USGS ScienceSearch

Geology topics

N.B. Keevil

Publications and source records attributed to N.B. Keevil.

2 recordsLinked to original sources

Method for determining the age of igneous rocks using the accessory minerals

The age of igneous rocks is determinable by a method based on the included accessory minerals . In the common igneous rocks , most of the lead is concentrated in the potassium minerals , and most of the radioactivity is in the zircon and other accessory minerals . The lead in the potassium minerals is believed to be mostly primary lead; that in zircon is probably chiefly radiogenic lead. By separating the zircon of fresh igneous rocks , determining the amount of lead with the spectrograph and the radioactivity by alpha counters, the age of Paleozoic and Precambrian rocks can be determined with an accuracy of approximately 90 per cent. Basalts and gabbros may contain too few accessory minerals for satisfactory age determination by this method . Zircon is the most satisfactory mineral for this kind of determination. Apatite and sphene give high results and therefore must contain primary lead. Sphene gives erratic results.

Geological Society of America Bulletin

Radioactivity of the rocks of the batholith of southern California

Determination of radioactivity has been made on 43 rocks, carefully selected from the different mapped units of the complex Cretaceous batholith of Southern California; they range from gabbro to granite. The activity of the gabbro averages about 0.3 alphas/mg./hr., that of the tonalites, 0.8, the granodiorite 1.3, and the granites over 2.0. The activity of the average rock of the batholith is about 0.9 alphas/mg./hr. Most of the rocks have been analyzed, and modal compositions are given. The radioactivity and the percentages of K 2 O, SiO 2 and PbO are plotted on a variation diagram. The variation curve for activity nearly parallels that for K 2 O, and the ratio of activity to K 2 O is about 0.5. The radioactivities of some rocks fall far from the variation curve, and degree of activity correlates with K 2 O content. A less-marked correlation between activity SiO 2 and PbO was also noted. The K 2 O, SiO 2 , PbO, and radioactivity concentrate in the residual liquid during crystallization and differentiation. PbO follows K 2 O closely, as it is concentrated in the K 2 O minerals, but radioactivity is very low in the K 2 O minerals and is greatly concentrated in the accessory minerals.

California