What Actually Happens if I Add Fragrance Oil to Soy Wax at the Wrong Temperature Even When the Candle Looks Visually Normal?

What Actually Happens if I Add Fragrance Oil to Soy Wax at the Wrong Temperature Even When the Candle Looks Visually Normal?

 

Sandalwood 500 g ₹2,513.40 CSI 464 5 kg ₹2,537.00 Weighing Scale ₹354.00
CSI fragrance formulation guides · Temperature, mixing & cure
The four faults a wrong addition temperature can hide inside a normal-looking candle, and the sampling plan that finds them.
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Eco Candle Wicks
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Eco Candle Wicks
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Subhankar RoyVerified buyer · Sep 2024
Eco Candle Wicks
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Premium Candle Wicking Needle
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Premium Candle Wicking Needle
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"This bamboo wick holder doesn't exert any pressure on the wicks… and it is a very useful product 👌🏻👌🏻.."
Lalitha JaganAug 2024
Bamboo Wick Holder
★★★★☆
"Quality of the wick is good for jar candles, team can work on the pricing and delivery timelines."
Monika DeepVerified buyer · Oct 2025
Eco Candle Wicks
★★★★★
"Quality wick, works very well"
AshwiniSep 2025
Eco Candle Wicks
★★★★☆
"Good quality .... if possible delivery date would be try little bit quick please"
Subhankar RoyVerified buyer · Sep 2024
Eco Candle Wicks
★★★★★
"This needle is very helpful as it doesn't damage the mould and there is no leakage of wax while pouring.. I would definitely recommend this .."
LJAug 2024
Premium Candle Wicking Needle
★★★★★
"Good one"
Sneha TamangVerified buyer · Apr 2025
Premium Candle Wicking Needle
★★★★★
"This bamboo wick holder doesn't exert any pressure on the wicks… and it is a very useful product 👌🏻👌🏻.."
Lalitha JaganAug 2024
Bamboo Wick Holder
Reviews collected and published through Judge.me on candlemakingsuppliesindia.store. They are general reviews of the wicks and wick tools named on each card, not assessments of the quality-control method set out below. Wording is unedited.
✓ CSI 464 guidance on record: 80–90°C ✓ GST invoicing on production orders ✓ MSDS & IFRA documents on request
Temperature · The faults you cannot see
A candle can set smooth, adhere to the glass and smell fine through the lid, and still carry a temperature fault. The damage shows later: at the first burn, across a batch, or after weeks in a warm shop. This page names the four hidden effects, says when each surfaces, and prices a QC plan that finds them first.
₹751.47
cost of pulling 3 of 20 Sandalwood candles for a start-middle-end QC burn, against ₹5,009.81 of material in the batch · CSI live pricing, September 2026
Quick answers — read this first
What happens if I add fragrance oil at the wrong temperature but the candle looks normal? The candle can still carry a flattened opening (too hot, or held hot too long), uneven load from candle to candle (too cool or under-stirred), hidden droplets that sweat later (too cool), or load drift in a batch held on the heat. None of these is reliably visible on day 1.

When do these faults show up? A flat opening shows at the cold-throw sniff and first burn. Uneven load shows when two candles from one batch are burned. Hidden droplets can surface after days or weeks in warm storage. See the timeline.

How do I catch them? Log the thermometer reading when the oil goes in, then burn candles from the start, middle and end of the pour against a reference candle. For a 20-candle batch that costs ₹751.47 in pulled candles.

What temperature is right? Whatever the wax maker states. The only CSI figure on record is CSI's CSI 464 guidance, 80–90°C — confirm on the product page. For other waxes, follow the wax maker's instructions.
The short answer
Hidden effects: Flat opening, uneven load across the batch, hidden droplets that sweat later, and load drift in batches held hot. All are commonly described in candle-making practice; none is a CSI measurement.
When they show: Cold-throw sniff (day 7 checkpoint), QC burn (day 14 checkpoint), first customer burn, and weeks of warm storage. Checkpoints are labelled working practice.
QC plan: Burn candles #1, #10 and #20 of a 20-candle batch against a reference candle; keep one as a retained sample. That is 20% of the batch.
When a temperature fault that you cannot see finally shows itself Pour looks perfect Day 2 looks perfect Day 7 cold-throw sniff Day 14 QC burn First burn customer Weeks later warm storage Flattened opening (too hot, held long) Uneven load across candles (too cool, short stir) Hidden droplets that sweat later (too cool) Load drift in a batch held hot (long holds) QC burn of candles from the start, middle and end of the pour catches most of them here Bars show when each effect can first be detected. Checkpoints are labelled working practice, not specifications.
Every bar starts after the pour, which is the point: on the day you make the candles, all four faults are invisible. The QC burn at a labelled 14-day checkpoint, using candles from the start, middle and end of the pour, is the earliest point at which most of them can be caught before a customer finds them.
Straight answer
What actually happens if I add fragrance oil to soy wax at the wrong temperature, even when the candle looks visually normal?
Four things can happen that you will not see on pouring day. Too hot, or held hot too long, and the most volatile notes can leave first, so the candle smells flatter at the opening, even though it looks perfect. Too cool, or stirred too briefly, and the oil may not dissolve evenly, so some candles in the batch carry more oil than others. Undissolved droplets can also sit inside the wax and sweat out later, often after days or weeks in a warm shop or car. And a batch held on the heat while you pour can drift, so the last candles differ from the first. These are mechanisms commonly described in candle-making, not CSI measurements, and a normal appearance rules none of them out. The defence is a process, not a guess. Add the oil inside the wax maker's window (the only CSI figure on record is CSI's CSI 464 guidance, 80–90°C — confirm on the product page), log the thermometer reading, and burn candles from the start, middle and end of every pour against a reference candle. For a 20-candle Sandalwood batch that costs ₹751.47 in pulled candles, against ₹5,009.81 of material at risk.
One line: a normal-looking candle proves the wax set; it proves nothing about how the fragrance went in.
The worked batch on this page is 20 candles of Sandalwood in CSI 464: Sandalwood 500 g at ₹2,513.40 and CSI 464 5 kg at ₹2,537.00. The two tools that make hidden faults traceable are a Weighing Scale at ₹354.00 and a Pen Thermometer at ₹354.00.
Buy Sandalwood

The four hidden effects

Wax tells you about its own temperature: it frosts, it cracks, it pulls from the glass. It tells you very little about what happened to the fragrance.

Most visible candle faults are wax faults. Wet spots, frosting, sinkholes and rough tops come from how the wax cooled, and they appear whether or not the oil went in well. Fragrance faults are different. The oil is a small share of the candle, 8% in our examples, and it is dissolved into the wax. If it went in at the wrong temperature, the evidence is chemical and physical, not cosmetic. Here are the four effects commonly described, what causes each, and why you cannot see them.

General candle-making practice · mechanisms commonly described, not CSI measurements
Four faults a normal-looking candle can hide
Hidden effect Likely cause Why you cannot see it Who notices first
Flattened opening Wax far above the maker's window, or scented wax held hot for a long time Volatile top notes leave as vapour; the wax looks identical You at the cold-throw sniff, or the customer at the first burn
Uneven load across the batch Oil added to cooling wax, or stirring stopped before it dissolved Every candle looks the same colour and texture at 8% or at 6% Customers who buy two, or reviewers comparing
Hidden droplets that sweat later Oil not fully dissolved when the wax set Droplets are small and inside the wax; they surface with warmth and time A retailer with a warm shelf, or a customer after shipping
Load drift in a held batch Scented wax kept on the heat through a long pour Early and late candles look the same; only the scent differs Whoever compares first-poured and last-poured candles

The first effect is the one I Added Fragrance Oil to Soy Wax While It Was Very Hot and the Finished Candle Smells Weak — Could Excessive Temperature Have Affected the Fragrance? deals with. The second and third are the too-cool side, covered in I Added Fragrance Oil at a Lower Temperature Because I Was Afraid of Evaporation — Why Did It Not Seem to Bind Evenly into the Wax?. The fourth is partly a temperature problem and partly a mixing problem, and it is the reason large batches need a stirring routine as well as a thermometer. How Long Should I Mix Fragrance Oil into a Large Batch of Wax so the First Candle and Last Candle Have the Same Fragrance Concentration? covers that.

There is a fifth possibility that makers sometimes worry about: that heat changes how the candle burns. In general practice, oil-rich pockets in a poorly mixed candle can make the flame behave differently from one burn to the next, for example flickering more or leaving more soot. Treat that as a possibility to watch for in the QC burn, not a certainty. If the flame misbehaves on one candle and not another from the same batch, uneven mixing is a better suspect than the wick.

The pass that is not a pass. A maker inspects a batch the next morning, sees smooth tops, clean glass and a good scent through the lid, and ships it. Two weeks later a customer writes that the second candle is nothing like the first. The batch did not fail on the day. It failed on a test that was never run. Visual inspection is a wax check. A fragrance check needs a burn, a reference candle and candles from across the pour.

When each one shows itself

Each hidden effect has its own clock. Knowing it tells you when a check can catch it, and when it is already too late. The checkpoints below are labelled working practice for soy container candles, not cure specifications, and they are the same checkpoints used across this series so that results stay comparable.

Labelled working checkpoints · not CSI cure data
The earliest point at which each fault can be caught
Checkpoint What you do Flat opening Uneven load Hidden droplets Load drift
Pouring day Inspect wax Not visible Not visible Not visible Not visible
Day 2 Inspect surface and base Not reliable Not visible Sometimes, in bad cases Not visible
Day 7 Cold-throw sniff vs reference Often detectable Sometimes Check surface again Sometimes
Day 14 QC burn of start, middle, end candles Detectable Detectable Check after warm storage Detectable
Weeks later Retained sample in a warm spot — — Detectable —

Two points stand out. First, the QC burn is where most faults become visible, and it needs candles from several points in the pour, not one. A single test candle can only tell you about itself. Second, hidden droplets are the slowest to show and the most embarrassing when they do, because they surface in the customer's home or on a retailer's shelf. That is why a retained sample kept somewhere warm, such as a shelf near a window, is part of the plan. For how cure age affects what you smell, see My Candle Smells Weak One Day After Pouring but Much Stronger After Two Weeks — Why Does Curing Affect Fragrance Performance?, and for standardising cure before QC, see My Production Team Pours Candles on Different Days — How Do I Standardise Cure Time Before Quality-Control Burn Testing?.

Keep a reference candle for every approved scent
When a scent passes development, keep one candle from that approved batch, labelled and stored away from light and heat. Every future batch is compared against it at the same cure age. Without a reference, you are comparing today's candle with your memory of last month's, and memory drifts. I'm Comparing Two Fragrance Oils — Should I Burn-Test Them at Exactly the Same Cure Age to Make the Comparison Fair? explains why cure age must match for a fair comparison.

The batch record that makes them traceable

A hidden fault is only hidden until you can trace it. The batch record is what lets you trace it.

If a customer reports a weak candle in three weeks' time, you want to be able to look up exactly how that batch was made. That means writing down the variables that can cause hidden faults at the moment they happen, not reconstructing them later. The record below takes two minutes per batch. Put it on paper by the melter or in a shared sheet.

Minimum batch record · one row per batch
What to write down, and which hidden fault it traces
Field Example entry Traces
Batch ID and date SW-0926-1 · 26 Sep Everything — label every candle base with it
Wax, lot and weight CSI 464 · 3,680 g Load maths; wax lot changes
Oil, lot and weight Sandalwood · 320 g (8% of 4,000 g) Load maths; oil lot changes. New oil batches
Temperature when the oil went in Thermometer reading, stirred, mid-melt Flat opening; too cool
Minutes on heat after the oil went in Time from oil in to last pour Load drift; flat opening
Stir method and time Bamboo stick, full depth, fixed minutes Uneven load; hidden droplets
Pour order Candles numbered 1–20 on the base First vs last candle differences
QC result Start / middle / end scores vs reference Confirms or rejects the batch

The pour-order numbers are the field most makers skip and the one that pays back most. With them, a QC result such as "#1 and #10 fine, #20 weaker" points straight at load drift or settling late in the pour, and My First Candles from a Production Batch Smell Weaker than the Last Ones — Could the Fragrance Oil be Settling or Mixing Unevenly? takes it from there. Without them, the same result is just "one candle was weaker".

A sampling plan that catches them

Here is the plan for the worked batch: 20 candles of 200 g at an 8% load, which is 4,000 g of finished wax, made from 320 g of Sandalwood and 3,680 g of CSI 464. The oil comes from a 500 g bottle at ₹5.03 a gram. The wax comes from a 5 kg bag. Scale the plan up or down, but keep its shape.

1
Add inside the window and log itMelt and add the oil inside the wax maker's stated window. For CSI 464, CSI's guidance is 80–90°C for melting and pouring (confirm on the product page). Stir, read the thermometer mid-melt, and write the reading and the time into the batch record.
2
Number every candle in pour orderWrite the batch ID and a pour number, 1 to 20, on each base or on a sticker under the jar. This costs nothing and turns a vague complaint into a traceable one.
3
Pull three candles for QCSet aside #1, #10 and #20: the first, middle and last candles poured. These represent the three points where temperature and mixing faults differ most. Set aside one more as a retained sample.
4
Cold-throw sniff at the day 7 checkpointOpen each QC candle and the reference candle and compare the scent through the open jar. A clearly flatter opening in all three suggests a heat problem; one candle out of line suggests a mixing problem.
5
QC burn at the day 14 checkpointBurn the three candles and the reference in similar closed rooms, blind, and score scent strength and character at fixed times. Customers Say My Candle Is Weak but I Can Smell It Clearly in My Workshop — How Do I Create a More Objective Hot-Throw Testing Method? covers an objective scoring method.
6
Hold the retained sample warmKeep the retained candle somewhere warm for a few weeks and inspect the surface. Beads or film appearing only on this candle point to hidden droplets from cool addition.
7
Decide and recordIf all three match the reference, release the batch. If one is out of line, hold the batch and investigate before shipping. Write the result into the batch record either way.
Argued against our own interest, plainly. Pulling three candles out of every twenty for testing means 15% of each batch goes to QC instead of to customers, so you buy more wax and oil per candle sold, and we sell the wax and oil. Most makers would still rather pull them than ship a batch they have not checked. Once a scent has passed QC several times in a row with a stable, logged process, drop to one or two QC candles per batch. The plan should shrink as your process proves itself.
The CSI principle
Test across the pour, not just the candle you like best.
The hidden faults in this page are all differences: between the candle and its approved reference, or between the first and last candle of a batch. A single test candle cannot show a difference. Three candles from the start, middle and end of the pour, compared with a reference at the same cure age, can.

What QC costs against what it protects

Here is the batch costed. Material only: oil, wax, wick and jar. It excludes labour, packaging, freight and GST. At the 500 g Sandalwood rate and CSI 464's flat ₹507.40 a kilo, each 200 g candle carries ₹250.49 of material.

20 × 200 g at 8% · Sandalwood 500 g rate ₹5.03/g · CSI 464 ₹507.40/kg · wick and jar verified 10 September 2026
The batch, and the share of it that QC uses
Line Quantity Cost
Sandalwood Fragrance Oil 320 g ₹1,608.58
Luxury Soy Wax CSI 464 3,680 g ₹1,867.23
Eco Candle Wicks Thin C1 20 × ₹5.90 ₹118.00
White Matte Glass Jar 20 × ₹70.80 ₹1,416.00
Batch material 20 candles ₹5,009.81
Material per candle 1 candle ₹250.49
QC pull (3 candles) #1, #10, #20 ₹751.47
QC plus retained sample 4 of 20 candles ₹1,001.96 · 20% of the batch

Now think about what the plan protects. If a hidden fault ships, the loss is not the material. It is the refund, the replacement, the review and the repeat order that does not come. For a 50-candle run at the same specification, material alone is ₹12,524.52, and QC still needs only three or four candles, so its share falls to 6–8%. The larger the batch, the cheaper the insurance.

1
Woody · the batch oil on this page
Sandalwood Fragrance Oil
Priced almost flat from 100 g up: ₹5.03 a gram at 100 g, 500 g and 1 kg alike, so the 500 g is chosen for quantity, not rate. The 500 g covers the 320 g batch with 180 g left for the next run or a repeat after QC.
Pack Price Per gram Candles at 16 g
15 g ₹93.22 ₹6.21 0.94
50 g ₹271.40 ₹5.43 3.12
100 g ₹502.68 ₹5.03 6.25
500 g ₹2,513.40 ₹5.03 31.25
1 kg ₹5,026.80 ₹5.03 62.50
₹80.43 of oil per 200 g candle at the 500 g rate Buy Sandalwood
2
Container soy wax · CSI temperature on record
Luxury Soy Wax CSI 464 (flakes)
The one CSI wax with a temperature on record, 80–90°C for melting and pouring, from CSI's own guidance; confirm on the product page. That makes it the easiest wax to log against a stated window. The wax maker's ceiling is up to 10% fragrance, a formulation maximum rather than a target.
Pack Price Per kg 200 g candles at 184 g wax
500 g ₹260.00 ₹520.00 2.72
1 kg ₹507.40 ₹507.40 5.43
5 kg ₹2,537.00 ₹507.40 27.17
10 kg ₹5,074.00 ₹507.40 54.35
₹93.36 of wax in one 200 g candle at 8% Buy CSI 464
3
Citrus · a sensitive test for a flat opening
Juicy Orange Fragrance Oil
If you want to know whether your process flattens top notes, a bright citrus is the sharper test than a wood, because citrus profiles are commonly described as carrying more volatile material. That is general perfumery knowledge, not a claim about this oil's composition. The 15 g at ₹8.40 a gram is enough for one 200 g candle at 7.5%.
Pack Price Per gram Candles at 16 g
15 g ₹126.00 ₹8.40 0.94
50 g ₹379.00 ₹7.58 3.12
100 g ₹749.00 ₹7.49 6.25
500 g ₹3,749.00 ₹7.50 31.25
1 kg ₹7,499.00 ₹7.50 62.50
₹119.84 of oil per 200 g candle at the 100 g rate Buy Juicy Orange
The batch shopping list: Sandalwood 500 g ₹2,513.40, CSI 464 5 kg ₹2,537.00, Eco Candle Wicks Thin C1 pack of 50 ₹295.00, White Matte Glass Jar 4 packs of 5 ₹1,416.00, Pen Thermometer ₹354.00 and Candle Making Weighing Scale ₹354.00. Total ₹7,469.40. Leftovers: 180 g of oil, 1,320 g of wax and 30 wicks for the next batch.
Diwali is on 8 November 2026, and festive batches are exactly where hidden faults do the most damage, because the candles are gifts and the complaint arrives after the season. If you are scaling for festive or corporate orders, set up your batch record now. For production quantities, GST invoicing and your wax maker's instructions, message us on WhatsApp.
Ask for a festive batch quote
The candle that looks perfect on pouring day has passed a wax test. The fragrance test comes two weeks later.
— CandleMakingSuppliesIndia
Why trust this guide

CANDLEMAKINGSUPPLIESINDIA supplies raw materials, not finished candles. A QC plan that pulls candles out of every batch makes you buy slightly more wax and oil from us, and this page says so, and tells you when to scale it back. The goal is batches that match the candle your customers approved.

Every oil and wax price on this page comes from live CSI listings pulled on 24 September 2026. Wick, jar, thermometer and scale prices are those verified for Blog 760 on 10 September 2026. The only temperature quoted is CSI's own guidance for CSI 464 (80–90°C melt and pour); confirm it on the product page. Batch and QC costs are plain arithmetic on those prices, shown to two decimals.

The hidden effects described are general candle-making knowledge, not CSI measurements. The day 2, 7 and 14 checkpoints are labelled working practice, not cure specifications, and we publish no throw or cure data for any oil. For your wax maker's instructions, MSDS and IFRA documents, message us on WhatsApp at +91 7397976926.

Frequently asked questions

Can a candle look fine but still have fragrance problems?
Yes. Visible faults such as frosting, wet spots and sinkholes are mostly wax faults. A flat opening from overheating, uneven load from cool addition, hidden droplets and load drift across a held batch can all sit inside a normal-looking candle until the first burn or weeks of warm storage.
How do I check the quality of a candle batch?
Log the addition temperature and stir time, number candles in pour order, and burn the first, middle and last candles against a reference candle at the same cure age. Keep one retained sample somewhere warm for a few weeks and check it for surface oil.
Why does one candle in my batch smell weaker than the others?
Uneven mixing or settling is the usual suspect: the oil was not fully dissolved, or the batch sat on the heat through a long pour. Check the pour-order numbers. My First Candles from a Production Batch Smell Weaker than the Last Ones — Could the Fragrance Oil be Settling or Mixing Unevenly? covers first-vs-last candle differences in detail.
Why is my candle sweating weeks after I made it?
Warmth and time can bring undissolved oil to the surface. Cool addition and short stirring are common causes, as is a load near or above what the wax holds. Compare a retained candle made inside the wax maker's window at the same load.
How many candles should I test from each batch?
A working plan is three per batch (first, middle, last) plus one retained sample. For 20 candles that is 20% of the batch; for 50 it is 6–8%. Reduce it once a scent has passed several batches in a row with a stable, logged process.
What should I write down for every candle batch?
Batch ID, wax and oil with lot and weights, the thermometer reading when the oil went in, minutes on the heat afterwards, stirring method and time, pour order, and the QC result. How Do I Document a Custom Candle Fragrance Formula so My Production Team Can Reproduce the Same Scent and Strength Every Time? covers documenting a full formula for a production team.
Test across the pour
Log the temperature, number the pour, and burn the first, middle and last candle before you ship.
Sandalwood from ₹93.22 for 15 g, CSI 464 from ₹260.00, Juicy Orange from ₹126.00 for 15 g, Weighing Scale ₹354.00, Pen Thermometer ₹354.00, wicks from ₹59.00 and jars at ₹354.00 for 5. The full 20-candle batch list comes to ₹7,469.40.
Shop fragrance oils Ask about batch QC on WhatsApp
Editorial standards & sources
About this guide: Written by the CANDLEMAKINGSUPPLIESINDIA team. Product recommendations reflect the CSI range. The batch record and sampling plan apply to any wax and any supplier's fragrance oil.

Customer reviews: The six reviews at the top of this page are genuine, published Judge.me reviews left by CSI customers on the product pages named on each card — Eco Candle Wicks, Premium Candle Wicking Needle and Bamboo Wick Holder. They are general product reviews, not assessments of the guidance set out here. Names, star ratings, dates and products are as recorded by Judge.me and wording is unedited. "Verified buyer" appears only on the three reviews Judge.me recorded as verified — Monika Deep, Subhankar Roy and Sneha Tamang; the reviews from Ashwini, LJ and Lalitha Jagan are published but not recorded as verified, and carry no badge.

Figures pulled 24 September 2026, CSI live pricing: Sandalwood Fragrance Oil ₹93.22 / 15 g, ₹271.40 / 50 g, ₹502.68 / 100 g, ₹2,513.40 / 500 g, ₹5,026.80 / 1 kg. Juicy Orange Fragrance Oil ₹126.00 / 15 g, ₹379.00 / 50 g, ₹749.00 / 100 g, ₹3,749.00 / 500 g, ₹7,499.00 / 1 kg. Luxury Soy Wax CSI 464 ₹260.00 / 500 g, ₹507.40 / 1 kg, ₹2,537.00 / 5 kg, ₹5,074.00 / 10 kg. Eco Candle Wicks Thin C1 ₹295.00 / 50. Figures verified 10 September 2026 (Blog 760): Eco Candle Wicks Thin C1 ₹59.00 / 10 (₹5.90 each); White Matte Glass Jar ₹354.00 / 5 (₹70.80 each); Pen Thermometer ₹354.00; Candle Making Weighing Scale ₹354.00.

Non-price figures and assumptions: Load is the share of the finished candle weight (oil = W × L). The worked batch is 20 × 200 g at 8%: 320 g oil + 3,680 g wax = 4,000 g. Material costs exclude labour, packaging, freight and GST. QC share = 4 of 20 candles (20%); for 50 candles, 3–4 of 50 (6–8%). The only temperature quoted is CSI's own guidance for CSI 464, 80–90°C melt and pour; confirm on the product page. For other waxes, follow the wax maker's instructions. The day 2, 7 and 14 checkpoints are labelled working practice, not specifications. The hidden effects are general candle-making knowledge; citrus top-note volatility is general perfumery knowledge, not a statement about any CSI oil's composition. The CSI 464 ceiling (up to 10%) is the wax maker's stated formulation maximum, not a regulatory limit. Diwali 2026 falls on 8 November. Prices and availability change — the linked product pages are always authoritative.
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