Sylhet tea
Bangladesh's tea, grown almost entirely on the hill estates of the Sylhet division and drunk almost entirely at home. The gardens were laid out on the same colonial pattern as Assam's, on the same side of the same hills, from the same assamica stock — but the industry that grew from them turned domestic rather than export, so the leaf is made overwhelmingly as CTC for a market that takes it boiled with milk and sugar. That is why one of the larger producing countries is invisible on a Western shelf: the tea is not withheld, it is simply drunk where it is grown.
Character
Brisk and unsubtle taken alone, and a different drink entirely with milk and sugar — which is how it is made everywhere it is grown.
- Flavour
- Woody, Earthy
- Aroma
- Malty
- Mouthfeel
- Full bodied, Astringent, Rich
- Complexity
- Straightforward
- Notes
- malt, baked bread, brisk tannin
- Aftertaste
- Strong and drying, built to be softened by milk.
Bold intensity: full-bodied, astringent or bitter enough to lead the cup.
Provenance and production
- Origin
- Bangladesh
- Region
- Sylhet
- Cultivar
- Not established
- Oxidation
- Fully oxidised
- Harvest
- Year round
- Processing
- Withering → Rotorvane maceration → CTC (crush, tear, curl) → Oxidation → Drying
Where it grows
The districts recorded against this tea, all of them in Bangladesh. Elevation is given as the band the district is recorded at, not a measurement of the garden this leaf came from.
- Sylhet — 10–150 metres
How firm this is: Inferred from general knowledge of the district rather than measured or taken from a source that states it. The estates occupy low hillocks rather than hills; a few plots on the Indian border ridges sit higher.
How it is made, in order
Read top to bottom: the list is the production sequence, and the sequence is what makes this tea its category rather than a neighbouring one. The same leaf from the same bush becomes a green tea or a black tea depending on where the heat falls relative to the bruising, so reordering these steps would not vary the tea — it would produce a different one.
- 1. Withering — Reduces water content, softens the leaf for later handling, and permits early enzymatic and aromatic development.
- 2. Rotorvane maceration — Macerates withered leaf continuously by forcing it forward past fixed vanes under back pressure, rupturing cells thoroughly and generating heat in the process.
- 3. CTC (crush, tear, curl) — Comprehensively ruptures and cuts the leaf into uniform granules, maximising surface area and speeding both oxidation and later extraction.
- 4. Oxidation — Allows polyphenol oxidase to act on leaf polyphenols after cell rupture, converting them into the larger coloured compounds that give oxidised tea its colour and body.
- 5. Drying — Reduces residual moisture to a level at which enzymatic, microbial and oxidative change effectively stops, stabilising the leaf for storage.
The route it is made by
The steps above are what happens; this is the named production route they belong to, with the other teas made the same way.
- CTC black tea — The orthodox route with one slot filled by a different machine, and every other decision in the route reorganised around what that machine needs.
Where it is practised: Assam, Kenya, Rwanda, Uganda, Malawi, Sri Lanka's low grades, Indonesia, Argentina, and the great majority of Indian domestic production. Nearly every teabag in the world contains tea made this way.
What its chemistry turns on
Every true tea contains caffeine, catechins and amino acids, so listing them would say nothing about this one. What differs is what the processing above does to them — and that is the same list of steps, read for its chemistry instead of its craft.
- Withering
- creates Geraniol
- creates Linalool
- creates Linalool oxides
- creates Theasinensins
- raises Methyl salicylate
- raises Nerolidol
- raises Soluble sugars
- lowers cis-3-Hexenol
- lowers Green-leaf volatiles
- lowers Leaf lipids
- Rotorvane maceration
- raises Tea cream
- CTC (crush, tear, curl)
- raises Tea cream
- raises Theaflavins
- Oxidation
- converts Carotenoids
- converts Catechins
- converts ECG (epicatechin gallate)
- converts EGC (epigallocatechin)
- converts EGCG (epigallocatechin gallate)
- converts Epicatechin
- converts Linalool
- creates Beta-damascenone
- creates Beta-ionone
- creates GABA (gamma-aminobutyric acid)
- creates Linalool oxides
- creates Tea cream
- creates Theaflavins
- creates Thearubigins
- raises 2-Phenylethanol
- raises Geraniol
- raises Nerolidol
- lowers Anthocyanins
- lowers Theogallin
- Drying
- creates Strecker aldehydes
- raises Beta-damascenone
- raises Thearubigins
These are statements about the leaf and the cup. What any of these compounds does in a body is a different kind of question and is not answered here or on the pages linked from it.
Brewing
Chai preparation
2–4 g/100 ml · 95–100 °C · 1 authored infusion
Needs: Tea strainer
Western brewing (teapot or mug)
1.5–2.5 g/100 ml · 95–100 °C · 1 authored infusion
Needs: Western teapot
Gongfu brewing (gaiwan)
4–5 g/100 ml · 90–95 °C · 5 authored infusions
Needs: Gaiwan
No caffeine estimate is authored for this tea. TeaHQ does not infer one from its category, because category predicts caffeine poorly — matcha and gyokuro carry more than many black teas.
Common mistakes
- Steeping it Western-style and judging it harsh. A CTC dust is engineered for a boiled milk preparation and reads as a fault outside one.
When the cup goes wrong
Written against black tea as a category rather than against this tea in particular, and worked back from the symptom to the likely causes in order. 19 apply to the category; the first 6 are shown.
- My chai catches on the pan or boils over — A scorched note runs through the finished drink, or the pan foams over the moment your back is turned.
- My chai is harsh and drying rather than rich — The drink is strong enough but unpleasant with it: a rough, drying grip on the tongue and a flat cooked note, rather than the round sweetness a good chai has.
- My chai tastes of hot spiced milk rather than tea — The drink is pleasant and sweet and the tea is nowhere in it — no colour to speak of, no briskness, and nothing that would tell you tea had been involved.
- My iced tea has gone cloudy — Tea that was clear when hot turns hazy or milky once chilled.
- My iced tea tastes watery once the ice melts — The tea is good for the first mouthful and thin by the bottom of the glass.
- My milk curdles or separates in the tea — Flecks or threads appear when the milk goes in, or the surface breaks into small islands, and the drink looks grainy rather than smooth.
If you like this
Grouped by why they were suggested, strongest reason first. Nothing here is a blended score — a suggestion appears under the best reason that exists for it, and never under a weaker one as well.
Similar sensory profile
Shares controlled flavour, aroma and mouthfeel descriptors. A looser match — two teas can share descriptors and still taste nothing alike.
- Sabaragamuwa tea
Shares 6 descriptors with Sylhet tea: woody, earthy, full bodied, rich, astringent and malty.
- Chai blend base
Shares 5 descriptors with Sylhet tea: earthy, full bodied, astringent, rich and malty.
- Jhapa CTC
Shares 5 descriptors with Sylhet tea: woody, earthy, full bodied, astringent and malty.
- Samovar blend
Shares 5 descriptors with Sylhet tea: woody, full bodied, astringent, rich and malty.
- Aged Liu Bao
Shares 4 descriptors with Sylhet tea: woody, earthy, full bodied and rich.
- Aged white tea cake
Shares 4 descriptors with Sylhet tea: woody, earthy, full bodied and rich.
- Anhua dark tea
Shares 4 descriptors with Sylhet tea: woody, earthy, full bodied and rich.
- Assam second flush
Shares 4 descriptors with Sylhet tea: full bodied, rich, astringent and malty.