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ARCHIVED REPORTS_XR0003197
EnvironmentalHealth
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EHD Program Facility Records by Street Name
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H
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HUNTER
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2900 - Site Mitigation Program
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PR0541693
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ARCHIVED REPORTS_XR0003197
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Entry Properties
Last modified
2/6/2020 11:59:39 AM
Creation date
2/6/2020 10:30:29 AM
Metadata
Fields
Template:
EHD - Public
ProgramCode
2900 - Site Mitigation Program
File Section
ARCHIVED REPORTS
FileName_PostFix
XR0003197
RECORD_ID
PR0541693
PE
2960
FACILITY_ID
FA0023897
FACILITY_NAME
TOYOTA TOWN INC
STREET_NUMBER
610
Direction
N
STREET_NAME
HUNTER
STREET_TYPE
ST
City
STOCKTON
Zip
95202
APN
13906033
CURRENT_STATUS
01
SITE_LOCATION
610 N HUNTER ST
P_LOCATION
01
QC Status
Approved
Scanner
SJGOV\sballwahn
Tags
EHD - Public
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TABLE 7 <br /> DESTRUCTION EFFICIENCY CALCULATIONS <br /> Farmer Property, 610 Hunter Street, Stockton, CA <br /> Page 1 of 1 <br /> Date Analyte Influent Effluent Efficiency% <br /> 10/28/05 PID 33 47 8576 <br /> 10/28/05 C6-C12 9 0 500 9444 <br /> ' 10/28/05 Benzene 0 072 0 050 3056 <br /> 10/28/05 Toluene 0 097 0 050 4845 <br /> 10/28/05 Ethyl Benzene 1 0 062 0 050 1935 <br /> 10/28/05 Xylenes 0 430 0 100 76 74 <br /> 11/21/05 PID 23 12 9478 <br /> ' 11/21/05 C6-C12 50 6 8800 <br /> 11/21/05 Benzene 0 600 0 050 9167 <br /> 11/21/05 Toluene 0 590 0'130 7797 <br /> 11/21/05 Ethyl Benzene 0 190 0 050 7368 <br /> 11/21/05 Xylenes 1 100 0 670 3909 <br /> 12/28/05 PID NS NS System Down <br /> ' 12/28/05 C6-C12 NS NS System Down <br /> 12/28/05 Benzene NS NS System Down <br /> 12/28/05 Toluene NS NS System Down <br /> ' 12/28/05 Ethyl Benzene NS NS System Down Not calculated <br /> 12/28/05 Xylenes NS NS System Down Not calculated <br /> r Notes <br /> C6-C12 denotes gross range organics and is the equivalent to TPHG <br /> MTBE denotes methyl tertiary butyl ether <br /> PID denotes concentration detected by a photo-ionization detector field instrumentation <br /> Influent is the concentration in ppmv based on laboratory analytical data <br /> provided in Table 4 <br /> ' Effluent is the concentration in ppmv based on laboratory analytical data <br /> provided in Table 4 <br /> Destruction efficiency is computed as the effluent concentration <br /> divided by the influent concentration, expressed as a percentage <br /> Where the effluent was not detected at method detection limits, the detection limit <br /> was used in the calculation <br />
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