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Illite

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Illite
Lowest price (incl. delivery)
21 449,00 JPY
Typical price2 864,19 PLN
Lowest (90 days)129,99 PLN
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Last updated1 tuần trước
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Price history (90 days)
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2026-08-08 2026-08-15
Lịch sử giá
Cập nhật lúcGiá
2026-08-08129,99
2026-08-15155,99
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SP SpringerNatureLink Shop INT 21 449,00 JPY free 21 449,00 JPY Có sẵn 6 ngày trước View offer
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SP SpringerNatureLink Shop INT 149,99 USD 29,00 USD 178,99 USD Có sẵn 6 ngày trước View offer
SP SpringerNatureLink Shop INT 169,99 USD 29,00 USD 198,99 USD Có sẵn 6 ngày trước View offer
SP SpringerNatureLink Shop INT 169,99 USD free 169,99 USD Có sẵn 6 ngày trước View offer
SP SpringerNatureLink Shop INT 177,00 EUR free 177,00 EUR Có sẵn 6 ngày trước View offer

Giá và tình trạng có thể thay đổi. Cập nhật lần cuối: 08.08.2026 23:34.

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It is our pleasure to present this large body of information and thoughts of many mineral scientists which has accumulated over decades. Illite is a mineral that has been discovered relatively recently, even though it has great importance in the geological cycles of weathering, sedimentation and burial. Illite is the major potassium mineral among silicates in the surface environment. Potassium represents the only alkaline metal, to be bound in silicate structures during the great chemical reshuffling called weathering. The weathering environment is one of strong chemical segregation, where Si and AI become the resistant, of silicate rocks. Iron forms an oxide and potassium forms residual elements the stable clay illite. Then Si and Al form smectites and kaolinite. Sodium, calcium and to a large extent magnesium are extracted from the solids as dissolved ionic species of the altering fluids. Ca and Mg are reintroduced into solid minerals via carbonate precipitation, and Na remains to make the sea saline. This mineral has been difficult to study because it is of fine grain size, as are all clays: 2 pm in diameter. Illite, along with other clays, had to wait to be discovered until a useful method of X-ray detection became available. With such a tool clays, whose definition was initially based upon the resolving power of an optical microscope (2 ]. lm), could be efficiently investigated. In fact the study of illite parallels the use and development of X -ray diffraction techniques.

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