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ARCHIVED REPORTS_HUMAN HEALTH SCREENING EVALUATION 2012
EnvironmentalHealth
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2900 - Site Mitigation Program
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PR0508042
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ARCHIVED REPORTS_HUMAN HEALTH SCREENING EVALUATION 2012
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Last modified
9/14/2020 5:28:09 AM
Creation date
6/23/2020 3:27:10 PM
Metadata
Fields
Template:
EHD - Public
ProgramCode
2900 - Site Mitigation Program
File Section
ARCHIVED REPORTS
FileName_PostFix
HUMAN HEALTH SCREENING EVALUATION 2012
RECORD_ID
PR0508042
PE
2960
FACILITY_ID
FA0005316
FACILITY_NAME
U S CAN COMPANY
STREET_NUMBER
35275
Direction
S
STREET_NAME
WELTY
STREET_TYPE
RD
City
VERNALIS
Zip
95385
APN
25518009
CURRENT_STATUS
01
SITE_LOCATION
35275 S WELTY RD
P_LOCATION
99
P_DISTRICT
005
QC Status
Approved
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EHD - Public
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TABLE 22 <br /> ESTIMATED INHALATION RISKS DUE TO <br /> INDOOR VAPOR INTRUSION FROM GROUNDWATER <br /> US CAN—WELTY ROAD <br /> 35275 Welty Road <br /> Vernalis,California <br /> Estimated <br /> COPC Cw(µg/L) Inhalation Risk <br /> BTEX <br /> Benzene 0.6 2.4E-07 <br /> Eth lbenzene 5.9 2.4E-07 <br /> Total Xylenes 1.9 <br /> -X lene NA <br /> PAHs <br /> Acenaphthene 18 NA <br /> Benzo(b)fluoranthene 3.1 8.2E-09 <br /> Chrysene 24 3.4E-09 <br /> Fluorene 100 NA <br /> Meth lna hthalenes 0.093 NA <br /> 1 <br /> Naphthalene 14 3.5E-07 <br /> Pyrene 13 NA <br /> Total Estimated Risk: 8.4E-07 <br /> Abbreviations: <br /> BTEX=Benzene,toluene,ethylbenzene,and total xylenes <br /> Cal/EPA=California Environmental Protection Agency <br /> COPC=Constituent of potential concern <br /> Cw=Concentration in groundwater <br /> DTSC=Department of Toxic Substances Control <br /> PAHs=Polynuclear aromatic hydrocarbons <br /> VOCs=Volatile organic compounds <br /> µg/L=Micrograms per liter <br /> Model Source: <br /> Screening-Level Model for Groundwater Contamination,Version 3.0;04/03 <br /> (last modifieff ebruary 2009). Cal/EPA DTSC. <br /> htti)://www.dtsc.ca.gov/AssessinjzRisk/JE Models.cfrn <br /> 1. The hazard from exposure to total xylenes in groundwater could not be <br /> calculated so it was assumed that all xylenes were in the form of p-xylene to <br /> most conservatively estimate the health hazard from xylenes. <br /> ' Page 1 of 1 SAIE <br /> 1 <br />
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