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WORK PLANS FILE 1
EnvironmentalHealth
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EHD Program Facility Records by Street Name
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DURHAM FERRY
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3500 - Local Oversight Program
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PR0544624
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WORK PLANS FILE 1
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Last modified
7/3/2019 5:46:33 PM
Creation date
7/3/2019 3:28:25 PM
Metadata
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Template:
EHD - Public
ProgramCode
3500 - Local Oversight Program
File Section
WORK PLANS
FileName_PostFix
FILE 1
RECORD_ID
PR0544624
PE
3526
FACILITY_ID
FA0005206
FACILITY_NAME
GEORGES SERVICE
STREET_NUMBER
1600
Direction
W
STREET_NAME
DURHAM FERRY
STREET_TYPE
RD
City
TRACY
Zip
95376
APN
25510004
CURRENT_STATUS
02
SITE_LOCATION
1600 W DURHAM FERRY RD
P_LOCATION
99
P_DISTRICT
005
QC Status
Approved
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EHD - Public
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• SLOR INTERNATIONAL INCORPORATED <br /> w .secoccom <br /> SECOR <br /> Standard Operating Procedure <br /> 7777,777Measurenentof Potass�ktrnerrnganatepX. ,_' ,r_'Y <br /> SOxD analysis using potassium permanganate provides an estimate of the soil oxidant demand <br /> for potassium permanganate. The potassium permanganate soil oxidant demand (SOxD) is <br /> measured using a small representative sample of soil, a standard potassium permanganate <br /> solution, and an Ultra Violet Visible detector (UV-vis) or spectophotometer to measure the <br /> permanganate concentration in the treatment water over time. The method is presented below: <br /> Triplicate blank samples or controls: <br /> Add 5ml KMn04 standard solution (7.9 g/L) to each of 3 amber VOA bottles <br /> Add 5ml distilled H2O and vortex bottles for 30 seconds <br /> Triplicate samples of each soil sample: <br /> Add 1 g soil to each amber VOA bottle <br /> Add 5ml KMn04 standard solution (7.9 g/L) <br /> Add 5ml distilled H2O and vortex bottles for 30 seconds <br /> Allow samples to stand for 15 minutes before reading in the UV-vis spectrophotometer <br /> The analysis can be scaled up using equivalent proportions. If a larger sample is required, 1 <br /> kilogram (kg) of soil can be used with 5 liters of KMn04 solution and 5 liters of distilled water. <br /> Mixing will have to be done by hand or using a sample roller. The efficiency of mixing will <br /> depend on the containers available to do the mixing in. <br /> Analysis of Samples <br /> Dilute samples 1/10 to 1/100 for analysis (is. 100 ul sample in 10ml distilled water) depending <br /> on the intensity of the color in the reacted solution. Use a 10ml pipette to dispense 10mi distilled <br /> water into a clean VOA bottle. Add the sample, put on the lid, inverted twice and pour the <br /> diluted sample into the HACH UV-vis spectrophotometer tube. If precipitate is observed in the <br /> extracted sample and the standard used for analysis, filter the sample with a 0.45 µm filter <br /> cartridge or centrifuge at high speed prior to analysis. Setup a standard concentration cure <br /> with the standard solution prepared to treat the samples. Prepare standards that are between 0 <br /> and 500 mg/I of KMn04 to quantify the KMn04 in each sample. Wipe each tube with a Kimwipe <br /> if necessary. Both VOA bottle and spectrometer tube should be rinsed between sample sets, <br /> but not between replicates of the same set. <br /> Sampling Intervals <br /> Samples that contain high concentrations of organic matter or clay will have a large soil oxidant <br /> demand. Typical soil samples that have low organic matter and low or moderate clay <br /> concentrations consume oxidant at a more moderate rate. The permanganate solution in <br /> samples should be analyzed immediately after addition, within several hours, and after 1, 2, 4, <br /> 6, and 10 days. After approximately ten days the consumption rates have stabilized and the <br /> total soil oxidant demand can be estimated from the results. <br /> Samples should be kept in the dark (in the VOA bottle box) <br /> Samples should be shaken/vortexed after each analysis. <br /> 6 <br />
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