I’m Using Multiple Pouring Pitchers and Each Retains Some Wax — How Do I Calculate Realistic Production Yield Instead of Theoretical Yield?

I’m Using Multiple Pouring Pitchers and Each Retains Some Wax — How Do I Calculate Realistic Production Yield Instead of Theoretical Yield?

Theoretical yield is a ceiling Weigh losses at each station Plan input from released candles
CSI scale-up guides · Weighing, equipment & production errors
Your next batch plan should start from the candles you released last time, not from the batch weight.
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Weighing · realistic yield
Theoretical yield divides the batch by the fill weight. Realistic yield subtracts everything your melter, pitchers and bench keep, then everything QC rejects.
95 of 100
candles released from a 20 kg batch planned for 100 × 200 g
Quick answers — read this first
What is the difference between theoretical and realistic yield? Theoretical yield is batch weight divided by fill weight. Realistic yield is the number of candles you actually release after vessel losses, pitcher residue, spills and QC rejects.

How much wax does a pouring pitcher keep? It depends on the pitcher, the wax, the room temperature and how long it sits between fills. Weigh each pitcher clean, then again after the run with the set residue inside.

Do more pitchers mean more loss? Usually more end-of-run residue, because each pitcher finishes with its own film. But fewer pitchers can mean longer waits and cooler wax, so measure before cutting them.

How do I use realistic yield to plan the next batch? Divide the good candles you need by your measured yield, then multiply by fill weight. For 100 candles at 95% and 200 g, you need about 21.1 kg of scented wax.
The short answer
Theoretical yield: Scented batch weight divided by target fill weight, before any loss. 20 kg ÷ 200 g = 100 candles.
Realistic yield: Candles actually released after vessel, pitcher, bench and QC losses, as a share of theoretical.
Yield reconciliation: A station-by-station account of where every gram of a batch went, weighed rather than estimated.
From theoretical to released candles, 20 kg batchTheoretical (20 kg ÷ 200 g)100 candlesFillable after vessel losses97 candlesReleased after QC95 candles
Illustrative reconciliation: 500 g of vessel and bench loss and two QC rejects turn 100 planned candles into 95 released.
Straight answer
I’m Using Multiple Pouring Pitchers and Each Retains Some Wax — How Do I Calculate Realistic Production Yield Instead of Theoretical Yield?
Start from the ceiling and weigh your way down. A 20 kg scented batch at 200 g has a theoretical yield of 100 candles. Weigh what the melter keeps after the last draw, what each pitcher keeps at the end of the run, what is wiped off the bench and jar rims, and how many candles fail QC. In the worked example those losses leave 97 fillable candles and 95 released ones, a realistic yield of 95%. Use that figure to plan input: 100 good candles need 100 × 200 g ÷ 0.95, about 21.1 kg of scented wax. Re-measure whenever pitchers, operators or equipment change.
One line: realistic yield is theoretical yield minus weighed losses at every station, and it is the only yield you should plan purchases on.
A Steel Pouring Pitcher can be weighed clean and again after the run, so its end-of-run residue becomes a number on your yield sheet.
View Steel Pouring Pitcher

Theoretical yield is a ceiling, not a forecast

Every pitcher on your bench is a small, silent customer who takes wax and never pays.

Theoretical yield is simple arithmetic. Twenty kilograms of scented wax at a 200 g fill is 20,000 ÷ 200 = 100 candles. At 8% of total weight that batch is 18.4 kg of wax plus 1.6 kg of oil. Nothing in that sum knows about the wax that stays in the melter below the ladle, the film that sets on four pitchers, or the drips wiped off a jar rim with tissue.

In a small test the difference hides inside rounding. A 1 kg test that should give five candles gives five, because you scrape one pitcher and pour the last few grams into a tealight. At 20 kg with several operators and several pitchers, the losses become large enough to change how many candles you can promise a customer. The CSI planning convention allows 5% wastage, which turns 50 candles from 10 kg into 48. That is a sensible opening assumption, but it is an assumption until your own reconciliation replaces it.

Where the wax actually stays behind

A yield problem is almost never one big loss. It is four or five small ones, each at a different station. List the stations for your own process before you weigh anything.

Melter heel. The layer below the point your ladle or pitcher can reach, plus the film on the walls. It is usually recoverable if you remelt it into the next batch of the same fragrance.
Pitcher residue. Each pitcher collects a skin as it cools between fills and ends the run with a set coating. The more pitchers, the more end-of-run residue.
Bench and rim losses. Drips on the pouring tray, wax wiped from rims, overflow into a spill tray. Some can be scraped and remelted; wax on tissue is gone.
Partial fills. The last pitcher rarely holds exactly one more candle. The leftover 100 g or so is recoverable wax but not a saleable candle this run.
QC rejects. Candles with sinkholes, an off-centre wick or a chipped jar. The wax is often recoverable by remelting; the jar, wick and labour are not.

The number of pitchers changes the balance between these stations rather than simply adding loss. Four operators with one pitcher each finish the run with four set films, but they also refill more often from the melter, so each pitcher spends less time cooling on the bench. Two pitchers shared between four people finish with two films, yet each pitcher waits longer between fills and builds a thicker skin, and the later candles may be poured cooler. The only way to know which arrangement loses less in your workshop is to weigh both on real batches.

Pitcher residue also grows with the gap between refills. A pitcher that is refilled within a minute or two keeps most of its walls molten, and the next fill redissolves the thin skin. A pitcher left on a cold steel bench during a tea break sets a thick shell that the next fill only partly melts. Record break times on the batch sheet if you want to see this in your own numbers.

Separating recoverable from unrecoverable loss matters for costing. Recoverable wax still has value if it goes back into the same fragrance. Unrecoverable wax is simply cost.

Worked example: reconciling a 20 kg batch poured with four pitchers

Suppose a maker pours a 20 kg batch of CSI 468 scented with Bergamot Amber at 8% of total, using four pitchers. The loss figures below are illustrative measurements to show the method, not typical values.

Yield reconciliation
20 kg batch · 200 g fill · four pitchers
Station How measured Weight (g) Recoverable?
Scented wax made Wax + oil weighed in 20,000 —
Melter heel Scraped and weighed after the run 300 Yes, same fragrance
Pitcher residue 4 pitchers × 30 g, weighed against clean tare 120 Yes if scraped promptly
Bench and rim drips Spill tray weighed; tissue estimated 80 Mostly no
Available to fill 20,000 − 500 19,500 —
Candles filled 97 × 200 g 19,400 —
Partial leftover 19,500 − 19,400 100 Yes
QC rejects 2 candles 400 Wax yes, jar and wick no
Released candles 97 − 2 95 candles —

Realistic yield is 95 ÷ 100 = 95%. Notice that pitcher residue was only 120 g of a 500 g vessel loss. The melter heel was bigger. Had the maker blamed the pitchers and cut to two, they might have saved 60 g and lost more than that in cooler wax and rough tops later in the run.

What the loss costs

CSI 468 at ₹6,370.00 per 10 kg is ₹0.637 per gram (₹6,370.00 ÷ 10,000). Bergamot Amber at ₹5,437.00 per kg is ₹5.437 per gram. A 200 g candle at 8% carries 184 g of wax and 16 g of oil, so its scented wax costs 184 × ₹0.637 + 16 × ₹5.437 = ₹117.21 + ₹86.99 = ₹204.20, or about ₹1.021 per gram.

The 500 g of vessel and bench loss is therefore worth 500 × ₹1.021 = ₹510.50 at material cost. If the heel, pitcher residue and partial are remelted into the next Bergamot Amber batch, only the drips and the rejected jars and wicks are true cost. If the next batch is a different fragrance, the whole 500 g plus the leftover is cost, because blending it in would change the scent.

How to measure your own yield without slowing production

1
Weigh the batch in. Record wax and oil weights on the batch sheet. This is the only figure you already have.
2
Tare every pitcher and tray. Write the clean weight on each pitcher and spill tray with a marker.
3
Count candles filled and rejected. Keep a tally beside the pouring station. Record reject reasons, because a pattern tells you more than the count.
4
Weigh residues at the end. Weigh each pitcher and tray with its set residue, subtract the tare, and scrape the melter heel into a tared container.
5
Close the account. Batch weight minus candles filled minus residues should come close to zero. A gap of more than about 1% of the batch (a suggested starting point) means an unrecorded loss or a fill-weight problem worth chasing.

Do this for three consecutive batches, a suggested starting point, before you trust the figure. One reconciliation tells you where loss can occur. Three tell you how stable it is and whether one operator, one pitcher or one fragrance behaves differently.

A gap that will not close
If the account keeps coming up short after residues are weighed, the missing wax is probably inside the candles. Check fill weights with the jar tared: a 2 g overfill across 97 candles quietly absorbs 194 g.

Use realistic yield to plan input and to cost the order

Once the yield is stable, plan batches backwards from the number of good candles you need. For 100 released candles at 95% yield and a 200 g fill, required scented wax is 100 × 200 ÷ 0.95 = 21,053 g, about 21.1 kg. At 8% of total that is roughly 19,369 g of wax and 1,684 g of oil (21,053 × 0.92 and 21,053 × 0.08).

If your melter's real fill is smaller than that, split the order into two batches and reconcile each. A second batch has its own heel and its own pitcher residue, so two batches of 10.5 kg usually yield slightly fewer candles per kilogram than one batch of 21 kg. That is not an argument for bigger batches automatically; it is a reason to include the extra loss in the plan.

For quotations, cost the candle on material actually consumed, not on the theoretical 200 g. If you price every candle on 200 g of scented wax when each one really consumes about 210.5 g once losses are spread across released candles (20,000 ÷ 95), your margin is lower than you think.

Keep the reconciliation on the same batch sheet as the formula, not in a separate notebook. When a customer later reports a short-weight candle, or you wonder why one fragrance always seems to run out early, the loss history for that batch is then in one place. Over a season the sheets also show whether a change you made, such as a new spill tray or a different pouring order, actually moved the yield or only felt as if it did.

Against our own interest
Do not order extra cartons of wax to cover a yield you have not measured. Reconcile three batches first. Many makers find their real loss is smaller than their fear, and some find it is concentrated in one fixable station.

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
Pouring
Steel Pouring Pitcher
The Large 600 ml pitcher is in stock and easy to tare and weigh, so each one's end-of-run residue can be logged per batch. Listed spec: stainless steel · 600 ml size 12 × 13 cm.
Option Price Status on the September 2026 pull
Large 600 ml ₹708.00 In stock
Small 150 ml ₹354.00 Out of stock
Live CSI price; the product page is authoritative. View Steel Pouring Pitcher
2
Weighing
Candle Making Weighing Scale
Needed to tare pitchers, trays and the heel container. Check that its capacity suits a full pitcher, as capacity is not published. Listed spec: digital, grams or ounces · capacity and resolution not published.
Option Price Status on the September 2026 pull
Digital scale ₹354.00 In stock
Live CSI price; the product page is authoritative. View Candle Making Weighing Scale
3
Coconut soy wax
Premium Coconut Soy Wax CSI 468 (flakes)
The worked example: at ₹6,370.00 per 10 kg, each gram of lost scented wax is costed from ₹0.637 of wax plus the oil it carries. Listed spec: coconut-soy blend · stated melt point 50–53°C, pour 58–60°C · stated fragrance load up to 13% · stated shelf life 60 months.
Option Price Status on the September 2026 pull
500 g ₹325.00 In stock
1 kg ₹650.00 In stock
5 kg ₹3,185.00 In stock
10 kg ₹6,370.00 In stock
Live CSI price; the product page is authoritative. View Premium Coconut Soy Wax CSI 468
Argue against interest
Plan purchases on released candles, not on batch weight.
Theoretical yield is useful only as a ceiling. The number that should drive your order quantities and quotations is the one you reconciled by weight over several batches.
A yield figure you did not weigh is a hope, not a plan.
— 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

how do I calculate candle production yield
Divide scented batch weight by fill weight for theoretical yield. Then weigh the melter heel, pitcher residues and bench losses, count candles filled and QC rejects, and divide released candles by theoretical candles. That is your realistic yield.
how much wax is wasted in pouring pitchers
It varies with pitcher shape, wax type, room temperature and how long the pitcher waits between fills. Weigh each pitcher clean and again at the end of the run with its set residue. Three batches give you a dependable figure.
is 5 percent wastage normal in candle making
CSI's planning convention uses 5%, which turns 50 candles from 10 kg into 48. Treat it as an opening assumption. Your own reconciliation may show more or less depending on equipment, operators and QC standards.
can I reuse wax left in pitchers and the melter
Yes, if you scrape it promptly, keep it clean, and remelt it into the next batch of the same fragrance. Adding it to a different fragrance changes the scent and should be avoided or recorded as a deliberate blend.
how much scented wax do I need for 100 good candles
Divide 100 by your measured yield and multiply by fill weight. At 95% yield and 200 g, that is about 21.1 kg of scented wax, roughly 19.4 kg of wax and 1.7 kg of oil at 8% of total.
why does my batch never make as many candles as calculated
Usually because several small losses add up: melter heel, pitcher films, drips, a partial last fill and rejects. Overfilling is another hidden cause. A weighed reconciliation shows which station takes the most.
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
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 (Weighing, equipment & production errors).

Customer reviews: The reviews at the top are genuine, published Judge.me reviews — Raajull Bhatt (5★, verified); Arminder Kaur (4★, verified); Tina Raha (4★, verified); Lalitha Jagan (5★, not recorded as verified); Judy Roy (5★, verified); Akanksha Sharma (5★, verified). Names, ratings, dates and products as recorded by Judge.me.

Product facts (September 2026, CSI live store): Steel Pouring Pitcher: Large 600 ml ₹708.00, Small 150 ml ₹354.00 (out of stock) — stainless steel · 600 ml size 12 × 13 cm. Candle Making Weighing Scale: Digital scale ₹354.00 — digital, grams or ounces · capacity and resolution not published. Premium Coconut Soy Wax CSI 468 (flakes): 500 g ₹325.00, 1 kg ₹650.00, 5 kg ₹3,185.00, 10 kg ₹6,370.00 — coconut-soy blend · stated melt point 50–53°C, pour 58–60°C · stated fragrance load up to 13% · stated shelf life 60 months.

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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