Document 3Q3ZNxG4V9X2Oq4GNRog3vn5x
(Reprinted from Nature, Vol. 208, No. 5017, PP. 1317 1318, December 25, 1965)
Organochlorine Pesticides in the Atmospheric Environment
Pollution of tho environment has long boon a subject
of public concern and much attontion has been paid
recently to the now ecological factors introduced by the
wide agricultural usage of posticidal chemicals. Contamin
ation of soil and crops has ofton featurod in environmental
studies of these pesticides, but so far little attention has
been given to atmospheric pollution, although, as long
ago as 1961, Harris and Lichtenstein1 showed that tho loss
by volatilization of aldrin, dieldrin, heptachlor and gamma-
benzene hexachloride was a major factor in their disap
pearance from soils treated with these compounds. Later,
in the United States, the President's Science Advisory
Committee drew attention to tho fact that inhalation of
air contaminated with pesticides might present a hazard
to man* and rocommended that air should be continuously
monitored for pesticide residue levels. In 1965, an
Advisory Committee of the United States Food and Drug
Administration referred to studies which showed the
presence of up to 0-075 p.p.m. of dieldrin in total diets*
and considered tho possibility that half as much again
could be absorbed from "air or other exposures".
Little practical work seems to have been undertaken to
determine pesticide residues in the atmospherio environ
ment, but in the United Kingdom, Wheatley and Hard
man1 recently reported indications of the presence, of
organochlorine insecticides in rain-water collected in an
agricultural area at Wellesboume in Warwickshire. Steps
were therefore taken at this Laboratory to examine rain
water collected in the Metropolitan aroa.
'
Two collecting stations were set up in Central London,
one being on the roof of the Laboratory of the Government
Chemist in Lambeth, S.E.l, and approximately 20 m
above ground-level. The other was set up, with the co
operation of the Meteorolbgical Office, at the London
Weather Centre's station on the roof of State House,
High Holbom, W.C.l, some 53 m above ground-level
and about 1-45 km distant from the other station, across
the River Thames. At these two stations, rain was col
lected in all-glass apparatus, with amber-coloured receiving
vessels to reduce the incidence of photochemical degrada
tion*. Samples were removed monthly for examination.'
The organochlorine pesticides in the water were determ
ined by a gas-liquid chromatographic method using
electron-capture detection and silicone and `Aplezon'
columns as described by do Faubert Maunder et al.*. The
limits of detection by this method were 5 parts per million-
million for the isomers of benzene hexachloride (BHC)
and 10 parts per million-million for the other organo
chlorine pesticides in general use in the United Kingdom.
QSft
STLCOPCB4060778
Table l. Oroanochlorine Pesticide Residue Levels in Rais-water
(Parts per million-million)
Station--Cornwall House, London, S.E.l
.
Month 1005
Feb. Mur. Apr. May June July
.
aB1IC
10 15 30 20 - 30 25
* BHC
00
--
--
65
--
--
yBHC
90 GO SO 7C1 55 40
HEOD (dieldrin)
50 GO 50 95 25 10
PP'DDE
70 20
--
--
--
15
PV' TDE
--
--
.--
--
15 85
Station--Stato House, High Holborn, London, W.C.l
Month 1965 Mar. Apr. May June July
Rain (mm) 33-4 37-3 36-6 30-2 78'0
aBHC
10 20 20 20 30
BHC
--
--
25
--
"f
y- HEOD pp'-
BHC (dieldrin) DDE
20 20 _
70 70
____
55 50
155 20
____
-70 15
10
t5e
_
100
--
50 20
London
pp'. DDT 400 115 300 100
70 85
$>T
____
140 220 125
80
Tho results for the months of February to July 1965,
expressed in parts per million-million, are given in Table 1.
Becauso of the small amounts of rain collected and the
low levels of tho pesticidos found, it was not possible to
confirm the results obtained for tho individual samples
by an alternative technique. However, at the end of the
6 months, the combined residues from each station were
examined by thin-layer chromatography on silica-gel
plates with hexane : acetone, 99 : 1, as mobile phase.
The appropriate areas of the chromatoplates were eluted
and the soparate eluatos individually re-injected on to the
gas-liquid chromatograph in columns. In this way, the
presence of dieldrin, pp'-DDT and the a- and y-isomers of
BHC was confirmed for both stations. The identity of
the pp'-DDT from both stations was further confirmed
by conversion to pp'-DDE by treatment with ethanolio
potassium hydroxide7. The pp'-DDE formed by this
reaction was identified and determined by gas-liquid
chromatography.
Insufficient quantities of the residues wore available
to confirm the presence of (J-BHC, pp'-TDE and pp'-DDK
by alternative techniques or to make an infra-red study
of any of the residues*.
.
Some individual rain-water samples vhich had been
taken between September 1964 and January 1965 at a
number of other places in the British Isles were also
examined. The collecting sites ranged from Stornaway
in tho Outer Hebrides to Camborne in Cornwall, and tho
sampled showed residues of orgariochlorine pesticides in
amounts similar to those found in London rain-water.
Samples of snow collected in different suburban areas
within 25 km of London gave similar results. The
size of these other samples, and the low levels found,
again precluded the application of any confirmatory
tochniquo to the individual samples, but by appropriate
bulking of tho residues it was possible to confirm, by thin-
layer chromatography, the presence, in the rain-wator
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and in the snow, of dieldrin, pja'-DDT and the a- and
y-isomers of BHC.
The levels at which these pesticides have been detected
aro extremely low, near to the limits of sensitivity of the.
delicate electron-capture detection system used. Strict
precautions were taken throughout to ensure that no
fortuitous contamination of samples or extracts occurred
within the Laboratory. Two samples taken from remote
areas of Scotland during periods of heavy rainfall showed
practically no residue content and these results suggest
that adventitious contamination of samples in the
Laboratory was negligible.
Present results suggest that the atmosphere carries,
either as vapour or by occlusion on dust particles, small
amounts of the organochlorine pesticides in common use
in the United Kingdom and that they are `scrubbed out'
by rain and snow.
'
Work is now proceeding to determine the residue levels
in air samples, and preliminary results show the presence
of organochlorine pesticides in the range of 10-20 parts
per million-million. Most of those residues appear to be
associated with particulate matter. These experiments
may eventually make it possible to determine the respira
tory intake by man and to compare the result with his
intake from certain foods of known pesticide-levels*.
We thank the Director-General of the Meteorological
Office for permission to quote from the London Weather
Centre's records of the rainfall on the roof of State House.
D. C. Abbott
R. B. Harrison
J. O'G. Tatton
J. Thomson
Laboratory of the Government Chemist,
Cornwall House, London, S.E.l.
' Harris, C. R,, and Lichtenstein, B. P., J. Econ. Entomol., 54,1038 (1961).
* Use of Pesticides, Rep. President's Sci. Advis. Comm. (U.S. Government Printing Office, Washington, 1963).
* Rep. Food and Drug Admin. Advis. Comm, appointed to Review Established Tolerances for Residues of Aldrin and Dieldrin on Rato Agricultural Commodities (U.S. Government Printing Office, Washington, 1965).
* Wheatley, G. A., and Hardman, J. A., Nature, 207, 486 (1965).
* Robum, J., Chem. and Ind., 1555 (1963).
,* de Faubert Maunder, M. J., Egan, Hi, and Robum, J., Analyst, 89 157 (1964).
7 Hamence, J. H., Hall, P. S., and Caverly, D. J., Analyst, 90, 649 (1965).
'Abbott, D. C., Crosby, N. T.. and Thomson, J., Proc. Soc. Anal. Chem.
Cong, (in the press).
'
* Review of the Persistent Organochlorine Pesticides, Appendix F (H.M.S.Ol, London, 1904).
Primed in Great Rritain by Fisher, Knight & Co.. Ltd.. St. Albans.
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