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ARCHIVED REPORTS_XR0011974
EnvironmentalHealth
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EHD Program Facility Records by Street Name
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3500 - Local Oversight Program
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PR0545892
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ARCHIVED REPORTS_XR0011974
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Last modified
7/22/2020 3:00:49 PM
Creation date
7/22/2020 2:23:17 PM
Metadata
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Template:
EHD - Public
ProgramCode
3500 - Local Oversight Program
File Section
ARCHIVED REPORTS
FileName_PostFix
XR0011974
RECORD_ID
PR0545892
PE
3528
FACILITY_ID
FA0003601
FACILITY_NAME
ARCO STATION #826951*
STREET_NUMBER
130
Direction
S
STREET_NAME
WILSON
STREET_TYPE
WAY
City
STOCKTON
Zip
95205-5561
APN
15502064
CURRENT_STATUS
02
SITE_LOCATION
130 S WILSON WAY
P_LOCATION
01
P_DISTRICT
001
QC Status
Approved
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Field Practices and Procedures <br /> • Page 3 <br /> submitted based on the findings at each individual borehole and the project specific data <br /> needs <br /> Stockpiled Drill Cuttings and Soil Sampling <br /> Drill cuttings generated during the drilling procedure will be stockpiled on site, placed in <br /> 55-gallon steel drums, or containerized in covered roll-off steel containers Stockpiled <br /> drill cuttings will be placed on and covered with plastic sheeting A sample of the soil <br /> cuttings will be submitted for chemical analysis to determine an appropriate disposal <br /> method Stratus Environmental will recommend an appropriate facility to accept the drill <br /> cuttings based on the analytical results The client will be responsible for disposal of the <br /> drill cuttings <br /> Prior to collecting soil samples, ,Stratus personnel will calculate the approximate volume <br /> of soil in the stockpile The stockpile will then divided into sections, if warranted, <br /> containing the predetermined volume sampling interval Four soil samples will be <br /> collected from the stockpile and composited into one sample by the laboratory prior to <br /> analysis The soil samples will be collected in cleaned brass, two by six inch tubes using <br /> a hand driven sampling device To reduce the potential for cross-contanlination between <br /> samples, the sampler will be cleaned between each sampling event Upon recovery, the <br /> sample container will be sealed at each end with Teflon sheeting and plastic caps to <br /> . minimize the potential of volatilization and crass-contanlination prior to chemical <br /> analysis The soil sample will be label ed, placed on ice, and delivered to a state-certified <br /> analytical laboratory, along with the appropriate chain-of-custody documentation <br /> Direct Push Technology, Water Sampling <br /> A well known example of direct push technology for water sampling is the Hydropunch® <br /> For the purpose of this field method the term hydropunch will be used instead of direct <br /> push technology for water sampling <br /> The hydropunch is typically used with a drill rig A boring is drilled with hollow stem- <br /> augers to dust above the sampling zone In some soil conditions the drill rig can push <br /> directly from the surface to the sampling interval The hydropunch is conveyed to the <br /> bottom of the boring using drill rods Once on bottom the hydropunch is driven a <br /> maximum of five feet The tool is then opened by lifting up the drill rod no more than <br /> four feet Once the tool is opened, water enters and a sample can be collected with a <br /> bailer or tubing utilizing a peristaltic pump Soil particles larger than silt are prevented <br /> from entering the tool by a screen within the tool The water sample is collected, labeled, <br /> and handled according to the Quality Assurance Plan <br /> Well Installation Procedures <br /> Groundwater monitoring, soil vapor extraction, groundwater extraction, air sparging, and <br /> ozone injection wells, of variable diameters, are normally constructed during <br /> tvl Field PracucesTield P&P With Air Rolaiy 01L111ng revised 02-2005 by SGB doe <br />
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