Dari batuan ke produk, ditelusuri
The Materials Atlas
Material Tambang & deposit Pemrosesan & pemurnian Perjalanan-perjalanan kustodi Rantai-rantai pasokan Perusahaan Negara Berita
Material berdasarkan rak Bahan Baku Baterai Unsur Tanah Jarang Tembaga & Kelistrikan Material Semikonduktor Material Nuklir Dirgantara & Pertahanan Logam Mulia Baja & Logam Paduan Mineral Industri Mineral Pertanian Bahan Baku Energi Mineral-mineral bijih Tabel periodik
Permintaan Pasar akhir Teknologi Kalkulator material Peta Penyaring
Pelajari & alat PelajariGlosarium Tanya DataAgen AI Riset & dataAPI ★ Tersimpan
Tentang Tentang kamiMetodologi Sumber dataKontak Penafian
Opsi pembacaan
🧭 Tampilan Terpandu Baru mengenal ini — kadar bijih, konsentrat, pemurnian, produk sampingan? Kami menjelaskan setiap istilah saat Anda menjelajah, dalam bahasa yang mudah dipahami. Data yang sama, dengan bantuan yang sudah tersedia.
⚡ Tampilan Ahli Anda sudah memahami industri ini. Cukup datanya — bersih, cepat, dan ringkas, tanpa penjelasan tambahan. Ini adalah tampilan default.
Tema
Bahasa antarmuka
Kedalaman Halaman material ditulis dalam empat tingkat. Pilih salah satu di halaman material mana pun dan pilihan tersebut akan diingat.
★ Tersimpan Riset & data
Zinc

Baja & Logam Paduan

Zinc Zn · 30

The metal that steel is dipped in so it does not rust — a sacrificial coating that corrodes instead of the iron underneath.

Sphalerite - Creede, Mineral County, Colorado, USA · Ivar Leidus · CC BY-SA 4.0 · Wikimedia Commons

Apa ini?

The metal that steel is dipped in so it does not rust — a sacrificial coating that corrodes instead of the iron underneath.

Mengapa ini penting?

Galvanising is the quiet reason bridges, guardrails and roofing last decades instead of years. Zinc also carries indium, germanium and gallium as by-products.

Where it is in the Earth

Zinc does not distribute itself evenly through the Earth's crust. It concentrates into minable deposits through a handful of well-understood geological processes, all of which share a common requirement: hot, mineral-laden fluids must move through rock and then precipitate their cargo where conditions change. The principal ore mineral is sphalerite, a zinc-iron sulfide written chemically as (Zn,Fe)S. Sphalerite is the starting point for almost all primary zinc production, and understanding where it forms explains why the world's zinc mines cluster where they do.

The most important deposit type is the sediment-hosted exhalative deposit, known in the industry as a SEDEX deposit. These form on ancient seafloors when hot, metal-rich brines exhale through vents and precipitate sulfide minerals into the surrounding sediment. The result is a flat, layered orebody that can be enormous and consistent in grade — the Red Dog mine in Alaska is a textbook example. A second major family is the Broken Hill-type deposit, named after the famous Australian district, where metamorphic processes have reworked and concentrated original seafloor sulfides into very high-grade lenses, as seen at the Cannington mine. A third, shallower family is the Mississippi Valley-type, or MVT, deposit, where zinc and lead sulfides precipitate in carbonate rocks such as limestone as warm basinal brines migrate through them. These tend to be lower grade but can be geologically straightforward to mine.

Because these deposit types are tied to specific chapters of geological history — ancient rift basins, passive continental margins, carbonate platforms — the world's zinc endowment is not random. Australia holds the largest reported reserves, followed closely by China, with Russia, Peru and Mexico also holding substantial resources. The geography of reserves does not mirror the geography of annual production exactly, partly because ore grade, infrastructure and economics determine which deposits are worked at any given time, and partly because exploration continuously revises the reserve picture.

Getting it out

How a zinc deposit is mined depends almost entirely on the geometry and depth of the orebody. Shallow, flat-lying orebodies can sometimes be worked from the surface as open pits, which means stripping away overlying rock — called overburden — to expose the ore beneath. Red Dog in Alaska operates this way. Open-pit mining is generally lower cost per tonne of rock moved, but it produces very large volumes of waste material that must be managed on the surface. The ratio of waste rock to ore, called the strip ratio, matters enormously to the economics: a high strip ratio means a lot of diesel and blasting to reach each tonne of metal.

Deeper or narrower orebodies, including most Broken Hill-type deposits, are worked underground. Miners drive tunnels and shafts into the rock, then extract ore using methods such as cut-and-fill or open stoping, where large cavities are blasted out and the broken rock is hauled to the surface. Underground mining is more selective — it can follow the orebody without removing surrounding rock — but it is generally more expensive and slower to develop than an open pit. Cannington in Queensland is an underground operation of this kind.

The grade of a zinc deposit — the concentration of zinc in the ore, usually expressed as a percentage — determines how much rock must be processed to yield a given amount of metal. A higher grade means less material to mine, crush and treat per tonne of zinc produced, which directly reduces operating cost. Typical mineable grades vary considerably across deposit types, and what is economic at one point in time may not be at another as prices and costs shift. Grade also governs how much tailings — the finely ground rock left after the valuable minerals are extracted — must be stored or disposed of, which is one of the larger environmental management challenges at any zinc mine.

What pulls on it

The single largest use of zinc is galvanising steel — coating it with a thin layer of zinc to protect it from corrosion. Zinc works not merely as a physical barrier but as a sacrificial anode: because zinc is electrochemically more reactive than iron, it corrodes preferentially, protecting the steel underneath even if the coating is scratched. This property makes galvanised steel the material of choice wherever structural steel is exposed to weather: construction framing, roofing, guardrails, bridges, transmission towers and the like. Construction is therefore the dominant end market, and its health tracks closely with the rate at which new infrastructure is built and old infrastructure is replaced or maintained.

A second substantial use is die-casting, where zinc's low melting point of 419.5 °C and good fluidity make it suitable for producing detailed, dimensionally accurate components — door hardware, automotive parts, electrical fittings — by injecting molten zinc into moulds. Brass, an alloy of copper and zinc, accounts for a further share of demand, principally in plumbing fittings, musical instruments and decorative hardware. Zinc also serves as a micronutrient fertiliser in agriculture, correcting zinc-deficient soils in parts of South Asia and elsewhere, though this remains a smaller fraction of total use than galvanising.

Demand could shift in either direction depending on decisions made outside the zinc industry. Growth in renewable energy infrastructure — wind turbines, solar mounting systems, electricity transmission — requires galvanised steel throughout, so an accelerating energy transition would increase zinc consumption. Conversely, any structural change in how steel-framed buildings or vehicles are protected — for example a wide shift toward alternative coatings, polymer wrapping or fundamentally different materials — could erode galvanising demand over time. Neither shift is happening quickly at present, but the construction cycle in large economies, particularly China, has a strong short-term influence on how much zinc is consumed in any given year.

Baca angka-angka ini dengan benar. Mine production of contained zinc; smelter production is a separate figure. Concentrate, then special-high-grade ingot; galvanising, die-casting, brass.

Dari mana asalnya di dalam batuan

Semua mineral bijih →

Inilah mineral yang sesungguhnya menjadi pembawa zinc. Suatu endapan hanya menjadi badan bijih jika salah satunya cukup terkonsentrasi untuk menutup biaya penambangannya.

Siapa yang memproduksinya

Lihat di peta →

Mine production

Mine productionthousand metric tons 2025 (estimasi) Total dunia 13,000 thousand metric tons

USGS Mineral Commodity Summaries 2026 · Mine production of contained zinc; smelter production is a separate figure. · sumber ↗

Gulir tabel ke samping untuk melihat kolom-kolom yang tersisa.

NegaraProduksi Pangsa dunia
China 4,100 31.5%
Other countries 2,000 15.4%
Peru 1,500 11.5%
Australia 1,100 8.5%
India 870.0 6.7%
Mexico 780.0 6.0%
United States 670.0 5.2%
Bolivia 500.0 3.8%
Russia 430.0 3.3%
Kazakhstan 360.0 2.8%
Sweden 230.0 1.8%
Total dunia 13,000100%

"Ditahan" berarti USGS menyembunyikan angka tersebut untuk menghindari pengungkapan data perusahaan tertentu — bukan berarti nol. Baris per negara tidak selalu berjumlah sama dengan total dunia karena sumber membulatkan setiap angka secara independen dan tidak selalu merinci baris "negara lain".

Siapa yang memegang cadangan

"Cadangan" adalah istilah yang ketat. Cadangan berarti bagian dari deposit yang diketahui yang dapat diekstraksi secara ekonomis saat ini, dengan harga dan teknologi yang ada sekarang — bukan semua yang ada di dalam tanah. Cadangan bertambah ketika harga naik atau proses baru ditemukan, dan berkurang ketika harga turun.

Reserves

Reservesthousand metric tons 2025

USGS Mineral Commodity Summaries 2026 · sumber ↗

NegaraCadanganPangsa dunia
Australia 64,000 26.7%
China 60,000 25.0%
Russia 29,000 12.1%
Other countries 25,000 10.4%
Peru 18,000 7.5%
Mexico 14,000 5.8%
India 10,000 4.2%
United States 9,300 3.9%
Kazakhstan 7,400 3.1%
Sweden 4,100 1.7%
Bolivia Not applicable
Total dunia 240,000100%

Harga

Zinc, global price

Rata-rata tahunanUS$ per tonne

1995 · 1,155 tinggi 4,381 US$ per tonne 2026 · 3,594

Dasar: IMF global price of zinc — high grade 98% pure, LME. Rata-rata tahunan sebagaimana diterbitkan dalam FRED (IMF primary commodity prices) · sumber ↗. Ini adalah rata-rata tahunan referensi, bukan kuotasi pasar secara langsung.

average, cents per pound: North American

Rata-rata tahunancents per pound

2021 · 145.8 tinggi 190.2 cents per pound 2025 · 149.0

Dasar: average, cents per pound: North American. Rata-rata tahunan sebagaimana diterbitkan dalam USGS Mineral Commodity Summaries 2026 · sumber ↗. Ini adalah rata-rata tahunan referensi, bukan kuotasi pasar secara langsung.

average, cents per pound: London Metal Exchange (LME), cash

Rata-rata tahunancents per pound

2021 · 136.3 tinggi 158.1 cents per pound 2025 · 130.0

Dasar: average, cents per pound: London Metal Exchange (LME), cash. Rata-rata tahunan sebagaimana diterbitkan dalam USGS Mineral Commodity Summaries 2026 · sumber ↗. Ini adalah rata-rata tahunan referensi, bukan kuotasi pasar secara langsung.

Tambang yang memproduksinya

Semua tambang →
Red Dog
Red Dog, United States — One of the largest zinc mines in the world. Tek Alaska - Red Dog Mine Port Site Crew (344…, Public domain via Wikimedia Commons

Red Dog →

Untuk apa digunakan

Semua pasar akhir →
Pasar akhirApa yang dilakukannya di sanaKepentingan
Construction & Steel Galvanising Mendefinisikan
Power Grids Galvanising every steel structure outdoors Penting
Wind Power Galvanised protection in a marine environment Penting
Solar Power Galvanised mounting structures Penting
Agriculture & Food Crop micronutrient Penting

Kontrol ekspor

NegaraKontrolBerlaku untuk
LaosExport ban Raw minerals, including copper, gold, iron, nickel, potassium, silver, and zinc (2024).
VietnamExport ban Raw materials of iron, lead-zinc, chromite, manganese, apatite, and rare earths and deeply processed titanium (2012).

USGS Mineral Commodity Summaries 2026, table 4 — controls in effect as of January 2026, excluding controls since lifted.

Dalam berita

Lainnya →

US Forest Service signs off on South32 Hermosa’s mine plan in Arizona

MINING.COM02 Sep 2026

Eldorado eyes bigger McIlvenna Bay copper mill

The Northern Miner02 Sep 2026

ACG Metals produces first copper concentrate at Turkish mine

MINING.COM01 Sep 2026

Material

Semua material Mineral kritis Tanah jarang Bahan baku baterai Mineral-mineral bijih Tabel periodik Penyaring

Permukaan tanah

Tambang & deposit Pemrosesan & pemurnian Negara Peta

Perekonomian

Perjalanan-perjalanan kustodi Rantai-rantai pasokan Pasar akhir Teknologi Perusahaan Kalkulator material

Pelajari

PelajariGlosarium Tanya DataAgen AI Riset & dataAPI Terbuka Berita★ Tersimpan

Tentang kami

Tentang kamiKontak MetodologiSumber data Kebijakan editorial Kebijakan privasiKetentuan penggunaan Penafian