Tamerlane soars on Pine Point high-grade

VANCOUVER–Shares of Tamer-lane Ventures (TAM-V, TMLVF-O) posted a 93% gain on strong volume in recent trading, closing up 42 to 87 apiece on a high-grade lead-zinc intercept from its Pine Point project, just south of Great Slave Lake in the Northwest Territories.

Hole Z155-TV2 cored a 32-metre true-width intersection (from 109 metres depth) grading 23.9% zinc and 6.2% lead — including a 19.8- metre interval of 33.2% zinc and 8.2% lead — in the Z155 zone on the past-producing property.

Tamerlane is in the midst of updating a positive, bankable feasibility study completed in mid-2007 on the R190 deposit and is aiming to upgrade resource estimates for five additional zones (P-499, O-556, X- 25, G-03 and W-85) located nearby. Planned access to these zones will be through infrastructure developed at R190.

Last year’s study pegged proven reserves at R190 at 1 million tonnes grading 11.2% zinc and 5.5% lead (using a 5% zinc grade shell).

The five zones being modelled host a combined indicated resource of 10.9 million tonnes at 4.7% zinc and 2.4% lead. A historic resource estimate (not compliant with National Instrument

43-101) reviews another 51 million tonnes of 3.8% zinc and 1.2% lead on other zones at Pine Point.

Mining plans at R190 call for an underground operation accessed by a vertical shaft and conveyer system hoisting ore to surface. Processing will use dense media separation with a flotation circuit to upgrade zinc and lead concentrates. Plans also call for a perimeter freeze curtain to control groundwater flow.

Tamerlane’s project encompasses the old Cominco Pine Point mine that produced more than 64 million tonnes of ore averaging 7% zinc and 3.1% lead between 1964 and 1987.Existing infrastructure includes a railway line, mill, hydroelectric

plant and a town site.

Pine Point mineralization is classified as Mississippi Valley-type with carbonate-hosted lead-zinc sulphides. The deposit occurs in Devonian dolomites (a reef structure) where karstification — creation of caves and cavities through dissolution — and collapse breccias allowed for accumulation of mineralizing brines in cavities and deposition of sulphides. Typical replacement- deposited sulphides include galena, sphalerite, marcasite and pyrite.

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