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APPENDIX B-Continued

CONCENTRATIONS IN AIR AND WATER ABOVE NATURAL BACKGROUND-continued

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'Soluble (S): Insoluble (I).

"Sub" means that values given are for submersion in a semispherical infinite cloud of airborne material.

3 These radon concentrations are appropriate for protection from radon-222 combined with its short-lived daughters. Alternatively, the value in Table I may be replaced by one-third (13) "working level." (A "working level" is defined as any combination of short-lived radon-222 daughters, polonium-218, lead-214, bismuth214 and polonium-214, in one liter of air, without regard to the degree of equilibrium, that will result in the ultimate emission of 1.3x105 MeV of alpha particle energy.) The Table II value may be replaced by one-thirtieth (130) of a "working level." The limit on radon-222 concentrations in restricted areas may be based on an annual average.

For soluble mixtures of U-238, U-234 and U-235 in air chemical toxicity may be the limiting factor. If the percent by weight -enrichment) of U-235 is less than 5, the concentration value for a 40-hour workweek, Table I, is 0.2 milligrams uranium per cubic meter of air average. For any enrichment, the product of the average concentration and time of exposure during a 40-hour workweek shall not exceed 8X10-3 SA uCi-hr/ml, where SA is the specific ancitivity of the uranium inhaled. The concentration value for Table II is 0.007 milligrams uranium per cubic meter of air. The specific activity for natural uranium is 6.77X10-7 curies per gram U. The specific activity for other mixtures of U-238, U-235 and U-234, if not known, shall be: SA 3.6X10-7 curies/gram U

SA (0.4+0.38 E+0.0034 E2) 10-6

U-depleted E≥0.72

where E is the percentage by weight of U-235, expressed as percent.

NOTE: In any case where there is a mixture in air or water of more than one radionuclide, the limiting values for purposes of this Appendix should be determined as follows:

1. If the identity and concentration of each radionuclide in the mixture are known, the limiting values should be derived as follows: Determine, for each ra

3X10-0

9X10-5

1X10-10

3X10-6

6X10-13

4X10-7

2X10-14

3X10-*

dionuclide in the mixture, the ratio between the quantity present in the mixture and the limit otherwise established in Appendix B for the specific radionuclide when not in a mixture. The sum of such ratios for all the radionuclides in the mixture may not exceed "1" (i.e., "unity")

EXAMPLE: If radionuclides A, B, and C are present in concentrations CA, CB, and Cc, and if the applicable MPC's, are MPCA, and MPCR, and MPCC respectively, then the concentrations shall be limited so that the following relationship exists:

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2. If either the identity or the concentration of any radionuclide in the mixture is not known, the limiting values for purposes of Appendix B shall be:

a. For purposes of Table I, Col. 1-6X10-13
b. For purposes of Table I, Col. 2-4X10-1
c. For purposes of Table II, Col. 1-2X10-14
d. For purposes of Table II, Col. 2-3X10-

3. If any of the conditions specified below are met, the corresponding values specified below may be used in lieu of those specified in paragraph 2 above.

a. If the identity of each radionuclide in the mixture is known but the concentration of one or more of the radionuclides in the mixture is not known the concentration limit for the mixture is the limit specified in Appendix "B" for the radionuclide in the mixture having the lowest concentration limit; or

b. If the identity of each radionuclide in the mixture is not known, but it is known that certain radionuclides specified in Appendix "B" are not present in the mixture, the concentration limit for the mixture is the lowest concentration limit specified in Appendix "B" for any radionuclide which is not known to be absent from the mixture; or

C. Element (atomic number) and isotope

If it is known that Sr 90, I 125, I 126, I 129, I 131 (I 133,
table II only), Pb 210, Po 210, At 211, Ra 223, Ra 224,
Ra 226, Ac 227, Ra 228, Th 230, Pa 231, Th 232, Th-
nat, Cm 248, Cf 254, and Fm 256 are not present..
If it is known that Sr 90, I 125, I 126, I 129 (I 131, I 133,
table II only), Pb 210, Po 210, Ra 223, Ra 226, Ra 228,
Pa 231, Th-nat, Cm 248, Cf 254, and Fm 256 are not
present

If it is known that Sr 90, I 129 (I 125, I 126, I 131, table II
only), Pb 210, Ra 226, Ra 228, Cm 248, and Cf 254 are
not present...

If it is known that (I 129, table II only), Ra 226, and Ra 228 are not present..

If it is known that alpha-emitters and Sr 90, I 129, Pb 210, Ac 227, Ra 228, Pa 230, Pu 241, and Bk 249 are not present.

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If it is known that alpha-emitters and Ac 227 are not present...

If it is known that alpha-emitters and Pb 210, Ac 227,
Ra 228, and Pu 241 are not present..

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If it is known that Ac 227, Th 230, Pa 231, Pu 238, Pu 239, Pu 240, Pu 242, Pu 244, Cm 248, Cf 249 and Cf 251 are not present...

4. If a mixture of radionuclides consists of uranium and its daughters in ore dust prior to chemical separation of the uranium from the ore, the values specified below may be used for uranium and its daughters through radium226, instead of those from paragraphs 1, 2, or 3 above.

a. For purposes of Table I, Col. 1-1X10-10 μCi/m gross alpha activity; or 5X10-11 μCi/ml natural uranium or 75 micrograms per cubic meter of air natural uranium.

3X10-12

5. For purposes of this note, a radionuclide may be considered as not present in a mixture if (a) the ratio of the concentration of that radionuclide in the mixture (CA) to the concentration limit for that radionuclide specified in Table II of Appendix "B" (MPCA) docs CA not exceed Mo, (1.e. MPCA 10 and (b) the sum of such ratios for all the radionuclides considered as not present in the mixture does not exceed 4 i.e.

CA
MPCA

Св + +MPCB

.....

≤4).

b. For purposes of Table II, Col. 1-3X10-12 μCi/ml gross alpha activity; 2X10-12 Ci/ml natural uranium; or 3 micrograms per cubic meter of air natural uranium. [25 F.R. 10914, Nov. 17, 1960, as amended at 25 F.R. 13953, Dec. 30, 1960; 26 F.R. 11046, Nov. 25. 1961; 29 F.R. 14435, Oct. 21, 1964: 30 F.R. 15801. Dec. 22, 1965; 31 F.R. 86, Jan. 5, 1966; 37 F.R. 23319, Nov. 2, 1972; 38 FR 29314, Oct. 24, 1973; 39 FR 23990, June 28, 1974; 39 FR 25463, July 11. 1974; 39 FR 27121, July 25, 1974; 40 FR 50705, Oct. 31, 1975]

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NOTE: For purposes of §§ 20.203 and 20. 304, where there is involved a combination of isotopes in known amounts the limit for the combination should be derived as follows: Determine, for each isotope in the combina tion, the ratio between the quantity present in the combination and the limit otherwise established for the specific isotope when not in combination. The sum of such ratios for all the isotopes in the combination may not

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The denominator in each of the above ratios was obtained by multiplying the figure in the table by 1,000 as provided in § 20.304 [35 F.R. 6425, Apr. 22, 1970, as amended at 36 FR 16898, Aug. 26, 1971; 38 FR 29314, Oct. 24, 1973; 39 FR 23991, June 28, 1974] APPENDIX D

UNITED STATES NUCLEAR REGULATORY COMMISSION INSPECTION AND ENFORCEMENT
REGIONAL OFFICES

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NOTE: The record keeping and reporting requirements contained in this part have beer approved by the Office of Management and Budget in accordance with the Federal Reports 1968; 36 FR 1466, Jan. 30, 1971; 38 FR 1271, Jan. 11, 1973; 38 FR 17198, June 29, 1973; 39 FR 17972, May 22, 1974; 39 FR 27121, July 25, 1974.

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