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PERMFILE47743
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PERMFILE47743
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Last modified
8/24/2016 10:49:46 PM
Creation date
11/20/2007 1:17:01 PM
Metadata
Fields
Template:
DRMS Permit Index
Permit No
C1982056A
IBM Index Class Name
Permit File
Doc Date
7/27/2007
Section_Exhibit Name
2.05 Operation and Reclamation Plans
Media Type
D
Archive
Yes
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from the 6-Main North substation and will be insulated and heated. The Polo Citrus tanks will be enclosed <br />by a containment system capable of holding in excess of 5,000 gallons. <br />The bulk material component includes construction of a pad, installation of a bulk material hopper, and <br />drilling of a nominal 13-inch borehole from the surface to the underground workings from the shaft pad <br />• above the 6-North Main entries. Drilling of the borehole was covered by the TROS-48 submittal. Details <br />for the concrete pad and bulk storage and transfer facilities will be submitted for review and approval as a <br />Minor Revision, prior to installation. <br />The water component includes construction of a reinforced concrete pad and footers, installation of a water <br />tank and associated pumping installation, and drilling of a nominal 13-inch borehole from the surface to <br />the underground workings from the shaft pad above the 6-North Main entries. Drilling of the borehole was <br />covered by the TROS-48 submittal. TCC proposes to construct a steel water tank 85 feet in diameter and <br />24 feet high designed to hold one million gallons. The tank will rest on a reinforced concrete foundation <br />consisting of aspread-footer, stem wall, and slab floor supported by concrete pilings. Preparation of the <br />tank foundation area will involve grading, compaction, and excavation for the support pilings and spread- <br />footer. Following site prepazation, the reinforced concrete pilings and footers will be formed, and poured, <br />followed by the reinforced concrete pad and stem wall. The steel tank will be fabricated in sections which <br />will be placed and anchored on the stem wall. A water-tight liner system will complete the tank <br />installation. <br />A buried 8-inch HDPE line will connect the tank to the water borehole for both filling from and discharge <br />to the mine water system. Pumps (both underground and at the surface) and control sensors and valuing <br />will allow for controlled flow in either direction in the supply system. Tank fill sensors and a monitored <br />overflow drain will be installed in the tank to prevent overfilling. The overflow drain line will be installed <br />in the same trench as the water supply and return line and will drain back to the mine-water handling <br />system. A small 8 x 8 foot pumphouse, will be constructed next to the tank on a concrete foundation to <br />house pumps and valves. Power and/or control communications will be laid in conduit above the waterline <br />• connecting the tank and the borehole. <br />The locations for the seven boreholes for project utility components are shown on Maps EX16E-MI and <br />M2. As shown on Map 23, additional entries will be driven to the south of the 6 North Main entries to <br />connect with the ventilation shaft. These entries will be needed to maximize the efficiency of the <br />ventilation system. The entries will be driven in the same manner as is used in TCC's development work, <br />• <br />MR07-218 2.05 - 45.6f 07/26/07 <br />
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