How Do I Balance Full Melt-Pool Development, Strong Hot Throw and Long Candle Life Without Simply Increasing Wick Power?

How Do I Balance Full Melt-Pool Development, Strong Hot Throw and Long Candle Life Without Simply Increasing Wick Power?

 

Natural Soy Pearl Wax ₹450 / kg · ₹424.80 at 10kg 1kg to 50kg packs listed Stocked in India · ships nationwide
CSI burn-rate guides · the three-way trade-off
Pool, throw and life are three outcomes. Wick power is the one dial that buys the first two with the third — so measure what every other lever gives you for free.
★★★★★
"In past five years of testing and searching for the best candle fragrance I would say I found…"
Emma BecharaJun 2026
British Rose Fragrance Oil
★★★★★
"all the materials are high quality and ultimate fragrance range"
Arminder KaurVerified buyer · Mar 2026
Premium Coconut Soy Wax CSI 468
★★★★☆
"Good quality…"
Subhankar RoyVerified buyer · Sep 2024
Eco Candle Wicks
★★★★★
"Good product"
Biny AbrahamVerified buyer · Feb 2026
Black Glass Jar with Black Lid
★★★★★
"Been using this for the past 3 years, works perfectly well."
Niharika SOct 2024
Hot Air Gun
★★★★★
"Absolutely loved it!! Smells so perfect!!…"
Kavitha murthyOct 2025
Fresh Strawberries Fragrance Oil
★★★★★
"In past five years of testing and searching for the best candle fragrance I would say I found…"
Emma BecharaJun 2026
British Rose Fragrance Oil
★★★★★
"all the materials are high quality and ultimate fragrance range"
Arminder KaurVerified buyer · Mar 2026
Premium Coconut Soy Wax CSI 468
★★★★☆
"Good quality…"
Subhankar RoyVerified buyer · Sep 2024
Eco Candle Wicks
★★★★★
"Good product"
Biny AbrahamVerified buyer · Feb 2026
Black Glass Jar with Black Lid
★★★★★
"Been using this for the past 3 years, works perfectly well."
Niharika SOct 2024
Hot Air Gun
★★★★★
"Absolutely loved it!! Smells so perfect!!…"
Kavitha murthyOct 2025
Fresh Strawberries Fragrance Oil
Reviews collected and published through Judge.me on candlemakingsuppliesindia.store. Three longer reviews are shortened with an ellipsis; wording is otherwise unedited.
✓ Stated fragrance loads published per wax ✓ 92 fragrance oils in stock ✓ Bulk pricing & GST invoicing on WhatsApp
Candle Business Guides · The Three-Way Trade-Off
Wick power is the only lever that moves all three at once, and it moves the third one the wrong way. So the balance is found by measuring what each configuration gives you — melt-pool area per gram consumed per hour — and then spending on the six levers that raise pool or throw while leaving consumption alone.
7.0 cm²
of melt pool per gram per hour — the best ratio in the worked set below, which runs from 4.3 to 7.0 · the figure that distinguishes a better candle from a bigger flame · CSI live pricing, September 2026
Quick answers — read this first
What is the one number that balances all three? Melt-pool area ÷ grams per hour, in cm² per g/h. It rewards a wide pool and punishes a fast one, which is exactly the trade you are trying to manage. Compute it from a ruler measurement and a scale reading, and it is comparable between jars of different sizes.

Why can't I just use a bigger wick? Because wick power raises pool area and hot throw and consumption together, so it is the one move that cannot improve the ratio. In the worked set here, going from a lighter to a heavier cotton wick in the same 7 cm jar left pool area unchanged at 38.5 cm² while the rate rose from 6.5 to 9.0 g/h — the ratio fell from 5.92 to 4.28.

What raises throw without raising consumption? A full 14 to 21-day cure, fragrance load inside the wax's stated ceiling, oils with weight in the base, and getting the pool to the wall by burn two or three rather than burn one. None of those adds a gram per hour.

What raises pool area without raising consumption? Geometry. Pool area is π × (radius)², so it is set by the vessel: 6 cm gives 28.3 cm², 7 cm gives 38.5 cm², 10 cm gives 78.5 cm². Choosing the jar is the cheapest pool decision you will ever make.
The short answer
Score configurations, not opinions: pool area in cm² ÷ measured grams per hour. Higher is better, and the comparison survives a change of jar size, which total burn hours does not.
Move throw with time and chemistry, not flame: cure to 14–21 days, load inside the stated band (up to 13% on Luxury Soy Wax Chunks), and pick oils with base weight — British Rose lists at ₹3,068 per kilo, ₹49.09 inside a 200 g candle at 8%.
Move pool with geometry, not power: the vessel decides the surface. A narrower jar at the same fill weight needs less wick power to keep its whole surface molten, and that is where hours come from.
cm² of melt pool per gram per hour — six configurations, one maker's own rates 6 cm, 1 wick 7.07 · 28.3 cm² at 4.0 g/h 10 cm, 2 wicks 7.01 · 78.5 cm² at 11.2 g/h 5.3 cm, 1 wick 6.49 · 22.1 cm² at 3.4 g/h 7 cm, 1 light wick 5.92 · 38.5 cm² at 6.5 g/h 10 cm, 3 wicks 4.36 · 78.5 cm² at 18.0 g/h 7 cm, 1 heavy wick 4.28 · 38.5 cm² at 9.0 g/h Bar length is the ratio. Note the bottom two: more wick power in the same jar buys no extra pool area at all — only grams.
Areas are π × (diameter ÷ 2)² from nominal internal diameters. The grams-per-hour figures are one maker's own scale readings across six jars, used to show how the ratio behaves. No CSI wax, wick or jar page publishes a burn rate or a melt-pool figure, and none is implied here.
Straight answer
How do I get a full pool, strong throw and long life without more wick power?
You stop treating the three as independent goals and start scoring configurations on one ratio: melt-pool area divided by measured grams per hour. Pool area comes from a ruler — π × (width ÷ 2)² — and the rate comes from weighing the whole candle before and after a timed session. The ratio rewards exactly what you want, which is a wide pool held at a low consumption rate. In the worked set on this page it runs from 4.28 cm² per g/h on a heavily wicked 7 cm jar to 7.07 on a 6 cm jar with a light wick, and the crucial observation is this: adding wick power inside a fixed jar does nothing to the numerator. A 7 cm jar has 38.5 cm² of surface whether you put a light or a heavy wick in it, so a heavier wick buys only grams. Once you accept that, the balance becomes a shopping list of levers that move one thing without moving the others. Pool area is bought with geometry — 6 cm gives 28.3 cm², 7 cm gives 38.5 cm², 10 cm gives 78.5 cm² — and with patience, letting the wall be reached by burn two or three. Throw is bought with a full 14 to 21-day cure, with load inside the wax's stated ceiling (up to 13% on Luxury Soy Wax Chunks, up to 10% on CSI 464), and with oils that carry weight in the base. Life is protected by keeping the rate down, keeping residue low, and printing a session length on the care card. Six of those seven levers cost nothing per gram per hour. Only the wick charges you for its help.
One line: score every configuration as cm² of pool per gram per hour, then buy pool with geometry, throw with cure and oil, and life with a lower rate — the wick is the only lever that bills you.
The free-of-grams levers still have a shopping list. Natural Soy Pearl Wax at ₹450/kg, ₹424.80 at 10 kg and 50 kg, British Rose Fragrance Oil from ₹94.40 for 15 gm to ₹3,068 per kilo, and Amber Shiny Glass Jars at ₹47.20 each with a stated 6 cm diameter.
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The ratio: cm² of pool per gram per hour

Every maker already measures one of these two numbers. Almost nobody divides them.

Fragrance leaves a candle from the surface of the melt pool, so pool area is release area. Wax leaves a candle through the wick, so grams per hour is cost and life. Divide the first by the second and you get a single figure that says how much release surface a configuration is giving you for each gram per hour it spends. It is the cleanest way to compare two candles that are not the same size, and it is immune to the trick that makes burn-hour claims unreliable — you cannot improve it by making the jar bigger or the fill heavier.

Six configurations scored · worked example, CSI live pricing September 2026
Pool area, measured rate, the ratio, and what each configuration is good for
Configuration Nominal pool area Measured rate cm² per g/h What it suits
6 cm jar, one light cotton wick 28.3 cm² 4.0 g/h 7.07 120 g candles, sets, bedside and bathroom products
10 cm jar, two cotton wicks 78.5 cm² 11.2 g/h 7.01 500 g statement candles with real life in them
5.3 cm jar, one light cotton wick 22.1 cm² 3.4 g/h 6.49 Votives and travel tins; small pool but very low draw
7 cm jar, one light cotton wick 38.5 cm² 6.5 g/h 5.92 The standard 200 g jar candle, correctly wicked
10 cm jar, three cotton wicks 78.5 cm² 18.0 g/h 4.36 Fast and dramatic. The ratio says you are paying for it
7 cm jar, one heavier cotton wick 38.5 cm² 9.0 g/h 4.28 Nothing. Same pool as the 5.92 row, 38% more consumption

Read the first and last rows together and the whole argument of this page is visible in two lines. A 6 cm jar with a light wick has less than three-quarters of the pool area of a heavily wicked 7 cm jar — 28.3 cm² against 38.5 — and yet it is the better configuration by this measure, because it achieves its pool at 4.0 g/h instead of 9.0. You are not trying to maximise pool area. You are trying to maximise pool area per unit of consumption, and then choose a jar size that gives you enough absolute area for the room the candle is sold into.

Measure the pool at a fixed moment, every time
Pool width changes during a session, so the figure is meaningless unless you take it at the same point each time. Use the moment of extinguishing at the end of a fixed session — three hours for a 200 g candle, four for a 500 g — and measure across the widest part with a steel ruler. Use your own internal jar diameter rather than the page's dimensions: several CSI jars state an outer width (the Black Matte Glass Jar, for example, states 8 cm height and 7 cm width) and glass has thickness.

Why wick power cannot win this argument

A wick change inside a fixed jar can only ever do one thing to this ratio, and that is make it worse. The reason is that the jar sets the numerator. The widest pool any configuration can achieve in a 7 cm jar is the full 38.5 cm² of the surface — there is no more surface available. So the useful range of a wick is from "reaches the wall" to "reaches the wall", and every increment of power beyond that goes somewhere else entirely.

Where it goes is depth. A pool that has reached the wall and still has surplus heat arriving melts downwards instead of outwards. A deeper pool holds more molten wax, and more molten wax at the base of the wick means more fuel delivered to the flame, which means more grams per hour. This is the mechanism behind every row in the table above where the ratio collapsed, and it is why the honest ceiling on wick power is the point at which the pool reaches the wall reliably, and not one notch beyond it. The depth mechanism gets a full treatment in deep melt pool, short burn life.

The mistake: treating hot throw as a wick problem. A bigger pool does release more fragrance, so more wick power genuinely does improve throw — which is precisely the trap, because it is the most expensive way to buy it. Throw bought with flame power is charged to the customer in hours, and once the pool has reached the wall there is no further surface to win, so the extra power is buying throw through pool temperature rather than pool area. Hotter is not better for a fragrance: volatile top notes flash off a hot pool faster than they do a warm one. Run the comparison on a lighter wick with a full cure before you concede. See excellent hot throw, fast burn.

There is also a hard limit on the whole discussion. Wick power is not only a trade against burn hours — past a certain point it is a safety question, and that question does not negotiate. Soot or film on the glass, a jar too hot to hold comfortably, a flame that recovers unusually tall after flickering, or carbon mushrooming that drops into the pool: any of those and the configuration is rejected, whatever its ratio, its throw or its margin. A wick can be too large while the flame still looks ordinary, which is why the stop conditions are written as observations rather than as flame heights — see can a wick be too large even if the flame does not look tall.

The six levers that are not the wick

Each of these moves one of the three outcomes without moving consumption. The cost column is CSI live pricing, September 2026; the trade column is the thing you have to accept in exchange.

Levers ranked by what they give for what they cost
Pool area, hot throw and candle life — one lever at a time
# Lever Moves Effect on grams per hour Cost Trade
1 Cure 14–21 days before judging anything Throw None ₹0 Calendar time, and the discipline not to judge early
2 Choose the jar diameter deliberately Pool area, and life through it Lower, at a narrower diameter ₹47.20 for a 6 cm jar · ₹70.80 for a 7 cm · ₹212.40 for a 10 cm Shelf presence and the candle's proportions
3 Let the wall be reached on burn two or three Life Lower, because the wick is not specified for a cold start ₹0 A less dramatic first evening; say so on the care card
4 Load to the wax's stated ceiling Throw None directly — retest, oil loading can change wick behaviour 8%→10% on a 200 g candle adds ₹12.27 of British Rose at 1 kg pricing Material cost, and a fresh burn test: it is a formulation change
5 Pick oils with weight in the base Throw None ₹3,068–₹7,646 per kilo across the oils quoted here Scent direction; a base-heavy brief is not every brief
6 Split one large candle into a set of smaller ones Pool area across a room; life per jar Lower per jar Two 6 cm jars ₹94.40 against one 10 cm jar ₹212.40 An extra pour and an extra wick per unit sold
7 Increase wick power Pool speed and throw Higher — this is the only lever that charges ₹3.54 more per candle from C1 to C2 Burn hours, and beyond a point, safety
Priced above: Amber Shiny Glass Jar with Black Lid ₹47.20 each (6 cm diameter, 6.5 cm height, stated) · Black Matte Glass Jar ₹354 per pack of 5 = ₹70.80 each · Apothecary Glass Candle Jar 500 gm ₹212.40 · British Rose Fragrance Oil 1 kg ₹3,068 (₹3.068/g) → 16 g at 8% = ₹49.09, 20 g at 10% = ₹61.36, a difference of ₹12.27 · Eco Candle Wicks C1 ₹5.90 and C2 ₹9.44 each. The ₹3,068–₹7,646 per kilo range refers to British Rose and Dark Vanilla Fragrance at 1 kg.

Lever six needs a word of honesty, because it is often oversold. Splitting a 200 g candle into two 100 g candles does not improve the ratio — both the pool area and the consumption roughly halve per jar, so cm² per g/h stays where it was. What splitting changes is the absolute release area available if both are lit, and the per-jar life, which is often what a customer actually wants: a candle they can finish. Sell it as a set because it suits the customer, not because the physics got better.

Geometry is the cheapest pool you can buy

Pool area grows with the square of the diameter, which makes the jar the most leveraged decision in the whole candle — and it is a decision made once, at purchase, for ₹47.20 to ₹212.40 a unit.

Jar diameter to pool area · nominal internal diameters
What each step up in width asks of the wick system
Nominal internal diameter Full pool area Times the 5.3 cm pool A CSI vessel stating that dimension What the wick has to do
5.3 cm 22.1 cm² 1.0× Smaller jars and votives in the 4–5 cm height band Very little. A light cotton wick usually holds it
6 cm 28.3 cm² 1.3× Amber Shiny Glass Jar — stated 6 cm diameter, 6.5 cm height One light wick. The best ratio in the worked set
7 cm 38.5 cm² 1.7× Black Matte Glass Jar — stated 8 cm height, 7 cm width (external) One well-matched wick, bracketed between two candidates
9.2 cm 66.5 cm² 3.0× An inside measurement of a jar with a 10 cm rim Two wicks, or a type stated for large diameters
10 cm 78.5 cm² 3.6× Apothecary Glass Candle Jar — stated outer rim approx. 10 cm Two to three wicks, or Cotton Braided Wicks, stated for over 8 cm

Two cautions before you use that table as a buying guide. First, most CSI jars state capacity in millilitres rather than grams, and several give an external width rather than an internal diameter — so weigh one filled jar to learn its real fill weight, and put a ruler across the inside of the mouth to learn its real diameter. Second, a jar's height matters as much as its width for full-life performance: a tall narrow jar has a wonderful ratio at the top and can starve a flame at the bottom, which is a different failure and needs stage-by-stage measurement. That is the subject of a wick that weakens halfway down the jar.

Do not solve a wide jar with a hot wick. If a 10 cm jar will not hold a pool at an acceptable rate on two wicks, the honest options are a third wick (and the hours it costs — measured, not guessed), a wick type stated for large diameters, or a narrower vessel. What is not an option is pushing a single wick hard enough to reach a wall 5 cm away: it digs a deep pool in the centre long before the edge melts, which is the worst possible combination of high consumption and poor pool development. The wick-count arithmetic is in the three-wick diagnosis.

What to buy for the balance test

Three components let you run every lever in the table except the wick. Each card shows every listed pack with its per-unit price, so the test can be costed before it is poured.

1
Geometry · stated 6 cm diameter
Amber Shiny Glass Jar with Black Lid
The vessel that produced the best ratio in the worked set, and the cheapest way to test lever two. Its page states 6 cm diameter and 6.5 cm height with a 120 gm capacity — which makes it unusual among CSI jars in stating a weight rather than a volume, though you should still weigh one filled jar to confirm. A nominal 6 cm pool is about 28.3 cm², roughly three-quarters of a 7 cm jar's surface for a markedly lower wick demand. Listed in a single jar and a pack of five at the same ₹47.20 each, so you can buy exactly the number the test needs.
Size Price Per piece
Pack of 1 ₹47.20 ₹47.20
Pack of 5 ₹236 ₹47.20
₹47.20 per jar at both listed packs · about 28.3 cm² of pool Buy Amber Shiny Glass Jars
2
Throw at no cost in grams
British Rose Fragrance Oil
Lever five, priced. Fragrance choice changes perceived strength without touching consumption, and the pack ladder on this oil steps down substantially with size — from ₹6,293.33 per kilo at the 15 gm trial to ₹3,068 per kilo at 1 kg, which is one of the steeper reductions in the fragrance range. Inside a 200 g candle at 8% that is ₹49.09 of oil; raising the load to 10% adds ₹12.27. Use 15 gm bottles to shortlist on smell and 100 gm or larger once an oil is going into a burn test, because a test needs the same oil across every jar. The 1 kg pack is the largest listed size; recurring volumes above that are quoted on WhatsApp.
Size Price Per 100g 120 g candles @ 8%
15 gm ₹94.40 ₹629.33 ≈1
50 gm ₹212.40 ₹424.80 ≈5
100 gm ₹342.20 ₹342.20 ≈10
500 gm ₹1,593 ₹318.60 ≈52
1 kg ₹3,068 ₹306.80 ≈104
₹49.09 of fragrance per 200 g candle at 8% and 1 kg pricing Buy British Rose
3
The constant · price steps down with volume
Natural Soy Pearl Wax
A balance test needs one wax across every jar, and this is one of the few CSI waxes whose listed price per kilo genuinely falls with volume: ₹450 at 1 kg against ₹424.80 at 5 kg, 10 kg and 50 kg. Its page describes it for a variety of container types and candle designs and states no fragrance load and no temperatures — so hold it at 8% for the comparison and do not push the load until a cured jar has been burned to the bottom. Inside a 120 g candle at 8% that is ₹49.68 of wax at 1 kg pricing, or ₹46.90 at the 10 kg rate. Because the wax has to be constant for the ratio to mean anything, buy enough for the whole series in one pack.
Size Price Per kg 120 g candles @ 8%
1 kg ₹450 ₹450 ≈9
5 kg ₹2,124 ₹424.80 ≈45
10 kg ₹4,248 ₹424.80 ≈90
50 kg ₹21,240 ₹424.80 ≈452
₹49.68 of wax per 120 g candle at 8% · ₹46.90 at 10 kg pricing Buy Natural Soy Pearl Wax
A 120 g candle on this build is ₹132.23 of materials — ₹49.68 of wax, ₹29.45 of oil, a ₹47.20 jar and a ₹5.90 wick — and at the worked example's 4.0 g/h with 112 g usable, that is ₹4.72 per usable burn hour. For bulk wax and fragrance pricing, GST invoicing and documentation, use the bulk line.
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Scoring a configuration on three axes

One variable per round, three scores per round, and a written sheet. This is slow and it is the only method that produces a result you can repeat next quarter.

1
Fix the baseline and write it downOne jar, one wax, one oil, one load, one fill weight, one wick, one session length. Measure the internal diameter and compute the full pool area. Pour four jars and cure them 14 to 21 days. This baseline is what every later round is scored against, so it gets recorded in the same detail as a production batch.
2
Score the baseline on all three axesPool: width at the moment of extinguishing, converted to area, recorded at burn one, two, three and in the bottom third. Throw: a 1–5 score at 30 and 120 minutes in a closed room with no competing scent, judged by someone who did not pour the candle. Life: grams per hour from before-and-after weights, plus residue once a jar reaches the end. Compute cm² per g/h.
3
Round one: cure, the free leverBurn one baseline jar at day 14 and one at day 21 and score throw on both. If day 21 scores higher, your cure schedule just bought you throw for nothing and your next question is whether you were compensating for a short cure with wick power. Cure changes different fragrance families by different amounts — see how cure time changes the smell of different families.
4
Round two: geometryPour the same recipe, same wick, into a narrower jar at a proportionate fill weight. Score all three axes again. Expect a smaller absolute pool, a lower rate and usually a better ratio. The question this round answers is whether your throw problem was actually a jar problem.
5
Round three: load, inside the stated ceiling onlyRaise the load one step — 8% to 10% on a wax whose page states a band that includes it — and re-pour, re-cure and re-score. Treat this as a formulation change, because it is: more oil in the wax can alter how the wick draws, so the rate must be re-measured rather than assumed. Record which load convention you are using, share of finished candle or share of wax weight, and never mix the two.
6
Round four: the wick, last and reluctantlyOnly now change wick power, and only if pool width in the bottom third of the jar or residue at end of life says you must. Score all three axes, compute the ratio, and compare it against every earlier round. If the ratio falls, you have bought pool speed and throw with hours — which is a legitimate decision as long as you know the price and the candle still passes every safety observation.
The CSI principle
The jar decides how much pool you can have. The wick only decides how fast you spend it.
Once a pool reaches the wall there is no more surface to win, so every extra notch of wick power is purchased in grams per hour and paid for by the customer. Buy pool with geometry, throw with time and chemistry, and keep the wick at the lowest power that still reaches the wall at the bottom of the jar.

What you can honestly say afterwards

A balance test produces three things you can put in front of a customer, and one thing you cannot.

You can describe the melt pool honestly: that it widens over the first two or three burns and then reaches the glass, because that is what you measured across a full life in your own jars. You can describe the cure: that the candle has been cured for a stated number of days before dispatch, because you control that and it is a real differentiator. And you can describe the care conditions your figures assume — trim before every burn, sessions of a stated length, all wicks lit — because those are the conditions you tested under.

What you cannot do is quote a burn-hour figure from a single jar, or from your own best jar, or from a supplier. No CSI wax, wick or jar page publishes a burn time or a burn rate, and nobody else can tell you yours, because it depends on your jar, your wax, your load, your oil and the way your customer burns it. If you intend to print a number, the minimum honest basis is more than one unit, tested to the end of life, with a conservative figure or a range the customer can reproduce, and a note saying what it assumes about session length and trimming. That is the subject of the claims cluster in this series rather than of this page, and why grams per hour travels and total hours does not is the place to start.

Keep the ratio on the recipe sheet
Write cm² per g/h next to the recipe for every product you sell, with the date and the jar's measured internal diameter. It takes one line, it makes two products comparable across sizes, and when a supplier change or a new oil moves the rate, the ratio tells you immediately whether the candle got better or merely different. It is also the fastest way to spot a creeping wick decision: if the ratio has fallen over three batches, somebody has been solving throw complaints with flame.
A full pool, a strong throw and a long life are not three dials. They are one ratio and a lot of patience.
— CandleMakingSuppliesIndia
Why trust this guide

CANDLEMAKINGSUPPLIESINDIA supplies raw materials, not finished candles. Five of the seven levers in the table above involve buying something from us, and the two that cost nothing — a full cure and letting the pool arrive on burn three — are the two we have ranked first. We do that because a maker whose candles balance throw against life keeps selling candles, and a maker whose candles smell wonderful for twenty hours and then stop stops ordering.

Every price, pack and stated dimension here comes from live CSI stock in September 2026 and links to the product page, where current pricing and specification always take precedence. Stated specifications are the pages' own: Luxury Soy Wax Chunks up to 13% (8–13%, 10% recommended), CSI 464 up to 10%, Natural Soy Pearl Wax no stated load or temperatures, the Amber Shiny Glass Jar 6 cm diameter and 6.5 cm height, the Apothecary jar an outer rim of approximately 10 cm and hot-pour to 85°C, and Cotton Braided Wicks engineered for large-diameter candles exceeding 8 cm. No CSI page publishes a burn rate, a burn time, a melt-pool depth or a figure for how much any oil or dye changes consumption, so none appears here — the grams-per-hour readings behind every ratio on this page are one maker's own measurements, carried through to show the method.

For bulk wax and fragrance pricing above the listed packs, GST invoicing, MSDS or IFRA documentation, message us on WhatsApp at +91 7397976926.

Frequently asked questions

Can I have a strong hot throw and a long burn time in the same candle?
Yes, provided the throw is not being bought with flame power. The levers that raise perceived strength at no cost in grams per hour are a full 14 to 21-day cure, fragrance load inside the wax's stated ceiling, oils with weight in the base, and a pool that reaches the wall by burn two or three. What you cannot do is get both from a heavier wick in the same jar — that adds no pool area at all, only consumption. Score configurations as cm² of pool per gram per hour and the trade becomes visible.
How do I calculate melt-pool area?
Measure the pool's widest point with a steel ruler at the moment you extinguish the candle, then use π × (width ÷ 2)². A 6 cm pool is 28.3 cm², 7 cm is 38.5 cm², 9.2 cm is 66.5 cm² and 10 cm is 78.5 cm². Use the inside of your own jar for the full-pool figure, because several CSI jar pages state an external width rather than an internal diameter — and remember that area grows with the square of the width, so the last centimetre carries far more surface than the first.
Does a narrower jar really give a better candle?
It usually gives a better ratio, because a smaller surface needs less wick power to hold molten. In the worked set a 6 cm jar scored 7.07 cm² per g/h against 5.92 for a correctly wicked 7 cm jar and 4.28 for an over-wicked one. What a narrow jar does not give you is absolute pool area, so match the jar to the room the candle is sold for — a bedside candle and a living-room candle are different briefs, and the ratio does not decide that for you.
Will raising the fragrance load shorten my burn time?
It is a formulation change and it has to be re-measured rather than assumed. Heavy oil loading can change how a wick draws, so after any load change you re-run the grams-per-hour test and re-check pool width in the bottom third of the jar. Stay inside the band the wax page states — up to 13% on Luxury Soy Wax Chunks, up to 10% on CSI 464 — because those are formulation limits describing how much oil the wax will hold. On a 200 g candle, 8% to 10% adds ₹12.27 of British Rose at 1 kg pricing.
Is two small candles better than one big one?
For the customer, often — they get a candle they can finish and two points of release in the room. For the ratio, no: splitting halves both the pool area and the consumption per jar, so cm² per g/h stays roughly where it was. The honest pitch for a set is convenience, gifting and per-jar life, not better physics. Two 6 cm jars at ₹47.20 each cost ₹94.40 against ₹212.40 for one 10 cm Apothecary jar, plus one extra wick and one extra pour.
What is a good cm² per g/h figure?
There is no published benchmark and we will not invent one — the figure depends on your jar, wax, oil, load and room. What it is for is comparison between your own configurations: pour two, score both, keep the higher one provided it also passes on residue, pool width in the bottom third, and every safety observation. The worked set on this page spans 4.28 to 7.07, which gives you a sense of the spread a single range can contain — not a target to hit.
One ratio, six free levers
Score every candle as cm² of pool per gram per hour — then buy pool with geometry and throw with patience.
Amber Shiny Glass Jars at ₹47.20 each with a stated 6 cm diameter. Black Matte Glass Jars at ₹70.80 each. Apothecary Glass Candle Jars at ₹212.40 for the 500 g size. British Rose Fragrance Oil from ₹94.40/15 gm to ₹3,068 per kilo. Natural Soy Pearl Wax at ₹450/kg, ₹424.80 at 5 kg and above. Eco Candle Wicks at ₹5.90 and ₹9.44. Message us for bulk pricing, GST invoicing and documentation.
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Editorial standards & sources
About this guide: Written by the CANDLEMAKINGSUPPLIESINDIA team. Product recommendations reflect the CSI range; the cm²-per-gram-per-hour ratio, the lever ranking and the four-round scoring method apply to any supplier's materials.

Customer reviews: The six reviews at the top of this page are genuine, published Judge.me reviews left by CSI customers on their product pages. Names, star ratings, dates and products are as recorded by Judge.me; three longer reviews are shortened with an ellipsis and otherwise unedited.

Figures verified September 2026: Natural Soy Pearl Wax ₹450/1 kg, ₹2,124/5 kg (₹424.80/kg), ₹4,248/10 kg (₹424.80/kg), ₹21,240/50 kg (₹424.80/kg); the page states no fragrance load and no temperatures. British Rose Fragrance Oil ₹94.40/15 gm, ₹212.40/50 gm, ₹342.20/100 gm, ₹1,593/500 gm, ₹3,068/1 kg (₹3.068/g). Dark Vanilla Fragrance ₹7,646/1 kg. Amber Shiny Glass Jar with Black Lid ₹47.20 for a single jar and ₹236 per pack of 5 (₹47.20 each); page states 6 cm diameter, 6.5 cm height, 120 gm capacity. Black Matte Glass Jar ₹354 per pack of 5 and ₹708 per pack of 10 (₹70.80 each); page states a fill weight of 200 ml and dimensions of 8 cm height, 7 cm width — a volume and an external width, not a weight and an internal diameter. Apothecary Glass Candle Jar with Dome Lid 500 gm ₹212.40, 700 gm ₹250; page states fill capacity ~500 g – 700 g, outer rim approx. 10 cm, and "Safe for hot-pour up to 85°C". Eco Candle Wicks Thin (C1) ₹5.90 and Thick (C2) ₹9.44 per wick, flat at every listed pack; the page states no diameter and no jar size. Cotton Braided Wicks Ready Made ₹12 each at every pack; page states "engineered for large-diameter candles exceeding 8 cm". Luxury Soy Wax Chunks state up to 13% fragrance load (8–13%, 10% recommended); Luxury Soy Wax CSI 464 states up to 10%. Candle maths assumes fragrance load as a percentage of finished candle weight: 200 g at 8% = 184 g wax + 16 g oil, at 10% = 180 g wax + 20 g oil; 120 g at 8% = 110.4 g wax + 9.6 g oil. Pool areas are π × (diameter ÷ 2)² from nominal internal diameters: 5.3 cm = 22.1 cm², 6 cm = 28.3 cm², 7 cm = 38.5 cm², 9.2 cm = 66.5 cm², 10 cm = 78.5 cm². Cure of 14–21 days reflects standard practice for soy container candles. Every grams-per-hour figure, ratio, residue weight and usable-hour figure on this page derives from one maker's own measurements and is shown to demonstrate the arithmetic — no CSI product page publishes a burn time, a burn rate, a melt-pool depth or hours per gram, and none is stated or implied. Stated fragrance loads are wax formulation limits, not regulatory limits. Prices and availability change — the linked product pages are always authoritative.
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