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Industrial Hygiene Digest
August, 1960
HMBB-0018633
MANAGEMENT ASPECTS
815 Organizational Health and Executive Development. C. Argyris. Advanced Management 24, 8 (Dec, 1959).
The author is concerned with the fact that executives place emphasis on endproducts such as high morale, loyalty, and interest in the company rather than on organi zational processes. According to his research, high loyality and high productivity are partially caused by the fact the employees are permitted to be non-involved and experience few contacts with management. He makes a plea for the process of increasing the healthy development of the total organization and Bays that it is a sick organization which would create the "organization man". It is argued that a healthy organization would stress indi viduality. In order to initiate the process toward organizational health, several steps are involved: first, to define what is to be included in the concept of organizational health; second, to translate this concept into actual behavior; third, to develop criteria to measure and evaluate the state of organizational health; and fourth, to apply these criteria to an execu tive development program or to other programs to see if they are contributing to organiza tional health. It is argued that changes may need to be made in the organizational structure, managerial controls, and leadership patterns, but it is also admitted that no concrete recom mendations can be made in these areas at thiB time. It is further asserted that effective leadership is no different from effective living. Hence, the healthy leader grows and develops his own potentialities in such a way as to encourage relationships with others so that the pro cess of growth and development takes place for all in the organization. L>ooking to the future, it is contended that personnel departments will be concerned with developing quality leader ship and healthy organizations through the functions of research and training.
-- Cond. from J. Occ. Med.
816 Automation and Unemployment. W. Phelan. Illinois Labor Bull. 20, 14-15 (June I960).
For decades industry has been highly mechanized but humans regulated the machines and controlled the input of variables. Today, machinery, which can control other machinery and regulate the input relationship of many variables, is available. The application of this new machinery in industry is called automation. Automation is primarily applicable in manu facturing, communication, and transportation industries, and in data processing (paperwork). If purchasing power can be maintained and at the same time automation is widely used, society as a whole is economically ahead. Automation produces goods cheaper in two ways. First of all, production costs are reduced. Labor, material, and indirect factors, as material handling are all utilized more efficiently. Secondly, the production of surplus is eliminated. Automation of data processing systems enables management to receive daily or weekly inventory reports from all sectors of the distribution channels. Hence, when the retail inventories of a particular item are growing too large, the manufacturer realizes this situation in days instead of months. Therefore, production will be immediately shifted to a more needed item. With automation productive capacity increases, and more goods and services can be produced and distributed. However, through the increase in productive capacity by application of automation, the right of those who may have become unemployed through the application of automation must not be ignored. In a few industries, automation may come abruptly. Nevertheless, the situation may be only temporary and as soon as the individual has adjusted to the circumstances, he will realize that he must shift to growing industries. During the transition period, he willget unemployment compensation, which in the State of Illinois is now $50 a week for a possible 26 weeks. Older workers who would find it difficult to switch to new industries usually will be kept in the present industry and used as a skeleton work force.
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Industrial Hygiene Digest
August, 1960
ACCIDENTS AND PREVENTION
817 A Power Plant Safety Program. W. C, Kramer Coal Utilization 14, 21-22 (June I960).
The prime requisite for a successful safety program is the enlistment of full cooperation from all plant employees. The author presents a program which does not use incentives or rewards and still has been highly successful. Before a safety program can get off the ground, the principles and objectives must be spelled out. The following could be called to a company's safety philosophy: (1) Every employee has a responaibility for safety. (2) Safety is an integral part of doing a job right and is made a vital part of all job training. (3) No job is so urgent or emergency so great that it cannot be taken care of safely. (4) Top management must be sincere and active in their pursuit of safety if such an attitude is to prevail. When this attitude reaches and is accepted by first line supervisors, the safety program works because employees adopt the attitude of those for whom they wofk. (5) Safety on the job and off-the job are equally important. A proper attitude toward safety is a way of life.
818 Understanding the Electron. J. G. Huffman. Natl. Safety News 82, 38-39, 171-172 (July I960).
East year in the United States about 1,000 persons met death by accidental electro cution; another 5, 000 received serious injury from electrical causes. Property damage ran into millions. Electron flow or movement along a conductor is called an electric current. A rate of 6 x 1010 electrons per second is equivalent to one ampere. When current flows, it re leases energy. An electrical current of only 25/1000 ampere passing through the human body can be lethal. Fortunately, it usually requires considerably more, especially when the current path does not cross the heart or important nerve centers. Even though not lethal, serious burns can result where higher currents are involved. Three things are necessary for sufficient cur rent to pass through the human body to be dangerous. First, the circuit has to be complete. The current must have points of contact where it can enter and leave the body. The second condition is that the voltage must be high enough to cause a large enough current to flow. Finally, the source must have the capacity to supply the current, whatever the voltage. The commonest situation which can provide the three necessary conditions for serious shock is contact with an ungrounded portable device, such as a hotplate, a stirrer, or a pH meter. These devices often develop an electrical path between the internal wiring and the frame. If this path is a metallic one, it's called a short; if it's due to dirt or a breakdown of insulation, it's called a leak. In either case, the frame of the device would be hot electrically to ground. This hazard can be almost completely eliminated by the use of a 3-wire receptacle, plug, and cable. Heating tapes with thin porous insulation represent a class of potentially hazardous de vices which cannot be made safe easily. Leakage sometimes exists from the heating wire in the tape through the insulation to the surface. It can be due to the insulation being worn thin or to some conducting material having soaked into it. There is no metal frame to ground, so a third wire is of no value. Other precautions to be observed in handling electrical equipment in the laboratory are discussed by the author.
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Industrial Hygiene Digest
MISCELLANEOUS
August, 1960
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819 Industrial Waste Disposal Tailored to Stream Flow. C, J, Vela. Proc. Am, Soc. Civil Engrg., J. Sanitary Engr. Div. 85, No. SA6, Pt. 1, 95-109 (Nov. 1959).
Recognizing the technical and economic limitations of waste treatment in main
taining satisfactory stream conditions during drought season, two possibilities for more
efficient utilization of water resources hold promise. Either the stream flow should be
regulated to make a higher level of total flow useable; or the industrial waste discharge
should be regulated, tailored to the varying pattern of stream flow. A detailed case analysis
of the latter, regulating release from waste storage lagoons in accord with the varying waste
assimilation capacity of the stream, indicates industrial expansion potential 10 to 50 times
that possible under drought flow conditions.
-- Public Health Engr. Absts.
820 Treatment of Phenolic Effluents. D. A. Hall and G. R. Nellist.
J. Appl. Chem. (London)
565-576 (Nov. 1959).
The following methods of disposal and treatment of phenolic liquors from coke
oven plants are studied: (1) Direct use on froth flotation media in coal washing plant. The
coal absorbs 60% of the phenols present, but only half the normal output can be used in this
way. (2) Chemical oxidation of the phenols by ozone. This is satisfactory for dilute liquors
(100 ppm of phenols) but is too costly for spent ammoniacal liquors. (3) Biological oxidation.
The activated sludge process is satisfactory but somewhat expensive. An enclosed percolating
filter containing coke activated with soil organisms gave promising resultB. (4) Extraction
of phenols. The use of light creosote oil in a rotating disc extractor gave promising results.
For liquors rich in phenols, the procedure recommended is method (4) followed by methods
(3) or (1) and then method (2) if desirable. Final effluents wifhlO to 50 ppm of phenols can be
obtained.
-- Public Health Engr. Absts.
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INDEX
Accident facts (bk. rev. )
730
Air pollutants adhesion to surfaces determining effect on epithelium release of sodium aerosol in combustion sulfur dioxide, hydrogen sulfide, carbon disulfide
810 812 813 814
803
Air pollution control Allegheny County dust and fume disposal in vertical boiler measurement(s) chamber for calibration purposes
Air sampling, ring oven techniques
728 807 806
811
802
Allegheny County, air pollution control
728
Allergy(ies) analysis of allergic dermatitides in antimony mine in cement industry
741 749 748
Anthracosis, bone marrow
783
Antimony mine, allergic disease in
749
Asbestosis, and lung cancer
781
Asthma, effect of smoking
734
Atomic energy available literature plant, dispensary visits
790 800
Automation and unemployment
816
Baritosis, in barite workers
768
Benzene hexachloride, toxic hazards
767
Books
accident facts
730
health benefit coverage in New York State 7 32
health survey, U.S. Natl., Hawaii
733
occupational disease attributed to
pesticides
731
Boranes (boron hydrides) toxicity of diborane toxicology
751 752
Cancer and air pollutants from chromates lung, asbestos
813 757 781
Cancer (continued) pathological effects of smoking roasted chromite ore
Carbon monoxide poisoning neurologic manifestations
736 756
753
Carbon tetrachloride effect on rat serum enzymes
762
Cement industry, allergy in workers
748
Chemotherapy of infection
738
Chromate cancer in mice and rats dermatitis from cement
757 747
Chromatography, some aspects of
801
Chromite ore, role in cancer
756
Chromium, microdetermination
759
O-Cresyl phosphate, outbreak of paralysis 765
DDT, toxic hazards
767
Dermatitis, dermatosis(es) analysis of dermatitides in cement industry formaldehyde in textiles phenylmercuric salts silica granulomas in man status of skin tests value of patch tests
741 747 744 742 743 746 745
Diatomaceous earth, pneumoconiosis
775
1, 1-Dimethylhydrazine, toxicity
766
Dust control, suppression in glass manufacturing
774
Dust counting, determination size distribution in coal mines statistical aspects
805 772
Dust sampling, samplers correction for anisokinetic myocological contamination size analysis
771 769 773
Electrical hazards in the laboratory .
818
Emphysema, effect of smoking
734
Ethylene dibromide fatal case of poisoning
763
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In-.u8iri.il Hygiene Digest
Executive development and organizational health
815
Eye, tobacco amblyopia
735
Fluoride(s), determination
754
U Formaldehyde and contact eczema
744
fel
Health benefit coverage in New York State survey, U, S. Natl. Hawaii health survey
732 733
Heart disease and occupational exposures 739
Heat development of heat pyrexia and humidity, diffusion of water vapor through skin
785 786
Industrial medicine in atomic energy plant education for practice of
Industrial relations and ^-----j organizational health
Infection and chemotherapy
Lead fume from welding coated steels poisoning in making light bulbs
Man versus environment
Mercury hazard in medical laboratories
Noise audience and seat absorption measurement(s) temporary threshold shift
{Noise control and reduction value of ear defenders
Odor control methods oo
Ophthalmology, tobacco amblyopia
^Pesticides |p Cfj and occupational disease (bk. rev.)
Phenylmercuric salts, dermatoses tvL
ijPIastics, toxicology
C=4:neumoc onto sis
baritosis in diatomaceous earth workers talc in soapstone workers
Polydiroethylsiloxanea, oral toxicity
800 740
815 738
760 761 808
758
787 788
789 809 735
731 742 750
768 775 782 764
August, 1960
Radar effects on animals control of hazards
792 791
Radiation (ionizing, nuclear, x-rays, etc.)
biochemical effects
798
in manned space flights
784
effect on mediastinum
793
protection, code. New York City
729
Radioactive decontamination of animals particulates, retention in lung
799 794
Radioisotopes information for industrial use and the law in medicine
795 796 797
Resins, toxicology of synthetic
750
Safety in a power plant
817
Silica granulomas in man
743
Silicone(s) polydimethylsiloxanes, toxicity
764
Silicosis clinico-radiological assessment non-typical forms unusual manifestations
778 777 776
Silico tuberculosis bronchographic picture bronchoscopic picture
780 779
Skin, diffusion of water vapor through
786
Smoking effect on asthma and emphysema pathological effects
734 736
Space flight, radiation implications
784
Sulfur dioxide determination in flue gases dynamics of inhalation in urban area
804 755 803
Sulfur trioxide, determination Influe gases 804
Talc pneumoconiosis, in soapstone workers 782
Thermal precipitator fractionation of particles
Uranium dioxide, retention in the lung
770 794
Vibrating tools and neurological conditions
Waste disposal
'
tailored to stream flow
treatment of phenolic effluents
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819 820
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