My Fragrance Addition Temperature Is Correct at the Top of the Melter but the Bottom Is Hotter — Can Temperature Stratification Occur in a Large Batch?

My Fragrance Addition Temperature Is Correct at the Top of the Melter but the Bottom Is Hotter — Can Temperature Stratification Occur in a Large Batch?

Heated base plus cooling surface = layers Lower the setting, stir to the base Read top and bottom before oil
CSI scale-up guides · Temperature drift during long runs
Your top reading is correct. It just is not describing the bottom of the batch.
★★★★★
"All the products are so good"
Jinal PatelVerified buyer · May 2025
Luxury Soy Wax Chunks for Jar / Container Candles
★★★★★
"Highly recommended for candle making. Convenient to use."
Mohabatti Ki DukaanVerified buyer · Jan 2026
[1 Year Warranty] Mini Electric Wax/Soap Melter
★★★★☆
"Fragrances are pretty decent , quite versatile."
Tina RahaVerified buyer · Jun 2025
Lavender Fragrance Oil
★★★★★
"One of the best wax for container Candles. Easy to work with, especially if you are a beginner."
ThenirvaofficialVerified buyer · Nov 2025
Luxury Soy Wax CSI 464
★★★★★
"I just tried making a candle out of curiosity & ordered supplies.. I found the ingredients to be of good quality. The wax quality especially has been top notch. I’ve…"
SraddhaVerified buyer · Mar 2025
Gardenia Fragrance Oil
★★★★☆
"Good product and I fully satisfaction with my end result"
Urvashi PatelVerified buyer · Aug 2026
Sacred Sandal Ember Fragrance Oil
★★★★★
"All the products are so good"
Jinal PatelVerified buyer · May 2025
Luxury Soy Wax Chunks for Jar / Container Candles
★★★★★
"Highly recommended for candle making. Convenient to use."
Mohabatti Ki DukaanVerified buyer · Jan 2026
[1 Year Warranty] Mini Electric Wax/Soap Melter
★★★★☆
"Fragrances are pretty decent , quite versatile."
Tina RahaVerified buyer · Jun 2025
Lavender Fragrance Oil
★★★★★
"One of the best wax for container Candles. Easy to work with, especially if you are a beginner."
ThenirvaofficialVerified buyer · Nov 2025
Luxury Soy Wax CSI 464
★★★★★
"I just tried making a candle out of curiosity & ordered supplies.. I found the ingredients to be of good quality. The wax quality especially has been top notch. I’ve…"
SraddhaVerified buyer · Mar 2025
Gardenia Fragrance Oil
★★★★☆
"Good product and I fully satisfaction with my end result"
Urvashi PatelVerified buyer · Aug 2026
Sacred Sandal Ember Fragrance Oil
Reviews collected and published through Judge.me on candlemakingsuppliesindia.store. They are general product reviews from CSI buyers, not tests of the scale-up question on this page. Shortened with an ellipsis: Sraddha; wording otherwise unedited. "Verified buyer" appears only where Judge.me recorded the review as verified.
✓ 93 fragrance oils from 15 g to 1 kg ✓ Ships across India from Pune ✓ GST invoice · IFRA & MSDS on request
Temperature drift · stratification
In a large still batch, heat settles into layers. A top reading can hide a hotter base, right when the oil is about to go in.
2 depths
the minimum readings before fragrance addition in a large batch
Quick answers — read this first
Can wax stratify in a melter? Yes. Melted wax is viscous and conducts heat poorly, so in a large still batch a heated base and a cooling surface can hold several degrees apart.

Why is the bottom hotter? The element in or under the base may still be heating, and slow circulation keeps that heat low, while an open surface loses heat to the room.

Does this affect fragrance addition? It can. Oil stirred down meets wax hotter than the top reading. For oils with published flashpoints close to your addition range, the hot layer matters most.

How do I remove the layering? Lower the setting to hold, stir slowly to the base, wait a minute and read at two depths. Add oil when both agree within your validated spread.
The short answer
Direct answer: Yes. A large, still, heated batch can hold a hotter base under a cooler surface, especially while the element is still working.
Test: A depth profile before and after stirring, plus a 1 kg control scented half at the top reading and half at the bottom reading.
Control: Hold setting before addition, a slow stir to the base, and top and bottom readings recorded on every batch sheet.
Clearing a layered batch for fragranceHoldlower settingStop adding heatStirto the baseSlow, no whippingReadtop and baseBoth in rangeAdd oilthen stir againDown to the base
The order matters: stop heating, stir, confirm two depths, then add oil and stir it to the base.
Straight answer
My Fragrance Addition Temperature Is Correct at the Top of the Melter but the Bottom Is Hotter — Can Temperature Stratification Occur in a Large Batch?
Yes. In a large batch, a hotter base can sit under a cooler surface, because melted wax is viscous, conducts heat poorly and is rarely stirred before fragrance addition, while the element keeps heating from below and the open surface loses heat. The top then reads correct while the bulk has not come down. Profile your melter at two or three depths with a separate thermometer, since the display has a stated ±10°C deviation. Lower the setting to hold, stir slowly to the base, and add oil only when top and bottom readings agree within a spread you have validated. Stir to the base again afterwards.
One line: a large batch can layer by temperature, so stir to the base and read two depths before the oil goes in.
Royal Oud states its flashpoint only as above 93°C and a 72–96 h cure, which makes a controlled, layer-free addition especially worthwhile.
View Royal Oud Fragrance Oil

Yes, a large batch can layer by temperature

A correct reading at the top can sit on a hotter layer you never measured.

Temperature stratification simply means the wax sits in layers at different temperatures. In a small pitcher it barely has room to happen; you stir once and the whole mass is the same. In 15 or 20 kg of melted wax it can persist for a surprisingly long time, because wax is viscous, conducts heat poorly and is rarely stirred between melting and fragrance addition.

Two situations produce a hotter bottom. The first is active heating: if the element in or under the base is still working, the wax nearest it is the hottest in the vessel, and the natural circulation that would carry that heat upward is slow in a thick liquid. The second is surface cooling: with the lid off, the top layer loses heat to the room, so the top reads lower even when the bulk has not changed. Often both happen together, which is exactly the picture you describe: the top says the wax is ready for fragrance, while the bottom has not yet come down.

What stratification does not mean is that the melter is faulty or the wax is behaving strangely. It is ordinary physics in a large, still, heated liquid. The problem is only that a reading at the top is being used as though it described the whole batch.

Why it matters at the moment fragrance goes in

Your addition temperature is chosen so the oil meets wax in a known range. If the top is in range and the bottom is several degrees hotter, the oil you pour in and stir down will meet wax outside that range. How much that matters depends on how far apart the layers are and on the oil.

Take the worked example for this page: a 15 kg scented batch at 8% of total weight in the 20 kg melter, made from 13.8 kg of CSI 464 and 1.2 kg of Royal Oud, filling 75 candles of 200 g. The wax costs 13.8 × ₹507.40 = ₹7,002.12. Royal Oud's 100 g size was out of stock when prices were taken, so the 1.2 kg is bought as a 1 kg bottle at ₹6,400.00 and a 500 g bottle at ₹3,300.00, ₹9,700.00 for 1.5 kg, with 300 g kept for the next batch. That is a lot of money in oil. Royal Oud's page states its flashpoint only as above 93°C. If your addition temperature is in the 80s at the top and the bottom is running ten degrees hotter, the lower layer is close to that stated figure, and the melter's own display, with its stated ±10°C deviation, cannot tell you which is true.

Royal Oud's page also says oud takes longer to express and suggests a 72–96 h cure. That matters later, when you judge the candles: a slow-developing oil is harder to assess, so you want the process to be as controlled as possible before the oil goes in, not argued about afterwards.

Measure the profile in your own melter

Before changing anything, find out how much layering your melter produces at your fill level. Use a separate thermometer long enough to reach the base without your hand going near the rim, keep the tip off the metal, and hold it still until each reading settles.

Depth profile
Illustrative readings at the moment the top first reaches the addition temperature (sample values, not targets)
Depth Before stirring One minute after a slow stir to the base After a second stir
Just under the surface 82°C 84°C 84°C
Mid-depth 85°C 85°C 84.5°C
Near the base, centre 91°C 87°C 85°C
Spread (highest minus lowest) 9°C 3°C 1°C

The readings are illustrative, but the pattern is typical. Before stirring the batch looks ready from the top and is not. A slow stir that reaches the base narrows the spread a great deal, and a second stir finishes the job. Your own profile may be steeper or flatter; the point is to know it.

Fill level changes the picture

Repeat the profile at the fill levels you actually use. A 20 kg melter holding 15 kg has a deep column of wax above the base, and a steep gradient has room to form. The same melter holding 6 kg has a shallow column that evens out faster but may overshoot more easily, because the element is working on far less mass. Makers who profile only their usual batch are caught out the first time they run a small top-up batch or a large seasonal one. Two profiles, one near your largest fill and one near your smallest, are usually enough to show the range. Keep both on file beside the melter so the operator can see which one applies. If you ever change where the melter sits, say from a warm corner to a spot under a fan, profile it again: the surface cooling rate, and with it the whole gradient, depends on the air around the vessel as much as on the element beneath it.

Lower the setting before the stir
If the base is still being heated while you stir, you are mixing in fresh heat as fast as you remove the layering. Turn the melter down to its hold setting first, confirm with the thermometer, then stir and profile.

Prove whether the layering affects your candles

The profile tells you the layers exist. A control tells you whether they matter. Make a 1 kg batch from the same CSI 464 and Royal Oud lots at the same 8%. Heat it evenly in a small vessel, stir, and divide it. Add the oil to one half at the top-of-melter reading from your profile and to the other half at the bottom reading, stirring both the same way. Pour both at the same pour temperature, cure them together for the page's stated 72–96 h and again at a later point you choose, such as day 7, as a suggested starting point. Compare blind, by smell only.

If the two halves are indistinguishable, the layering in your melter is a safety and consistency concern but not a scent problem at the spread you measured. If the hotter half is flatter or different, stratification at addition is a real cause, and your production candles may be uneven depending on where in the batch the oil met the hot layer.

What to do with a batch scented on a top-only reading

Check where the difference shows. If candles vary with pour order, and the oil was not stirred right down to the base, the hot layer may also have been the less scented or differently scented layer. Treat distribution and temperature as joint suspects.
Retain and compare. Keep candles from the first, middle and last fills. Burn one from each beside a 1 kg control after the full stated cure, never unattended, and stop any test that smokes or flares.
Release what matches. Candles that match the control go to stock. A group that clearly differs is downgraded or used for samples, with the reason written on the batch sheet.
Do not re-dose the whole batch. More oil cannot correct a layering problem you cannot measure in the finished wax. It adds cost and a new unknown.

Controls that remove the layering risk

The fixes are procedural and cost almost nothing. Bring the batch to temperature, then lower the setting to hold before approaching the addition point. Stir slowly to the base, wait about a minute (a suggested starting point), and read at two depths: just under the surface and near the base. Add oil only when both are inside the addition range and the difference between them is within a spread you have validated, with about 2°C as a suggested starting point. Keep the lid on between steps to slow surface cooling. After adding oil, stir to the base again, so the oil does not stay in the top layer.

Write two depths on the batch sheet, not one. That single change turns a hidden layer into a visible number, and it is the cheapest control on this page. Never add oil with the melter at its maximum setting, and keep a large melter on its own socket, since its electrical load is well above that of a hotplate or mini melter.

Where this page fits

CSI already has guides that cover parts of this question. This page covers the failure investigation for the question above; these go deeper on the rest:

Three things to buy for this job

1
Fragrance
Royal Oud Fragrance Oil
The worked example's oil; its published flashpoint is only 'above 93°C', so a hot base layer deserves attention. Listed spec: perfume-grade concentrate; top bergamot and pink pepper, heart oud, rose, cedarwood, base sandalwood, ambergris, musk · page: start test at 6–8% and work up, up to 10% in soy or paraffin · page: cure 72–96 h because oud takes longer to express · flashpoint stated as above 93°C · 100 g out of stock.
Option Price Status on the September 2026 pull
100 g ₹699.00 Out of stock
500 g ₹3,300.00 In stock
1 kg ₹6,400.00 In stock
Live CSI price; the product page is authoritative. View Royal Oud Fragrance Oil
2
Measurement
Pen Thermometer
Reads the base and surface separately; the display cannot show a vertical gradient. Listed spec: range and accuracy not published.
Option Price Status on the September 2026 pull
Pen thermometer ₹354.00 In stock
Live CSI price; the product page is authoritative. View Pen Thermometer
3
Container wax
Luxury Soy Wax CSI 464 (flakes)
The worked example's wax, the same price per kg at every pack size, so the 13.8 kg in this example costs exactly 13.8 × ₹507.40 = ₹7,002.12. Listed spec: 100% soy container wax in flakes · single pour · stated fragrance load up to 10% · stated shelf life 60 months (cool, dry storage).
Option Price Status on the September 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
Live CSI price; the product page is authoritative. View Luxury Soy Wax CSI 464
Argue against interest
Layering is solved with a stir, not a purchase.
A slow stir to the base after lowering the setting removes most of the gradient. Buy a mixer only if a logged profile shows that stirring by hand cannot bring your layers together.
One reading is a spot. Two depths are a batch.
— CandleMakingSuppliesIndia
Why trust this guide

CANDLEMAKINGSUPPLIESINDIA supplies raw materials and production equipment, not finished candles. This guide separates general process physics from what CSI's own product pages state, and labels every mixing time, temperature window, hold limit, loss allowance or sample count as a starting point for your own validation.

Prices are live CSI prices from September 2026; product pages are authoritative. Where a spec is not published — such as the scale's capacity or the thermometer's range — 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

Why is the bottom of my wax melter hotter than the top?
The element in or under the base may still be heating while the open surface loses heat. Melted wax is viscous and circulates slowly, so the layers can stay apart until you stir.
Can wax temperature be uneven in a large melter?
Yes, both from side to side and from top to bottom. A depth profile with a separate thermometer before and after stirring shows how much your melter layers. Take a reading near the base as well as near the surface.
Should I stir wax before adding fragrance oil?
Yes. Lower the setting to hold, stir slowly to the base, wait briefly and read at two depths. Add oil only when both are in range. Repeat the reading at both depths before the oil goes in.
Is it dangerous if the bottom of my melter is hotter than the fragrance flashpoint?
Add oil below its published flashpoint and never at the melter's maximum setting. Check the hottest layer, not just the top, before adding any oil with a low published flashpoint.
How long does Royal Oud take to cure in candles?
Royal Oud's product page suggests 72–96 h because oud takes longer to express. Many makers assess again later; treat any later day as a suggested starting point. Compare retained candles at the stated minimum and again later before judging.
Will stirring after adding fragrance fix temperature layers?
It helps, but it is better to remove the layers before the oil goes in, so the oil meets wax in the range you intended. Stir to the base again afterwards.
Scale-up · CSI
Prove the process before you pour the order.
Electric wax melters at ₹21,240.00 (10 kg) and ₹25,960.00 (20 kg), Luxury Soy Wax CSI 464 (flakes) at ₹507.40/kg, 93 fragrance oils to 1 kg, and the scale, thermometer and pitchers for controlled pilots. Quotes above the listed packs on WhatsApp.
See wax melters Ask on WhatsApp
Continue the read
Editorial standards & sources
About this guide: Written by the CANDLEMAKINGSUPPLIESINDIA team, a Pune-based raw-material and equipment supplier. Part of the 4901–5000 scale-up failure series (Temperature drift during long runs).

Customer reviews: The reviews at the top are genuine, published Judge.me reviews — Jinal Patel (5★, verified); Mohabatti Ki Dukaan (5★, verified); Tina Raha (4★, verified); Thenirvaofficial (5★, verified); Sraddha (5★, verified); Urvashi Patel (4★, verified). Names, ratings, dates and products as recorded by Judge.me.

Product facts (September 2026, CSI live store): Royal Oud Fragrance Oil: 100 g ₹699.00 (out of stock), 500 g ₹3,300.00, 1 kg ₹6,400.00 — perfume-grade concentrate; top bergamot and pink pepper, heart oud, rose, cedarwood, base sandalwood, ambergris, musk · page: start test at 6–8% and work up, up to 10% in soy or paraffin · page: cure 72–96 h because oud takes longer to express · flashpoint stated as above 93°C · 100 g out of stock. Pen Thermometer: Pen thermometer ₹354.00 — range and accuracy 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%; a 25 kg batch at 8% = 23 kg wax + 2 kg oil). Melted soy wax is taken as roughly 0.9 g per ml for volume conversions, so the melter's stated 9.5 litres is about 8.5 kg — weigh one real fill. Mixing times, temperature windows, hold limits, loss allowances and sample counts are suggested starting points to validate, not measured CSI data. Example logs and readings are illustrations. Prices and availability change — product pages are authoritative.
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