Document zo68kyrmbEnKoxMo0Nwn72zjg
OECD sees energy self-sufficiency
Hexachlorophene tied to Infant deaths
The western world is not s helpless hostage of the oil producing states --at least not in the long term. This
Cooperation
opment on the energy outlook for
its 24 member nations.
According to the study, the west
ern industrialized nations, as a
group, could become self-sufficient
in energy by 1985 through a program
of increased indigenous production
and conservation. They likely won't
Ell the way to this goal as the shifts in capital investment resources involved would make
it economically undesirable.
However, these nations should be
producing 80% of their own energy
by 1985 assuming that world oil
prices remain about unchanged in
real (noninflated) terms. Before the
recent oil price increases this
proportion was expected to decline
to about 55% from 65% in 1972.
The study estimates that the
potential for energy conservation
In OECD countries is 15 to 20% of
consumption levels previously fore
cast for 1985. On the production
side, indigenous oil and gas output
could be twice as high in 1985 as it
was in 1972, the base year for the
study. Also, coal production could
be up 65% from the 1972 level by
1985, and hydro and geothermal
power could increase 67%. The big
gest boost will come in nuclear
power, up 20-fold by 1985.
However, achievement of this
greater production and conservation
will need what the study calls
"comprehensive international co
operation between OECD coun
tries." Some progress already has
been made in cooperating within
the group on overcoming temporary
oil supply interruptions. What is
leaded isi new ilong-tierm energy
strategies. These should include:
# A concerted energy conserva
tion effort.
e Accelerated development of
OECD indigenous resources and of
inter-OECD energy trade.
e Methods to lower financial
risks and monetary instabilities
related to energy.
Coordination of energy RAD.
The study also points out the
complementary interests of OECD
nations and of the oil producing
nations. The former seek to reduce
their dependence on imported oil
while the latter seek to diversify
their economies from their present
dependence on oil.
Styrana Hasn't baan taggad as hazard
to warkar haatth, but MCA fs chacklng
Health hazards of monomers probed
Last year it was vinyl chloride. This year it may he vinylidene chloride.
Dow Chemical says it has in formation from Prof.P. L. Viols of Regina Elena Institute for Cancer Research, Rome (one of the original researchers to link vinyl chloride with liver tumor in animals) that vinylidene chloride may be carcino genic in high concentrations in rats via inhalation. Viola allegedly has found liver tumors in animals ex posed to the chemical. For its part, Dow has been conducting its own inhalation and feeding studies for about five months now, but adds that it started work before learning of Viola's finding*.
Meanwhile, the Manufacturing Chemista Association (MCA), ap parently in response to the news from Italy, has revealed that it will administer a research program to be conducted by independent labs on the "occupational health as pects'' of vinylidene chloride and styrene. MCA had been told ver
bally by Dow about Viola's findings prior to announcing the research projects. Styrene has been included, says MCA, even though it has not been tied to any healthhazards.
MCA says that al
"tliSylidene cmonde.
Some Arms may participate in both,
depending on their interests. But
MCA won't identify the companies
involved.
Tots! cost for both projects should
be $500,000 to $600,000. This will
pay for inhalation and ingestion
toxicity studies in a yet to he de
cided animal species. Chemical
effects on fetal development and
metabolism of the compounds also
will be looked at.
Hexachlorophene, banned in 1972; by the Food A Drug Administration from most nonprescription (hug products, was linked at the time to brain lesions in newborn infants that were routinely washed with
cleansers containing the compound.
Medical researchers at the Univer
sity of Washington (Seattle) school
of medicine now believe that these
chemically produced lesions may
have killed some premature infants.
The new findings will be pub
lished this spring in Archives of
Neurology (Chicago), and are a
followup on a larger study reported
in December by the American
Academy of Pediatrics. The unpub
lished data cover a group of 40 in
fants bom prematurely between
1966 and 1973, and cued for at
University Hospital in Seattle.
According to Dr. Ellsworth C. Alvord Jr., director of neuropa
thology at the medicaf school,
autopsies of 26 of the infants showed
mild to severe brain lesions. Of this
latter group, brain damage was the
only apparent cause of death in 16
of the infants. On the other hand,
the cause of death in only four of the
remaining 14 infants who didn't
show brain damage was unexplain able.
Brain lesions could occur more frequently in premature infants
than in normal infanta, the Seattle
researchers believe, since their skin
is less well developed, and hence,
presumably more permeable to
hexachlorophene.
Of the premature babies in the Seattle study, 23 had been bathed
twice or more with pHisoHex anti
bacterial scrub, which contains 3%
hexachlorophene. The product is
made by Winthrop Laboratories, a
Sterling Drug division. Sterling
Drug, for its part, claims that the cause and effects seen in the study
don't clearly demonstrate what the
researchers suggest, but adds that this doesn't mean the product (or
>tber products containing hexa-
:hloropnene) should be used reck
lessly. FDA currently requires that
hexachloropbene-containing prod
ucts be sold only by prescription.
Sterling Drug, in reply to the
University of Washington, says
that, based on the records that tne
researchers used for their study,
it's impossible to determine whether
the product was used correctly.
Current labeling for pHisoHex
states that the product shouldn't be used on premature infants, except
in "unique circumstances.'*
G
4EN Jen. 20. 1975
RSV 0006517
nation's nuclear power program.
Finally, Ford said that he wul ask
for funds needed for energy R&D--
which may signal an increased
federal energy R&D budget--and
has set a goal of 1 million bbl of
synthetic fuels and shale oil produc
tion per day by 1985 together with
an incentive program to achieve it.
And Ford says that his program
"envisions"--as opposed to prom
ises--within the next 10 years 200
major nuclear power plants; 250
major new coal mines; 150 major
coal-fired electric generating
plants; 30 major new oil refineries;
20 major new synthetic fuel plants;
many thousands of new oil wells; in
sulation of 18 million homes; and
millions of energy-saving autos,
trucks, and buses.
And Ford said, "We can do it."
What it will take to "do it" was ex
plained in part at a Manufacturing
Chemists Association luncheon in
Washington by Interior Secretary
and energy chief Rogers C. B.
Morton. In short, Morton said the
nation would have to invest $800
billion by 1985 to achieve the Ad
ministration's proposed energy
invulnerability. Further, Morton
said that the Administration is
shaping its energy program so that
the U.S. will not be vulnerable to
a "desert tent decision" by the
Arabs to drop the price of oil--and
hence "gut" a 10* to 12-year pro
gram by the U.S. to develop its
energy resources.
Venezuela to get petroproteln plant
Venezuela may put up a plant for making high-protein yeast grown on normal paraffins, u plans ma terialize, the unit will be the first of its kind outside Europe and the
first installed by an ou producing country. Technology would be based on a process developed by BP Pro teins, a part of the British Petrole um group.
Plans call for a $70 million plant with an annual capacity of 100,000 metric tons of single cell protein. In addition, there would be a $23 million unit for extracting the nparaffin growth medium from oil.
Completion and startup are fore seen by 1978 at Puerto la Cruz in eastern Venezuela.
If, as now seems likely, the plans proceed, it will put BP Proteins well ahead of its competitors in the petroprotein race. The company already has several projects under way in Europe. At Lavera in south ern France, where the company
conducted much of its pioneering
technology development, there is
a unit for making 20,000 metric
tons per year of the material. And
at Grangemouth, Scotland, site of
BP's 8.8 million metric-ton-a-year
oil refinery, there is a semicommer
cial plant producing 5000 metric
tons annually. A 100,000 metric-
ton-per-year unit is now under con
sideration there. Later this year,
BP, in partnership with Italy's
Anic, will bring on stream a 100,000
metric-ton-per-year petroprotein
plant at Sarroch, Sardinia.
Other companies who are well
along in petroprotein development
are Imperial Chemical Industries
and Royal Dutch/Shell. ICI uses
methanol as the growth medium.
Shell is basing its process on
methane. Both 1C1 ana Shell are
concentrating their efforts on the
growth of bacteria.
Japan has another clean auto engine
Still another commercial approach to low-pollution auto engine design
has been introduced in Japan. Fuji Heavy Industries Ltd., maker of lightweight Subaru automobiles, claims a low-emission engine that meets Japan's 1975 emission stan dards without afterburner or cata lytic converter. These standards are very close to those originally set for 1975 U.S. autos.
Fuji's SEEC-T (Subaru exhaust emission control) system uses the
same general method to reduce pol lutant formation as do stratified
charge engines--slow burning of lean gasoiine/air mixtures, com pared to conventional engine opera tion. But the mechanical approach
is different. The aluminum-alloy Subaru en
gine, which has a horizontally op posed cylinder arrangement, uses a fairly lean fuel mixture that is pre
heated in the intake manifold to en sure thorough vaporization. Once the combustion stroke begins, an air suction valve brings more air into the cylinder to promote full com bustion. Improved combustion
means a smaller amount of carbon monoxide formed, as well as a lower
level of residua) hydrocarbons. High gas temperatures in an en
gine cylinder promote the formation of nitrogen oxides, the other main automotive emission pollutant. Maximum combustion temperature during the power stroke is reduced in the SEEC-T engine, Fuji says, through changes in cam specifica tions, compression ratio, and igni
tion timing from those of its stan
dard engine design. The same modifications, along with a newly
designed cylinder head, also help
reduce hydrocarbons and carbon monoxide.
Data from the company's 10mode, hot-start testing after a 60,000-km durability trial erf the
SEEC-T engine mounted in the Subaru Leone 1400 (a four-cylinder, 1700-lb car) show nitrogen oxides emission levels ranging from 0.67 to 0.97 gram per km. Japan's new auto emission standards, which will
be applied from April to new models and from December to present models, set a 1.6 gram-per-km max
imum on nitrogen oxides. Other emissions in the Subaru tests (with new Japanese standards in paren theses) ranged from 0.15 to 0.17 gram per km for hydrocarbons (0.39)
loir-em/ssfofi engines ahould holp com pel Jopon't auto pollution problama
and from 1.70 to 1.81 grams per km
for carbon monoxide (2.7).
Three other Japanese auto mak
ers have developed commercial en-
S'nes that meet the 1975 standards. onda's CVCC (compound vortex controlled combustion) engine, on
sale since the end of 1973, uses the
stratified-charge approach. Toyo
Kogyo's REAPS (rotary engine
antipollution system) treats exhaust
from its Wankel rotary engine in a
thermal reactor. The firm's Mazda
Luce has used this system since
mid-1973. Mitsubishi Motors last
year completed development of its
MCA (Mitsubishi clean air) system,
which uses both a thermal reactor
and partial recirculation of exhaust
gas to meet the emission standards.
Toyota Motor Co., Japan's largest
auto maker, meanwhile is convert
ing some of its models to a modified
CvCC engine based on licensed
Honda technology, and for the time
being will depend on catalytic con
verters to meet Japan's new stan
dards for the rest of its passenger-
car production.
Jan. 20.1075 CAEN 7
RSV 0006516