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Cellophane
Mary

Autor

Mary

29. lipiec 2026FI
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Cellophane

Jacques Brandenberger watched wine spilled on a restaurant tablecloth and set out to make a cloth that liquid could not soak into. He sprayed fabric with viscose, and the coating peeled off in a clear flexible sheet. The coated cloth was useless; the sheet that fell off was the invention.

The chemistry is regeneration, not synthesis. Cellulose is dissolved as a xanthate to make viscose, extruded through a slit into an acid bath, and turned back into cellulose — the same molecule it started as, now in a continuous transparent film instead of plant fibre. Nothing new is created; it is dissolved and reshaped.

The patent never uses the trade name. It is titled "Process for the continuous manufacture of cellulose films"US Patent 981,368, granted to Brandenberger on 10 January 1911.

Zaawansowany
8 hours

Instrukcje

1

Read the process, do not run the viscose chemistry

Industrial viscose uses carbon disulfide, which is genuinely toxic and highly flammable, and caustic soda. This blueprint studies the process and demonstrates regeneration with a safe substitute — do not attempt the xanthate route.

2

Read US 981,368 and note the word 'continuous'

Brandenberger claims CONTINUOUS manufacture: solution in, film out, without stopping. Making a sheet was known; making it endlessly is the patent.

Tools needed:

Notebook and PencilNotebook and Pencil
3

Understand why cellulose cannot simply be melted

Cellulose decomposes before it melts, so it cannot be cast or extruded like a thermoplastic. It has to be dissolved into a derivative and then turned back — that constraint shapes the whole process.

4

Demonstrate regeneration safely with a gel film

Dissolve sodium alginate in water, extrude it into a calcium chloride bath, and watch a clear film form on contact. Different chemistry, identical PRINCIPLE: soluble form in, insoluble solid out.

Materiały do tego kroku:

Sodium AlginateSodium Alginate50 g
Calcium ChlorideCalcium Chloride100 g
5

Extrude through a SLIT, not a hole

Make a narrow slot die rather than a round orifice. A hole gives you fibre — which is rayon. The only difference between rayon and cellophane is the shape of the die.

Materiały do tego kroku:

Brass 260 Sheet 24 GaugeBrass 260 Sheet 24 Gauge1 arkusz

Tools needed:

Metal FileMetal File
6

Keep the slit gap even along its length

Any variation in the gap prints as a permanent thickness band down the whole length of the film. Die accuracy is film quality.

Tools needed:

Measuring RulerMeasuring Ruler
7

Coagulate immediately on leaving the die

Run the extrudate straight into the bath. Any unsupported travel and the film necks, thins unevenly or breaks under its own weight.

8

Draw the film continuously through a train of baths

Pull it through coagulation, then wash, then treatment, on driven rollers. This bath train is what the patent means by continuous manufacture.

9

Match the roller speeds carefully

Each roller must run slightly faster than the last to keep tension, but not enough to stretch the film. Too much and it thins; too little and it wrinkles.

10

Wash thoroughly before drying

Residual bath chemicals left in the film make it brittle and cloudy. Washing is not a finishing step; it is part of forming the material.

11

Add a plasticiser and compare

Treat one strip with glycerol and leave another untreated. Dry both. The untreated one is brittle and cracks; regenerated cellulose needs a plasticiser to stay flexible.

Materiały do tego kroku:

GlycerinGlycerin100 ml
12

Test it against water

Wet a sample. Plain cellophane is NOT waterproof — it is cellulose, and it absorbs water and softens. The original wine-proof tablecloth idea failed for exactly this reason.

13

Lacquer one side and test again

Coat a sample with a nitrocellulose lacquer and repeat. Now it resists moisture. DuPont's Hale Church solved this in 1927, and only then did cellophane become food packaging.

14

Bury a strip and check it in a month

Uncoated regenerated cellulose is biodegradable — it is a plant polymer and soil organisms digest it. The lacquer that made it useful is what makes it persist.

15

Compendium — the same molecule, a new shape

The patent. US 981,368, "Process for the continuous manufacture of cellulose films", granted 10 January 1911 to Jacques Edwin Brandenberger, a Swiss textile engineer. The patent does not use the word cellophane; that is a trade name he coined from cellulose and the Greek diaphanes, transparent. The origin story of the wine-stained restaurant tablecloth is well attested — and instructive, because the product he was trying to make was a failure and the by-product was the invention.

Regeneration, not synthesis. Cellulose decomposes before it melts, so it cannot be processed like a thermoplastic. The viscose route dissolves it by treating alkali cellulose with carbon disulfide to form cellulose xanthate, which is soluble; extruding that solution into an acid bath reverses the reaction and precipitates cellulose again. The molecule leaving the process is chemically the same as the wood pulp entering it — only its physical form has changed, from fibres to a continuous film. Cellophane is therefore not a synthetic plastic; it is reshaped plant material, which is also why it biodegrades.

Fibre or film is decided by the die. Push viscose through round holes into the same acid bath and you get filaments — viscose rayon, patented by Cross, Bevan and Beadle in 1892 and in production before Brandenberger's work. Push it through a slit and you get sheet. Two enormous industries separated by the shape of an orifice, and it is worth noticing how often a process is shared and the geometry is the product.

The failure that had to be fixed. Plain regenerated cellulose is transparent, strong and completely permeable to water vapour — the opposite of what packaging needs, and the reason the original stain-proof cloth never worked. DuPont bought the American rights and set William Hale Church to the problem; his nitrocellulose lacquer coating, introduced in 1927, produced moisture-proof cellophane and sales rose sharply within three years. That is the whole arc: an invention arrived at by accident, useless for its intended purpose, commercially transformed sixteen years later by a coating that solved the property its inventor had originally been chasing.

Materiały

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