How Do I Calculate the Amount of Additional Wax Needed to Reduce a 10% Fragrance Batch to a Lower Target Concentration?
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Is there a shortcut? Yes. Wax to add = current weight × (current load ÷ target load − 1). From 10% to 8% that is 0.25, so add 250 g of wax per kilogram of scented wax.
What if my 10% was of wax weight? Then the oil is 10 ÷ 110 of the batch, not 10%. A 10 kg batch holds 909.09 g, and reaching 8% of total needs 1,363.64 g of wax, not 2,500 g.
Should the added wax be the same wax? Yes. Adding a different wax creates an untested blend. Use the same unscented wax the batch was made with, then pilot the result.
The formula, in three lines
Every dilution calculation rests on one fact: the fragrance oil already in the pot stays there. Remelting does not remove it, and you should never try to skim it off. What changes is how much wax surrounds it. So the arithmetic starts with the oil, not the wax.
Then recheck: oil ÷ new total weight should give your target. If it does not, find the slip before the wax goes in, not after.
This series always states fragrance load as a percentage of the total candle weight — wax plus oil. Every number on this page uses that basis. If your recipe uses a different basis, read the section on the wax-basis trap before you weigh anything.
Worked on a 10 kg batch at four targets
Take a 10,000 g batch of scented wax at 10% of total weight. It holds 10,000 × 0.10 = 1,000 g of oil and 9,000 g of wax. Here is what each lower target requires. The cost column assumes the batch was poured in Natural Soy Pearl Wax and prices the added wax at the 10 kg pack rate, ₹4,248.00 ÷ 10,000 g = ₹0.4248 per gram; the candle count assumes 150 g fills. Both are example figures.
| Target load | Target weight (1,000 ÷ target) | Wax to add | Added wax cost (example) | 150 g candles |
|---|---|---|---|---|
| 9% | 11,111.11 g | 1,111.11 g | 1,111.11 g × ₹0.4248 = ₹472.00 | 74 |
| 8% | 12,500.00 g | 2,500.00 g | 2,500 g × ₹0.4248 = ₹1,062.00 | 83 |
| 7% | 14,285.71 g | 4,285.71 g | 4,285.71 g × ₹0.4248 = ₹1,820.57 | 95 |
| 6% | 16,666.67 g | 6,666.67 g | 6,666.67 g × ₹0.4248 = ₹2,832.00 | 111 |
Two patterns stand out. First, the extra wax grows faster than the drop in load. Going from 10% to 8% adds a quarter of the batch weight; going from 10% to 6% adds two-thirds. Second, you do not buy wax at the 10 kg rate unless you buy a 10 kg pack. For the 8% route you would buy a 5 kg pack (₹2,124.00) or three 1 kg packs (3 × ₹450.00 = ₹1,350.00) and keep the remainder.
Natural Soy Pearl Wax has no fragrance load published on its product page, so there is no stated ceiling to compare against. The decision between 9%, 8%, 7% and 6% is purely a test question: which is the highest load that stays dry in your storage and still throws the way you want.
The multiplier shortcut
If you dilute regularly, rearrange the formula into a single multiplier: wax to add = current weight × (current load ÷ target load − 1). It works for any batch size because it never asks you for the oil weight.
| Target | Multiplier (10 ÷ target − 1) | Wax per kg of batch |
|---|---|---|
| 9% | 0.1111 | 111.11 g |
| 8% | 0.25 | 250.00 g |
| 7% | 0.4286 | 428.57 g |
| 6% | 0.6667 | 666.67 g |
A batch of 3.6 kg going to 8% needs 3,600 × 0.25 = 900 g. A batch of 22 kg going to 7% needs 22,000 × 0.4286 ≈ 9,429 g. Keep the multiplier table on the wall beside the scale; it prevents mental arithmetic at a hot melter.
The wax-basis trap
Everything above assumes your 10% was a share of the total. Many recipes, and every CSI wax page, express load as a share of wax weight instead. If your batch sheet says '10%' and someone weighed 100 g of oil per kilogram of wax, the oil is not 10% of the batch.
Convert first. A wax-basis load W is W ÷ (100 + W) of the total. So 10% of wax weight is 10 ÷ 110 = 9.09% of the batch. A 10,000 g batch made that way holds 10,000 × 10 ÷ 110 = 909.09 g of oil, not 1,000 g.
Now the dilution changes. To reach 8% of total: 909.09 ÷ 0.08 = 11,363.64 g, so add 1,363.64 g of wax — not 2,500 g. To reach 7%: 909.09 ÷ 0.07 = 12,987.01 g, so add 2,987.01 g. Use the wrong basis and you over-dilute by more than a kilogram, which can leave a candle too weak and push you back towards adding oil.
The same formula at other batch sizes and starting loads
Nothing in the formula is tied to 10 kg or to 10%. It works for a 600 g test pot and for a 40 kg production melt, and for any starting load. Two more examples show how it behaves away from the round numbers.
A small test pot at 12%
Say a 1,500 g pot was mixed at 12% of total weight by mistake. Oil = 1,500 × 0.12 = 180 g. To reach 8%: 180 ÷ 0.08 = 2,250 g, so add 750 g of wax. The multiplier is 12 ÷ 8 − 1 = 0.5 — half the batch weight again. A 4-point drop from 12% costs proportionally more wax than a 2-point drop from 10%, because the oil you are spreading is larger.
A large melt at 9%
Say a 32 kg melt sits at 9% and your tests point to 7.5%. Oil = 32,000 × 0.09 = 2,880 g. Target weight = 2,880 ÷ 0.075 = 38,400 g, so add 6,400 g. The multiplier is 9 ÷ 7.5 − 1 = 0.2. Half-percent targets are perfectly usable; the formula does not care whether the target is round.
If your melter has a capacity limit, check it before you calculate. Diluting 32 kg to 38.4 kg may simply not fit in one pot. In that case split the batch, dilute each portion with the same multiplier, and recheck each portion separately rather than averaging them afterwards.
Before you trust the number
The formula is exact; your inputs may not be. Three checks keep the result honest.
When you add the wax, melt it fully and bring the combined batch back to your normal fragrance-mixing temperature, staying below the oil's published flashpoint, and stir thoroughly so the oil redistributes evenly through the new wax. Then recheck the arithmetic one last time on the batch sheet: oil ÷ total = target. If your pilot at the lower load still sweats, the arithmetic was never the problem — the oil and wax are not a good pair, and the next step is a different oil or wax, not a different number.
Where this page fits
CSI already has guides that cover parts of this question. This page answers one sweating decision; these cover the neighbouring questions:
Three things to buy for this fix
| Option | Price | Status on the October 2026 pull |
|---|---|---|
| 1 kg | ₹450.00 | In stock |
| 5 kg | ₹2,124.00 | In stock |
| 10 kg | ₹4,248.00 | In stock |
| 50 kg | ₹21,240.00 | In stock |
| Option | Price | Status on the October 2026 pull |
|---|---|---|
| Digital scale | ₹354.00 | In stock |
| Option | Price | Status on the October 2026 pull |
|---|---|---|
| 500 g | ₹260.00 | In stock |
| 1 kg | ₹507.40 | In stock |
| 5 kg | ₹2,537.00 | In stock |
| 10 kg | ₹5,074.00 | In stock |
CANDLEMAKINGSUPPLIESINDIA supplies raw materials and production equipment, not finished candles. This guide separates general formulation practice from what CSI's own product pages state, converts the pages' wax-weight loads to the total-weight basis used here, says plainly where CSI publishes no figure (wax heat resistance, survival temperatures, oil composition beyond the page), and labels every load step, test temperature, observation day or reject rate as a starting point for your own validation.
Prices are live CSI prices from October 2026; product pages are authoritative. Where a spec is not published — such as the temperature at which a wax starts to release oil — this guide says so rather than filling the gap.
For bulk quotes, GST invoicing, IFRA and MSDS documents, message us on WhatsApp at +91 7397976926.
Frequently asked questions
- I Scaled My Formula From 1 Kg to 25 Kg and Accidentally Calculated Fragrance Percentage Differently — How Do I Determine the Correct Amount Before Production Continues?
- If I Add More Wax to a Failed Scented Batch, How Do I Recalculate the Final Fragrance Percentage Accurately?
- Can I Remelt a Sweating Candle Batch Without Adding Any Additional Fragrance Oil?
- Will Reheating a Failed Candle Batch Change the Fragrance Enough That I Need to Repeat Hot-Throw Testing?
- I Corrected a Sweating Batch by Adding Wax — Do I Need to Repeat Complete Wick Testing Because the Fragrance Percentage Changed?
- My Reworked Candle No Longer Sweats but Hot Throw Is Weaker — Should I Test a Better-Performing Fragrance Instead of Increasing the Load Again?
- My Reworked Candle Is Stable but Now Tunnels — Could the Lower Fragrance Load Have Changed Wick Behaviour?
- How Many Reworked Test Candles Should I Validate Before Remelting an Entire 500-Unit Batch?
- When Is It Financially Better to Scrap a Sweating Candle Batch Rather Than Spend Labour and Energy Reprocessing It?
- I Made 10 Kg of Candle Wax at 10% Fragrance Load but Need It at 8% — How Much Unscented Wax Should I Add to Correct the Entire Production Batch?
- My Candle Is Sweating Fragrance Oil — Am I Using Too Much?
Customer reviews: The reviews at the top are genuine, published Judge.me reviews — Antara Srinivas Iyer (5★, verified); Dipali Sable (5★, verified); Subhankar Roy (4★, verified); Tina Lynette Lazaro Moganti (5★, verified); Sraddha (5★, verified); Urvashi Patel (4★, verified). Names, ratings, dates and products as recorded by Judge.me.
Product facts (October 2026, CSI live store): Natural Soy Pearl Wax: 1 kg ₹450.00, 5 kg ₹2,124.00, 10 kg ₹4,248.00, 50 kg ₹21,240.00 — soy-blend container wax in pearl form with a pearlescent finish · no fragrance load published on the product page. Candle Making Weighing Scale: Digital scale ₹354.00 — digital, grams or ounces · capacity and resolution not published. Luxury Soy Wax CSI 464 (flakes): 500 g ₹260.00, 1 kg ₹507.40, 5 kg ₹2,537.00, 10 kg ₹5,074.00 — 100% soy container wax in flakes · single pour · stated fragrance load up to 10% · stated shelf life 60 months (cool, dry storage).
Assumptions: Fragrance load is a percentage of total candle weight (200 g = 184 g wax + 16 g oil at 8%); CSI wax pages phrase their ceilings as a share of wax weight. CSI wax pages state fragrance loads as a share of wax weight; converted here to total weight with W ÷ (100 + W) (10% of wax = 9.09% of the candle; 13% = 11.50%). A stated maximum is the wax maker's ceiling for typical oils, not a promise for every oil. CSI publishes no wax heat-resistance or survival temperature; every test temperature, observation day, load step, reject rate and labour or energy cost is a suggested starting point or the reader's own figure. Blends with microcrystalline wax, Vybar, paraffin or Soy Pillar Wax are the maker's own to test. Wax prices re-checked 7 October 2026, oil prices 1 October 2026; product pages are authoritative.