Light Science for Leisure Hours: A series of familiar essays on scientific subjects, natural phenomena, &c.Proctor, Richard A. (Richard Anthony)
Science
Light Science for Leisure Hours: A series of familiar essays on scientific subjects, natural phenomena, &c.
Proctor, Richard A. (Richard Anthony)
Science
But it was undoubtedly the address of Sir W. Armstrong to the British
Association, in 1863, which first roused the attention of the country
to the importance of the subject. ‘The greatness of England,’ he said,
‘depends much upon the superiority of her coal, in cheapness and
quality, over that of other nations. But we have already drawn from our
choicest mines a far larger quantity of coal than has been raised in
all other parts of the world put together; and the time is not remote
when we shall have to encounter the disadvantages of increased cost
of working and diminished value of produce.’ Then he summed up the
state of the case as he viewed it. ‘The entire quantity of available
coal existing in these islands has been calculated to amount to 80,000
millions of tons, which, at the present rate of consumption, would be
exhausted in 930 years; but with a continued yearly increase of 2¾
millions of tons would only last 212 years.’
Other statements were not wanting, however, which presented matters in
a more favourable light. Mr. Hussey Vivian, M.P., expressed the opinion
that South Wales alone could supply all England with coals for 500
years. Mr. R. C. Taylor, of the Geological Society, said that our coal
stores would suffice for 1,700 years. And there were some who adopted a
yet more sanguine view of our position.
On the other hand, Mr. Edward Hull, of the Geological Survey,
calculated that with an increase of but one million and a half of tons
per annum—considerably less than even the average increase for the
preceding decade[6]—our coals would last us but a little more than
300 years. Mr. Stanley Jevons, in his masterly treatise on ‘The Coal
Question,’ adopted a mode of considering the increase, which has led
to an even more unpleasant conclusion than any hitherto obtained. He
observed that the quantity of coal raised in successive years is not
merely increasing, but the amount of increase is itself increasing.
‘We, of course, regard not,’ he said, ‘the average annual arithmetical
increase of coal consumption between 1854 and 1863, which is 2,403,424
tons, but the average rate per cent. of increase, which is found by
computation to be 3·26 per cent.’ That is to say, for every hundred
tons of coal consumed in one year, 103¼ tons, or thereabouts, would
be consumed in the next—taking one year with another. Without entering
into technicalities, or niceties of calculation, it is easy to show
the difference between this view of the matter and a view founded only
on the average increase during so many years. Consider 10,000 tons of
coal sold in one year, then Mr. Stanley Jevons points out that instead
of that amount, 10,326 would be sold in the next; and so far we may
suppose that the other view would agree with his. But in the next, or
third year (always remembering, however, that we must take one year
with another), the increase of 326 tons would not be merely doubled,
according to Mr. Stanley Jevons; that is, the consumption would not be
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