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Bibliography (National Research Council of Canada. Division Of Building Research); no. BIBL-22, 1964-03

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Annotated bibliography on exhaust hoods

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ANNOTATED BIBLIOGRAPHY ON EXHAUST HOODS compiled by R. K. Beach clay concrete ave efflorescence

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Ottawa, March 1964

Coupons ore issued by the Council valued at 5, 25, and 50 cents. Them can be used in payment for this service as well as cash A

(stamps am not acceptable), money order or cheque (poyable ot par in Ottawa credit National Research Council). Coupons can be used for the purchose of all National Research Council publications.

The items contained in this annotated bibliography a r e for the most part the result of a scrutiny of the Engineering Index, Applied 'Science and Technology Index, British Technology Index, and

Heating and Ventilating Research Association Library Bulletin, of volumes from 1959 to date. Three books pertaining to the subject a r e also listed. BUbLDING RESEARCH

(

.

-I

I

FEB

25

1966 .

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BOOKS

INDUSTRIAL VENTILATION MANUAL

-

(A Manual of Recommended Practice, 7th Edition, Committee on Industrial Ventilation). American Conference of Governmental Industrial Hygienists

P. 0. Box 453, Lansing, Michigan. 1962

PLANT AND PROCESS VENTILATION. W. C. L. Hameon. The Industrial P r e s s , New York 13, N. Y. 1955

DESIGN OF INDUSTRIAL EXHAUST SYSTEMS. J. L. Alder. Industrial P r e s s , New York. 1948

ARTICLES

SPECIAL EXHAUST SYSTEM CONTROLS PLANTS CORROSIVE ATMOSPHERE. S.L. Lucas. Plant Engineering, Vol. 17, No. 6, June 1963, p. 144-5

Ventilating system employed at the plant of Western Electric Co., Whston-Salem, N. C., t o solve problems in conjunction with use of various acids in process, condition air to be

exhausted, and elimination of air pollution; features of s e r i e s of laboratory-type hooded enclosures to c a r r y corrosive atmosphere up to exhaust duct where it is discharged. DESIGN OF EXHAUST SYSTEMS AND DISCHARGE STACKS.

J. H. Clarke. Heating, Piping & Air -Conditioning, Vol. 35, No. 5,May 1963, p. 119-23

Conside rations for removing building contaminants safely and discharging them t o outside with minimal air pollution and nuisance; industrial ventilation design c r i t e r i a to provide necessary exhaust systems for safe removal of contaminants; examples of discharge stack design.

(Discussion HP and AC, Vol. 35, p. 78; Reply p. 86, August 1963) LABORATORY AIR SUPPLY SYSTEMS.

R.

J. Walker, ASHRAE

Journal, Vol. 5, No. 3, March 1963, p. 47-8

F r e s h air supply system c r i t e r i a for selecting ventilation system for laboratory; analysis of system components and operating costs;

c r i t e r i a indicate heavy duty, built-up type of system a s opposed to prefabricated units.

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LABORATORY FUNLE HOODS AND THEIR EXHAUST SYSTEMS.

J, E. P e t e r son and J. A. Peay. Air -Conditioning, Heating and Ventilating, Vol. 60, No. 5, May 1963, p. 63-72

Considerations associated with selection of laboratory hood^ problem of hood d e s i s and location in l a b o r a t o r y ~ exhaust hood system components, inspection and balancing of new installations, and preventive maintenance a r e discus sed.

ENGINEERXNG APPROACH TO DESIGN OF INDUSTRIAL MAXE-UP

AIR SYSTEMS. W. L. Wilson, Air Engineering, Vol. 4, No. 12, December 1962, p. 30-6

Supply air jets and methods f o r estimating size and velocity of jet streams! principles a s related t o design of various types of indu stria1 ventilation, including heating, hot air dis sipation, dilution, ventilation, contamination a t floor level, make -up air for local exhaust hoods and push-pull systems.

DESIGN OF PHARMACEUTICAL LABORATORY. R. C, de B. Devereux

and R. Charlton. Inst. Heating and Ventilating Engineers Journal, Vol. 30, May 1962, p. 45-59

. Experience based on expansion program c a r r i e d out by Wellcome Foundation Ltd.

,

Beckenham Kent r e s e a r c h centre; buildings provide special facilities f o r production of polio and other virus vaccines, development and production of anaerobic vaccines, immunological r e s e a r c h and pharmacology; design of heating

and ventilation systems for laboratories concerne d with biological work, Includes discussion and replies t o discussion.

DESIGN TECHNIQUES FOR VENTILATING RESEARCH LABS. J.C. Barrett. Air Engineering, Vol. 4, No. 1, January 1962, p. 31-6

Hood design and locatibn, capture velocity, air supply, air cleaning, exhaust duct design, etc., for modern r e s e a r c h

laboratories handling m a t e r i a l s of high toxicity and radioisotopes requiring additional ventilation; advantages of glove boxe s,

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FUME HOODS

-

SAFETY VS COST. E.L. Walls and W.P. Metzner. Industrial and Engineering Chem. Vol. 54, No. 4, April 1962, p. 42-5

Development of hoods f o r Monsanto Chemical Company's new Research Centre at Creve Coeur, Mo. 1 major innovations a r e use of horizontal sliding s a s h instead of conventional rising

sash, and making air flow through hood at all timesi hoods cost little m o r e than conventional equipment.

VENTILATION OF CHEMISTRY "HOTtt LABORATORY.

B. F. Oswals and S. J. Vachta. Heating, Vol. 24 No. 198, June 1963, p. 192-4

Design requirements f o r ventilating system in new section of Chemistry Building under construction at Argonne National Laboratory, Argonne, Ill. 1 problems of ventilation in connection with emitted alpha particles and t o prevent spread of radioactive contamination.

LAB

HOODS

RID

FUMES, EXHAUST BULLDING

IN

NEW

LLFE SCIENCES RESEARCH CENTRE. C. J. Allen. Heating, Piping

& Air Conditioning, Vol. 34, November 1962, p. 107-12 A brief detailed description of the laboratory exhaust hood

system which i s the basic building exhaust system; also describes r e v e r s e r e t u r n H. W. heating system, absorption

A. C. system, air-handling system, cold rooms and f i r e

protection system; building i s located at Wayne State University in mid-town Detroit.

VENTILATION OF MATERIAL TRANSFER. W.

V.

Andre sen, Air Engineering, Vol. 3, No. 6, June 1961, p. 29-41

Data on ventilation requirements of hooded transfer points where toxic solid m a t e r i a l s a r e added t o chemical process

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VENTILATION OF BASKET CENTRIFUGALI FILTERS.

W.V. Andresen. Air Engineering, Vol. 3, No. 4, April 1961, p. 31-2, 50

P r a c t i c a l suggestions t o protect operator f r o m hazardous vapours and solids during charging, washing and unloading, cycles of basket centrifugal filters, hood design and exhaust ventilation data.

DESIGN FACTORS IN BETTER LABORATORY HOOD DESIGN. ASHRAE Journal, Vol. 3, No. 9, September 1961, p. 47-59 J.C. Burke Jr., p, 47-9. What P r i m a r y Requirements a r e

Needed in Controlling Contamination Through Ventilation? T. B. Lanalon, p. 49-50. Laboratory Hood Size, Material and

Construction Features a r e Basedion Specific Application. GUIDE TO INDUSTRIAL VENTILATION IN CHEMICAL INDUSTRY,

W.

Y.

Andresen. Air Engineering, Viol. 2, No. 12, December 1960, p. 37-9; Vol. 3, No. 1, January 1961, p.+ 31-3

December 1960: Navy hood and open tee types of ventilation may be used where relatively small exhaust a i r volumes a r e required t o control dust, gases, m i s t s and vapours evolved f r o m chemical process equipment, o r f r o m bins, weigh hoppers

o r similar equipment into which solids a r e charged; some type of ventilation can also be used for control in bucket elevator operations; design arrangements, and ductwork installations. January 1961: Discussions of avenues of exposure of personnel t o gases, m i s t s and vapour s evolved during plate and f r a m e filter p r e s s operation; two methods of draining filtrate f r o m p r e s s a r e "open" and llclosed" delivery; canopy hood design for solvent control during p r e s s cleaning and setting up and minimum air volume of 1000 cfm should be usedr additional ventilation may be required for container into which filtered product i s transferred. HOOD VENTILATION IN ARGONNE' S PLUTONIUM FUEL FABRICATION

FACILITY. R. M. Mayfield and H. Bairiot. Heating, Piping &

Air Conditioning, Vol. 33, p. 124-9, September 1961

During two y e a r s of operation the hood ventilation system h a s

been modified considerably; the automatic control and purge system giving most concern.

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EXHAUST HOODS FOR XNDUSTRLAL VENTILATION.

Air -Conditioning, Heating and Ventilating, Vol. 58, 196 1, May, p. 87-81 June, p. 91-2

Two-page detail sheets and diagrams covering design of

various exhaust hoods; (includes references giving procedure f o r determining ventilation rate).

ASHRAE SYMPOSIUM. Heating, Piping and Air Conditioning, Vol. 33, April 1961, p. 146-149.

How t o Balance and Test Air Handling Systems to A s s u r e Satisfactory Performance, J a m e s Bricker ;

Field Testing of Industrial Exhaust Systems, R. E. Robinsonj Air Volume Control f o r Industrial Ventilation, R. J. Walker. A brief report of three papers presented at the ASHRAE Symposium, Chicago, Ill.

,

February 1961.

HOW MUCH HOOD EXHAUST AIR? Plot available data, chart supplies answer. H. L. Bryman. Plant Engineering, Vol. 1 5, April 1961, p. 105.

A nomograph for use with hoods over circular tanks. PRACTICAL WAYS TO COLLECT BERYLLIUM DUST.

A. J. Breslin and W. B. Harris. Air Engineering, Vol. 2, NOS. 7, 8, 9, 10, 1960. July, p. 34-6531 August, p. 30-3, 51; September, p. 41-4; October, p. 48-50, 62, 64.

July: Three f o r m s of disease associated with production and processing of Bej description of methods of control by enclosure techniques, a i r flow, exhaust ventilation, and hood design, gained by US AEC in 10 y e a r s of experience with machining, grinding, vacuum casting, sintering, fabrication, sublimation, chlorination, and other operations.

August: Exhaust ventilation design data for Be operations includes hooding f o r lathes, blenders, ball mills and rotating kilns.

September: Techniques for drum filling, ventilation, duct design,

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October: Data on dust loading calculations, dust disposal, hood and duct sizing, principal features of dust collectors, and capital and operating cost figures on installations a r e discussed.

TECHNIQUES OF LABORATORY VENTILATION.

J. C. Barrett. Safety Maintenance, Vol. 119, No. 1, January 1960, p. 28-32

Exhaust hood design and location] proper installation i s vital with supply fan for system always located outside of building! need for minimum of 100 fpm face velocity for chemical and moderate toxicity material^ proposed designs of hoods

discussed.

HOW TO SELECT DUCTWORK, HOODS AND DUST COLLECTORS. H. E. Sadenberg. Engineering & Mining Journal, Vol. 161, June 1960, p. 195-9

Hood design and location for dust control of material handling equipment in mining industry] ductwork and characteristics of dust collectors and effect of condensation.

INDUSTRIAL EXHAUST SYSTEMS NEED

MAKE

U P AIR. SUPPLY.

G. Reznor. Heating, Piping & Air Conditioning, Vol. 32, October 1960, p. 146-8

The supply and distribution of make up a i r can be overlookedj broad requirements for make up a i r ; i t s distribution, tempering and costs a r e outlined.

HPAC DATA SHEETS. C. F. Metzler. Heating, Piping & Air- Conditioning, Vol. 32, 1960.

Nomograph Is Short -at To Finding Exhaust Hood Air Flow Rates.

HP

and AC, June 1960, p. 161-2;

How To Determine Air Flow Through Half-Cylinder Exhaust Hoods. HP and AC, July 1960, p. 123-4;

How To Determine Air Flow Through Charter-Cylinder Exhaust Hoods. HP and AC, August 1960, p. 123-4.

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SUPPLY W UP AIR FOR PLANT EXHAUST WITHOUT ADDING TO HEATING COSTS. H. P. Kaulfuss. Heating, Piping & Air Conditioning, Vol. 32, June 1960, p. 132-5

Four systems f o r exhausting heat, gas, fumes f r o m Caterpillar T r a c t o r Company Foundry, Peoria, Ill., a r e described.

Systems u s e 80% untempered outside air and 20% inside a i r ; untempered a i r i s supplied a t hoods and helps control flow into exhaust hood.

TIPS FOR TESTING VENTILATION SYSTEMS. B. D. Bloomfield. Air Engineering,Vol. 1, 1959. NO. 5, August, p. 46-9, 51;' No. 6, September, p. 38-40

Objectives of testing industrial system; method of measurement of factors such as hood and face velocity, velocity p r e s s u r e , static p r e s s u r e , and flow r a t e ; characteristics of heated thermocouple and thermometer anemometers, rotating vane anemometers, and p r e s s u r e gauges; exhaust system evaluation; field test measurements.

VENTILATION FOR AMERICAN PLUTONIUM FABRICATING PLANT. Heating, Vol. 21, No. 165, September 1959, p. 280-4

Fuel fabrication facility a t Argonne National Laboratory, Lemont, Ill., which comprises administration, technical and fabrication a r e a s , is ventilated by humidity controlled air supplied by means of separate air -conditioning system; helium atmosphere i s used in p r o c e s s enclosures t o protect personnel f r o m alpha particle contamination, f i r e and oxidation hazards; negative p r e s s u r e cooling system is used for hooded enclosures.

HOW VENTILATION COSTS ARE CUT IN RADIOACTIVE AREAS. T. T. Porembski. Air -Conditioning, Heating & Ventilating, Vol. 56, No. 6, June 1959, p. 73-7

Fourteen methods employed in originating cost improvements applicable t o design of new, and improvement of existing, ventilation systems a t Knolls Atomic Power Laboratory,

Schenectady, N. Y. ; systems of equipment a r e described, with details of air flow, and change of method which has effected operating economies.

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NEW TECHNIQUES IN LABORATORY VENTILATION.

M. W. F i r s t . Air Engineering, Vol. 1, No. 5, August 1959, p. 27-31

Consideration of effective temperature control, humidity and motion of air to safeguard workerst health and control dust, fumes, vapours and gases; basic ventilation design step in determining nature and extent of contamination load; design and use of laboratory hood t o confine air contamination; dispersion f r o m laboratory h o o d s ~ radioisotope hoods; providing make up air; exhaust hood piping, economics.

SELECT STAINLESS STEEL PIPING, DUCTS FOR NEW PLUTONIUM FABRICATION FACILITY. Heating, Piping and Air Conditioning, Vol. 31, December 1959, p. 79-83'

A description of the new Argonne National Laboratory near Chicago; describes Plutonium briefly; t h r e e types of exhaust systems using air o r helium; f i r e warning system.

CONTROL OF CONTAMINANTS. P. J. Mar shall, ASHRAE Journal, Vol. 1, November 1959, p. 60-2

Reasons f o r control; design criteria; treatment of effluent; examples of systems used in manufacture of pharmaceuticals and chemicals.

AN APPROACH TO A RATIONAL METHOD OF RECOMMENDING FACE VELOCITIES FOR LABORATORY HOODS. J.E. Peterson. American Ind. Hyg. Assoc. Journal, Vol. 24, August 1959, p. 259

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