🧱 10 Ingredients • 6 Presets • Quality Scores • US Quarts First

Potting Mix DIY Recipe Calculator: US Quarts and Quality Scores

Enter volumes of peat, coco coir, perlite, compost, and more in US quarts to build your custom potting recipe. Get drainage, water retention, and aeration scores, estimated pH range, a donut chart breakdown, and a printable PDF recipe card. Six preset recipes included. Free, no signup.

🧱 10 Ingredients 📏 US Quarts First 📊 Donut Chart ✨ Quality Scores 📄 PDF Recipe Card 📱 WhatsApp Share
🧱 Potting Mix DIY Recipe Calculator

Load a preset or enter ingredient volumes in quarts. The calculator shows total volume, quality scores, pH estimate, and a donut chart breakdown of your recipe.

Ingredient Volumes
Peat Moss qt
Coco Coir qt
Perlite qt
Vermiculite qt
Compost qt
Worm Castings qt
Bark Fines qt
Coarse Sand qt
Biochar qt
Topsoil qt
Output Units
🧱
Your Recipe Analysis Will Appear Here
Load a preset or enter ingredient volumes in quarts, then click Calculate My Recipe.
DIY Potting Mix Basics

Why Making Your Own Potting Mix Beats Buying Bags from Big Box Stores

Walk through the garden department of any Home Depot, Lowe’s, or Walmart in spring and you will find dozens of bags of potting soil competing for shelf space. Some cost two dollars a bag, some cost twenty. Most look nearly identical. And most experienced container gardeners have learned, through disappointment, that bagged potting mixes are wildly inconsistent between brands, between batches of the same brand, and between years. A bag that worked beautifully last season may arrive this season compacted, hydrophobic (water-repellent), or packed with filler ingredients that have no business being in a premium mix.

Making your own potting mix takes about twenty minutes and lets you control exactly what goes into the medium your plants will live in for an entire growing season. You choose the base (peat or coco coir), the drainage amendment (perlite), the fertility source (compost, worm castings), and any specialized ingredients for your specific crops. You measure by quarts in US standard measurements, the same unit used on every bag at the farm supply store. And you know exactly what you made, so you can reproduce it next season, adjust the ratio based on what worked, and scale up or down as needed.

Cost comparison: Premium bagged potting mix typically costs 0.15 to 0.30 USD per quart retail. DIY from bulk ingredients at a farm supply typically runs 0.05 to 0.12 USD per quart. For a 40-quart container garden, that is a 3 to 10 dollar savings per batch, and the quality is more consistent and customizable.

Understanding What Each Ingredient Does

Peat moss is the traditional workhorse base medium for potting mixes across North America. It holds moisture well, has a loose, fibrous structure that roots penetrate easily, and is lightweight. Its main drawbacks are a strongly acidic pH (3.5 to 4.5) that requires limestone addition for most vegetables, and the environmental concern of slow peat bog regeneration. Most commercial potting mixes are 60 to 70 percent peat moss.

Coco coir is the fibrous material extracted from coconut husks, a byproduct of coconut processing that would otherwise go to waste. It behaves similarly to peat in a mix but holds slightly less moisture, drains slightly better, and starts at a near-neutral pH (5.8 to 6.5) that requires no lime correction for most crops. Coco coir has become the preferred peat substitute for growers who prioritize sustainability and pH simplicity.

Perlite is volcanic glass that has been rapidly expanded by heat, producing lightweight white spheres full of tiny air pockets. Perlite adds no nutrients, holds almost no water, and drains instantly, making it the primary tool for improving drainage and aeration in any potting mix. Add more perlite for drought-tolerant plants, less for moisture-loving ones. The potting mix calculator’s drainage and aeration scores rise directly with perlite percentage.

Vermiculite is expanded mica that acts as a sponge, absorbing and slowly releasing moisture and nutrients. Unlike perlite, vermiculite holds water and is used when consistent moisture around roots is important. Seed starting mixes commonly combine perlite and vermiculite to get both drainage and moisture retention. Vermiculite compresses over time and is not a good long-term structural amendment.

Compost provides slow-release nutrients, beneficial microorganisms, and humus that improves the cation exchange capacity of the mix (its ability to hold onto nutrients rather than losing them with each watering). Good compost contains a balance of carbon and nitrogen and has a near-neutral pH. Avoid adding more than 20 to 30 percent compost to container mixes, as it can become compacted and wet when overused.

Worm castings are concentrated compost processed through earthworm digestive systems. They contain plant-available nutrients, beneficial microbes, and plant growth hormones in a form that is immediately accessible to plant roots. Worm castings improve any potting mix and are not possible to over-apply at the 10 to 20 percent range. They are more expensive than bulk compost but require much less volume for the same fertility effect.

Bark fines (also called orchid bark or composted bark) add large air pockets to a mix and are the primary ingredient in orchid growing media. Bark breaks down slowly, maintains mix structure over a full growing season, and creates excellent drainage channels for moisture-sensitive plants like orchids, bromeliads, and some cacti.

Coarse sand adds drainage and weight to potting mixes that need to stay stable in the wind (outdoor patio pots, for example). Use horticultural coarse sand or chicken grit: never use fine beach or playground sand, which can actually worsen drainage by filling air pockets between other particles.

How the Calculator Works

How the Potting Mix Calculator Scores Drainage, Retention, and Aeration

The calculator’s quality scores (drainage, water retention, and aeration, all on a 1 to 10 scale) are weighted averages of each ingredient’s individual properties, proportional to its percentage in the total mix. Each ingredient in the database has pre-assigned scores derived from published horticultural research on growing media properties. As you adjust ingredient volumes, the scores update to reflect the new mix composition.

Reading the Quality Scores

A drainage score of 7.0 or higher means water flows through the mix readily and is unlikely to pool or become waterlogged. This is ideal for succulents, cacti, lavender, and root vegetables. A drainage score below 4.0 means the mix holds significant water and will stay moist for days after watering: ideal for moisture-loving plants like ferns and lettuce, but risky for plants prone to root rot. A water retention score above 7.0 means the mix stays moist between waterings, which reduces how often you need to water but increases root rot risk if drainage is also high. The aeration score reflects the volume of air pockets available to roots. Most plants need an aeration score of at least 5.0 for healthy root respiration.

The pH Estimate

The estimated pH range is a weighted average of the pH ranges of your chosen ingredients. It is an approximation, not a laboratory measurement. Always test your finished mix with a pH meter or pH test kit before planting, especially if you are using peat moss (strongly acidic) or biochar (strongly alkaline) in significant quantities. Add dolomite lime to raise pH (about 1 tablespoon per gallon of mix per 0.5 pH unit correction). Add elemental sulfur to lower pH (about 1 teaspoon per gallon for 0.5 unit correction).

The Donut Chart

The donut chart shows each ingredient’s percentage of the total mix volume as a colored slice. Hover over each slice to see the ingredient name, volume in quarts, and percentage. This gives you a quick visual check that your intended ratios match the ingredient proportions you actually entered. The PDF recipe card includes the ingredient table with both quart volumes and percentages for reference at the mixing bench.

Real US Grower Examples

Three Real US Home Garden Potting Mix Recipes from Different Growing Situations

These three recipes cover the most common home garden scenarios in the United States, using ingredients available at farm supply stores, garden centers, and online suppliers across the country.

Georgia, 5-Gallon Bucket Tomatoes
All-Purpose Container Mix for Heavy Feeders
Coco coir8 qt (40%)
Perlite6 qt (30%)
Compost4 qt (20%)
Worm castings2 qt (10%)
Total20 qt (5 gal)
Drainage score~5.8/10
Est. pH6.1 to 6.7
Ohio, Seedling Trays Under T5 Lights
Fine-Texture Seed Starting Mix, Low Fertility
Peat moss10 qt (50%)
Perlite5 qt (25%)
Vermiculite5 qt (25%)
Total20 qt (5 gal)
Drainage score~5.3/10
Est. pH4.8 to 5.8
Add1 tbsp lime per batch
Arizona, Patio Succulent Collection
Fast-Drain Succulent and Cactus Mix
Coco coir5 qt (25%)
Perlite10 qt (50%)
Coarse sand5 qt (25%)
Total20 qt (5 gal)
Drainage score~7.7/10
Est. pH6.3 to 6.8
Expert Tips

Six Expert Tips for Mixing Your Own Potting Media at Home

01
Mix in a Tarp or Wheelbarrow, Not in Bags

Combine all ingredients in a large tarp spread on the ground or in a wheelbarrow before filling pots. Attempting to mix in a pot or in the bags themselves leads to uneven distribution, with dry perlite floating to the top and heavy compost settling to the bottom. Spread all ingredients in layers on the tarp, then fold the tarp edges over and roll the pile to mix, similar to kneading bread dough. For large batches, a cement mixer rented from a US hardware store for an afternoon makes the job fast and thorough.

02
Pre-Wet Peat and Coco Before Mixing

Both peat moss and coco coir can become hydrophobic (water-repellent) when dry. If you mix them dry into a pot and then water, the water runs around the dry clumps rather than through them, leaving dry pockets in the root zone. Pre-wet your peat or coco coir the day before mixing: pour it into a large bin, add warm water gradually while turning, and let it absorb overnight. The material should feel evenly moist but not wet to the touch before you incorporate it with perlite and other ingredients. Pre-wetted coco and peat also blend more evenly with other dry ingredients.

03
Add Lime to Peat-Based Mixes Before Using

Peat moss has a pH of 3.5 to 4.5, which is too acidic for most vegetables and herbs that prefer pH 6.0 to 6.8. Before planting into a peat-based mix, add dolomite lime (a calcium and magnesium carbonate) at a rate of approximately 1 tablespoon per gallon of mix (or about 5 tablespoons per 5-gallon batch). Mix the lime evenly throughout and wait 48 hours before planting, since lime takes time to fully react. The calculator’s pH estimate for peat-heavy mixes will read below 5.5: the lime correction brings it up to the vegetable-friendly range. Coco coir mixes do not need lime correction for most crops.

04
Measure Quarts with a Dedicated Container

The quart is the standard US measurement for potting media, and it is the unit on the front of most perlite, vermiculite, and coco coir bags sold in the US. Keep a clean 1-quart plastic container (an old yogurt quart tub works perfectly) dedicated to measuring potting mix ingredients. Scoop each ingredient into the tub, level off the top, and dump into your mixing area. This takes the guesswork out of ratios and makes your recipes exactly reproducible season after season. One US gallon equals 4 quarts: a 5-gallon mixing batch equals 20 quarts total, which is a practical working batch for most home container gardens.

05
Test Your Finished Mix Before Planting

After mixing, do two quick tests before filling pots. First, the drainage test: fill a small pot with your mix, water it thoroughly, and time how long water flows from the drain holes. It should drain freely within 30 to 60 seconds for most crops. If standing water sits on top for more than a minute, add more perlite. Second, the pH test: take a handful of pre-wetted mix and use a soil pH meter (available at most US garden centers for under $20) to check the reading. Adjust before planting rather than after plants are growing, since pH correction is harder once plants are established. Write down your final recipe and test results so you can reproduce or refine it next season.

06
Buy Ingredients at Farm Supply Stores, Not Garden Centers

Farm supply chains like Tractor Supply, Rural King, and regional co-ops sell perlite, peat moss, vermiculite, and compost in much larger bags at significantly lower per-quart cost than hardware store or garden center retail bags. A 4-cubic-foot bale of peat moss from a farm supply typically costs about the same as a 2-cubic-foot bag at a garden center, cutting your peat cost nearly in half. Perlite in 4-cubic-foot bags (about 100 quarts) is a fraction of the cost of quart-sized retail bags. For a gardener mixing 50 to 100 gallons of potting mix per season, buying in bulk reduces ingredient cost by 40 to 60 percent compared to small retail bags.

Quick Reference

Quick Reference: Potting Mix Ingredient Properties Comparison

Use this table to select ingredients and adjust ratios for your specific crop needs. Drainage, retention, and aeration scores correspond to the calculator’s scoring system (1 to 10). pH ranges are natural pre-amendment values.

Ingredient Drainage Water Retention Aeration Natural pH Best Use
Peat Moss2/109/105/103.5 to 4.5General base, add lime for most crops
Coco Coir5/108/106/105.8 to 6.5Sustainable peat alternative, most crops
Perlite9/101/109/107.0 to 7.5Drainage and aeration for all mixes
Vermiculite3/108/105/107.0 to 7.5Moisture retention for seeds and seedlings
Compost5/106/104/106.0 to 7.0Fertility and microbiology for all crops
Worm Castings5/107/104/106.5 to 7.0Concentrated fertility, 10-20% max
Bark Fines8/103/108/105.0 to 6.0Orchids, bromeliads, moisture-sensitive crops
Coarse Sand9/101/107/107.0 to 7.5Succulents, cacti, heavy pots for wind resistance
Biochar6/105/106/107.5 to 9.0Microbe habitat, CEC improvement, 5-15% max
Topsoil3/107/103/106.0 to 7.0Raised beds only, avoid in containers
ReferenceMore perliteMore coco/peatMore perliteLime raises pHSulfur lowers pH

Source: Container media properties from Penn State Extension greenhouse and nursery management guides and University of Maryland Extension container gardening publications. Scores are approximate and reflect typical product behavior; actual values vary by brand, particle size, and processing method.

Frequently Asked Questions

16 FAQs About DIY Potting Mix Ingredients, Ratios, and Recipes

What ingredients do I need for a basic potting mix?▼
A basic all-purpose container potting mix needs three core components. The base medium (60 percent): peat moss or coco coir, which holds moisture and provides a loose structure for roots. The drainage amendment (20 to 30 percent): perlite, which adds drainage channels and air pockets. The nutrient source (10 to 20 percent): compost or worm castings, which supply slow-release fertility and beneficial microorganisms. A reliable starting ratio is 3 parts peat or coco coir, 1 part perlite, and 1 part compost (60/20/20). Enter these volumes in the calculator to see drainage, retention, and aeration scores before mixing.
What is the difference between peat moss and coco coir?▼
Peat moss and coco coir are both used as the primary moisture-holding base in potting mixes, but differ significantly. Peat moss is harvested from slowly-renewable peat bogs in Canada and Europe, and has a naturally acidic pH of 3.5 to 4.5 that requires lime correction for most vegetables. Coco coir is made from coconut husk fiber, a renewable byproduct of coconut processing, and has a near-neutral pH of 5.8 to 6.5 that needs no lime correction for most crops. Both hold moisture well. Coco coir has slightly better natural drainage and aeration. For most container vegetables and herbs, coco coir is the more sustainable and pH-convenient choice. For acid-loving plants like blueberries, peat’s natural acidity is beneficial.
How much perlite should I add to potting mix?▼
Most potting mixes need 15 to 30 percent perlite by volume. The standard for all-purpose container growing is 20 percent, which balances drainage, aeration, and moisture retention. For succulents, cacti, lavender, and rosemary that prefer drier conditions, increase perlite to 40 to 60 percent. For moisture-loving plants like ferns, lettuce, and basil, keep perlite at 15 to 20 percent. For seed starting mixes, 25 percent perlite combined with 25 percent vermiculite and 50 percent peat or coco gives excellent germination conditions. Watch the calculator’s drainage score as you add perlite: aim for 5.0 to 7.0 for most crops and 7.0 to 9.0 for drought-tolerant plants.
What is the difference between perlite and vermiculite?▼
Perlite and vermiculite are both volcanic minerals but work very differently. Perlite is a glassy volcanic rock expanded by heat into white spheres that drain immediately and add air space to the mix. Vermiculite is an expanded mica mineral that absorbs and slowly releases water, acting as a sponge. Perlite is the better choice when drainage and aeration are the priority. Vermiculite is preferred when consistent moisture around seedling roots or germinating seeds is the priority. Combining both (for example, 25 percent perlite and 25 percent vermiculite in a seed starting mix) gives you drainage from the perlite and moisture buffering from the vermiculite.
What is the best potting mix recipe for container tomatoes?▼
The best potting mix for container tomatoes drains well (tomatoes are highly susceptible to root rot from waterlogged media), is rich in organic matter, and maintains a pH between 6.0 and 6.8. A reliable recipe is: 40 percent coco coir, 30 percent perlite, 20 percent compost, and 10 percent worm castings. For a 5-gallon bucket (20 quarts): 8 quarts coco coir, 6 quarts perlite, 4 quarts compost, 2 quarts worm castings. This gives a drainage score around 5.8 out of 10 and a pH estimate of 6.1 to 6.7, ideal for tomatoes. Use the High Performance preset in the calculator as a starting point and adjust the compost and worm castings to your preference.
How do I make a seed starting mix at home?▼
Homemade seed starting mix should be fine-textured, consistently moist, and low in nutrients (seeds carry their own food supply and do not need fertilizer until true leaves appear). A reliable recipe is: 2 parts peat moss or coco coir, 1 part perlite, and 1 part vermiculite. For a standard 1020 seedling flat (about 10 quarts), that is 5 quarts peat or coco, 2.5 quarts perlite, and 2.5 quarts vermiculite. Avoid adding compost or worm castings in large amounts to seed starting mixes: high fertility combined with high moisture can cause damping off (a fungal root disease that kills seedlings at the soil line). Load the Seed Starting Mix preset in the calculator to see this recipe pre-filled.
What is the best potting mix for succulents and cacti?▼
Succulents and cacti need extremely fast-draining, low-nutrient media. A reliable DIY recipe is: 50 percent perlite, 25 percent coarse sand, and 25 percent coco coir. Water should drain through the mix within 30 to 60 seconds after watering. The drainage score for this mix is approximately 7.7 out of 10. Avoid adding vermiculite (holds too much water), excess peat moss (too water-retentive and acidic), and large amounts of compost or worm castings (contribute to moisture retention). Load the Succulent and Cactus Mix preset in the calculator to see this recipe. For true desert cacti that experience minimal rain, some growers use up to 70 percent perlite or pumice and 30 percent coir.
How do I calculate how much potting mix I need?▼
To find how much mix a container needs, measure the internal volume of the pot. For a round pot: pi times radius squared times height, in inches, gives cubic inches. Divide by 57.75 to convert to quarts (1 quart = 57.75 cubic inches). For common container sizes: a 1-gallon pot needs about 4 quarts, a 5-gallon pot needs about 20 quarts, a 15-gallon pot needs about 60 quarts. For raised beds: length times width times depth, all in feet, gives cubic feet. Multiply by 25.7 to convert cubic feet to quarts (1 cubic foot = 25.7 quarts). Enter that total into the potting mix calculator alongside your recipe proportions to see how many quarts of each ingredient you need for your planned container or bed.
Should I add topsoil to potting mix for containers?▼
Avoid adding topsoil to potting mix for container gardening. Topsoil compacts under repeated watering in a confined container, reducing drainage and aeration and eventually hardening into a dense, root-restricting mass. Topsoil is appropriate for raised beds (where the volume is large and contact with native soil supports natural drainage) but not for pots, planters, or hanging baskets. The calculator includes topsoil as an option specifically for raised bed recipe planning. For raised beds, a blend of 40 to 50 percent compost, 30 to 40 percent topsoil, and 20 to 30 percent perlite or coarse sand provides a good mix of drainage, fertility, and structure.
What is biochar and should I add it?▼
Biochar is charcoal produced by burning organic material without oxygen (pyrolysis). In potting mixes, biochar improves cation exchange capacity (ability to hold nutrients), provides habitat for beneficial microbes, and moderates moisture swings. Its pH is alkaline (7.5 to 9.0), so limit biochar to 5 to 15 percent of total mix volume to avoid raising pH too high for most vegetables. For acid-loving plants, skip biochar entirely. Biochar pairs well with coco coir mixes, where its alkalinity partially offsets any pH drift toward acidity, and its microbe habitat improves the biological activity of a sterile coco medium.
How do I fix potting mix that holds too much water?▼
If your mix stays wet for more than 3 to 5 days after watering, add more perlite. For existing plants, carefully remove the plant, gently shake off the old mix, blend in 20 to 30 percent additional perlite by volume, and repot. Ensure pots have adequate drain holes (at least one per 6 inches of diameter) and never add gravel or rock layers at the bottom: gravel creates a perched water table that actually worsens drainage by keeping the bottom of the mix constantly saturated. Going forward, build mixes using the calculator and aim for a drainage score of 5.0 to 7.0 for most crops.
What pH should my potting mix be?▼
Most vegetables and herbs prefer pH 6.0 to 6.8. Blueberries, azaleas, and rhododendrons prefer pH 4.5 to 5.5. Succulents tolerate pH 6.0 to 7.5. The calculator’s pH estimate is a weighted average of ingredient pH ranges: a rough starting point, not a precise reading. Always test your finished mix with a pH meter or test kit before planting. To raise pH: add dolomite lime at 1 tablespoon per gallon of mix. To lower pH: add elemental sulfur at 1 teaspoon per gallon per 0.5 unit reduction, or use more peat moss in the recipe.
Is it cheaper to make my own potting mix?▼
Yes, for batches of 5 gallons or more. Commercial potting mix costs 0.15 to 0.30 USD per quart retail. DIY from farm supply bulk ingredients typically runs 0.05 to 0.12 USD per quart. For a 40-quart mix batch (about 10 gallons), you save 3 to 8 USD compared to buying premium bagged mix. Savings increase substantially when buying perlite, peat, and coco coir in large bags rather than small retail sizes. For growers mixing 50 to 100 gallons per season, bulk purchasing reduces ingredient cost by 40 to 60 percent while giving full control over quality and recipe composition.
Can I reuse potting mix from previous seasons?▼
Yes, with preparation. After a growing season, potting mix loses structure, may become compacted, and can harbor pathogens from diseased plants. Before reuse: remove all old roots, break up clumps, check drainage (squeeze a handful: it should crumble when released), and test pH. Refresh by mixing in 20 to 30 percent new perlite and 10 to 20 percent fresh compost. To sanitize, spread the mix in a thin layer on dark plastic sheeting in direct sunlight for several days (solarization). Never reuse mix from plants that had serious disease, nematode damage, or pest infestations.
What is the difference between potting mix and potting soil?▼
Potting mix is a soilless growing medium made entirely from organic and mineral amendments with no actual topsoil: peat or coco coir, perlite, vermiculite, and compost. Potting soil may contain actual mineral topsoil blended with organic amendments. For container gardening, soilless potting mix is preferred because it is lighter, drains better, starts sterile (reducing disease risk), and maintains its structure longer. The DIY recipe calculator builds soilless mixes from scratch. The topsoil ingredient option is included specifically for raised bed and large garden box mixes, where it blends well with compost and perlite to create a productive, well-structured outdoor planting medium.
How much worm castings should I add to potting mix?▼
Worm castings are concentrated fertility and biological activity in a slow-release, gentle form. For potting mix, 10 to 20 percent worm castings by volume is the sweet spot. Adding more than 25 to 30 percent can actually slow growth: castings hold significant moisture, reducing aeration, and extremely concentrated biological activity at high volumes can create anaerobic conditions in containers. A standard recipe using worm castings is: 50 percent coco coir, 25 percent perlite, and 25 percent worm castings. The calculator’s water retention score will rise as you add more worm castings, reflecting their moisture-holding capacity alongside their fertility value.
Related Tools

More Free Garden and Indoor Growing Planning Calculators

🧪
Fertilizer Dilution PPM Calculator
Convert N-P-K label percentages to nutrient PPM in US gallons. Essential once your custom mix is planted and plants need feeding.
Use Calculator →
💡
Grow Light Distance Calculator
Get LED, HPS, CMH, and T5 hanging heights for seedling, vegetative, and flowering stages. Pairs with any custom potting mix for indoor growing.
Use Calculator →
🌱
Seed Starting Date Calculator
Plan indoor seed starting dates for 31 crops by USDA zone and last frost. Use the seed starting mix preset here for your seedling trays.
Use Calculator →
💧
Hydroponic Reservoir Calculator
Size your DWC or NFT reservoir in US gallons by plant count. For coco coir hydroponic systems, pair with the PPM calculator for nutrient planning.
Use Calculator →
🌳
Mulch vs Topsoil Calculator
Calculate cubic yards of mulch or topsoil needed for any bed dimensions. Useful for raised bed planning alongside this potting mix recipe builder.
Use Calculator →
💦
Watering Runtime ET Calculator
Calculate irrigation runtime from NOAA ET rates. A high-drainage potting mix (more perlite) increases ET demand and watering frequency.
Use Calculator →
🪨
Garden Path Stepping Stone Calculator
Calculate how many stepping stones you need for any garden path length and stride spacing. Plan your outdoor garden layout around raised beds.
Use Calculator →
🌱
Garden Calculators Hub
All 8 free garden planning tools: seed starting, fertilizer PPM, grow light distance, potting mix, hydroponics, mulch, garden paths, and irrigation runtime.
View All →