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SR0080036
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SR0080036
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Last modified
11/8/2019 3:07:19 PM
Creation date
11/8/2019 1:51:43 PM
Metadata
Fields
Template:
EHD - Public
ProgramCode
2600 - Land Use Program
RECORD_ID
SR0080036
PE
2602
STREET_NUMBER
5310
Direction
E
STREET_NAME
LAS POSITAS
STREET_TYPE
CIR
City
STOCKTON
Zip
95212
APN
08663007
ENTERED_DATE
1/2/2019 12:00:00 AM
SITE_LOCATION
5310 E LAS POSITAS CIR
P_LOCATION
99
P_DISTRICT
004
QC Status
Approved
Scanner
TSok
Tags
EHD - Public
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LOGE 1847: Jhamat SS/NLS Addendum Page 6 <br /> March 6, 2019 <br /> Crites and Tchobanoglous (1998) list a typical flow rate of 50 to 70 gallons per person <br /> per day for an individual residence. The San Joaquin County Enviromental Health <br /> Department has indicated that maximum flow and double occupancy within each <br /> bedroom should be considered for the nitrate loading assessment; as a result, a value <br /> of 140 gallons per bedroom per day has been selected (personal communication, <br /> January 6, 2017). <br /> The estimated flow values discussed here should not be used for the design and sizing <br /> of the septic system. The design and sizing of the septic system should utilize the San <br /> Joaquin County Environmental Health Department's On-Site Wastewater Treatment <br /> Systems Standards (2017) which incorporates peak and surge flow factors. The <br /> estimates used in the On-Site Wastewater Treatment Systems Standards may be <br /> greater than those discussed here. <br /> Based on five bedrooms total at 140 gallons per bedroom per day, the maximum <br /> average daily flow for the Site was estimated to be 700 gallons per day (gpd). A typical <br /> residential concentration of 35 mg/L of nitrate as N was selected (Crites and <br /> Tchobanoglous, 1998). <br /> Denitrification Reductions <br /> Denitrification is a process that occurs in the septic system drain field whereby certain <br /> bacteria oxidize the nitrate (NO3) in the waste water and release nitrogen gas (N2) to the <br /> atmosphere. Due to the biologic processes in the shallow soils, nitrogen in the drain <br /> field may undergo a reduction between 10 percent to 35 percent. Soils with higher clay <br /> content, moist soil conditions, high pH, and organic material denitrify by about 35 <br /> percent, and soils with high sand content and fast percolation rates tend to denitrify at a <br /> lower rate of about 10 percent. <br /> A denitrification factor of 25 percent was selected for the Site because of the clayey <br /> sand present at the percolation test location. <br /> Nitrate Loading Estimate <br /> A nitrate loading scenario was employed to determine the impact from the project to <br /> ground water. The scenario utilizes the variables discussed previously, which represent <br /> the estimated conditions and uses associated with this project. The following table <br /> presents a summary of the assumptions for the nitrate loading calculation for the Site, <br /> as presented in Plate 1. <br />
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