pH, and works well in cooler temperatures. It is commonly used during early vegetative growth because it supports strong leaf development without burning young roots. If plants show pale leaves, slow growth, or weak stems, they may need more available ammoniacal nitrogen.
Boron is essential because it stabilizes cell walls, supports root and shoot growth, and regulates sugar movement throughout the plant. What makes boron unique is its limited mobility and extremely narrow range between deficiency and excess, which causes new growth to show symptoms rapidly when levels fall out of balance.
Chelated iron is important because it keeps iron usable for plants even when growing conditions would normally lock iron out, helping prevent the classic yellow-new-leaf symptom caused by low chlorophyll production. It is unique from other iron sources because the chelation protects iron from becoming insoluble, making it a more reliable way to correct iron-related chlorosis when regular iron can fail.
Copper is important because it powers key enzymes that support energy use, tissue strength, and stress protection, and it’s unique from many other micronutrients because plants need it in tiny amounts but can be harmed quickly if copper becomes excessive.
Molybdenum is important because it helps plants convert nitrogen into usable building blocks for chlorophyll and growth, and it’s unique from many nutrients because it mainly supports enzyme-driven “nutrient use” rather than directly building plant tissue.
Nitric nitrogen is important because plants can absorb it quickly to build chlorophyll and steady green growth, which powers photosynthesis. It’s unique because it tends to influence root-zone pH differently than other nitrogen forms and often supports more predictable, balanced growth when paired with the right mineral and environmental conditions.
P2O5 is important because it tells you how much phosphorus is available in a feeding program, and phosphorus drives root development, energy transfer, and flowering performance—making it uniquely different from many other nutrients because it’s commonly listed as a standardized “oxide equivalent” value rather than as the nutrient form plants directly absorb.
Potassium oxide (K2O) is important because it shows how much potassium is available to support water control, sugar movement, and strong plant structure, which directly impacts growth quality and stress tolerance. It’s unique because K2O is mainly a label standard for potassium content, not a separate nutrient form the plant absorbs, so understanding it helps you avoid mixing up label numbers with real potassium needs.
Sulfur is important because plants need it to build key amino acids and proteins that drive real growth, strong structure, and efficient use of nitrogen, making it uniquely different from “look-alike” nutrients that may change leaf color without supporting the plant’s core building process.
Total magnesium is important because magnesium powers chlorophyll and energy use, helping plants stay green, turn light into growth, and use other nutrients efficiently—and it’s unique because its problems often come from nutrient balance and uptake competition, not just a simple shortage.
Total manganese matters because it supports photosynthesis and enzyme activity that keep new growth green and vigorous, and it’s unique because “total” manganese measures what’s present but not necessarily what the plant can absorb—so pH and root conditions decide whether manganese helps or harms.
Total Nitrogen is important because it directly drives leafy growth, chlorophyll production, and overall growth speed, which sets the pace for the entire plant. It’s unique because the “total” number can include different nitrogen forms that behave differently in the root zone, meaning the same total amount can produce very different results depending on the nitrogen type and plant stage.
Zinc is important because it powers key enzymes and helps regulate growth hormones, which directly controls healthy new leaves, normal internode spacing, and strong growth tips; it’s unique compared to many other micronutrients because zinc problems often show up as distorted, undersized new growth and stunting, not just simple leaf yellowing.
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