Acceptance test report for the 241-AN-107 caustic addition mixer pump data logger (open access)

Acceptance test report for the 241-AN-107 caustic addition mixer pump data logger

The Acceptance Test Procedure for the 241-AN-107 Caustic Addition Mixer Pump Data logger, WHC-SD-WM-ATP-149, was started on September 25, 1995, and completed November 13, 1995. K.G. Carothers of Tank Waste Remediation Engineering requested the test procedure and ICF Kaiser Control Systems Engineering group wrote the test procedure and executed it at the 305 building in 300 area and at the 241-AN Tank Farm in 200 East area. The purpose of this report is to document that the Caustic addition Mixer Pump Data logger, functioned as intended as installed at 241-AN-107 tank farm.
Date: April 5, 1996
Creator: Dowell, J. L.
Object Type: Report
System: The UNT Digital Library
Demonstration, testing, and evaluation of in situ heating of soil. Final report, Volume 2, Appendices A to E (open access)

Demonstration, testing, and evaluation of in situ heating of soil. Final report, Volume 2, Appendices A to E

This is a final report presented in two volumes. Volume I contains the technical report and Volume II contains appendices with background information and data. In this project approximately 300 cubic yards of clayey soil containing a low concentration plume of volatile organic chemicals was heated in situ by the application of electrical energy. It was shown that as a result of heating the effective permeability of soil to air flow was increased such that in situ soil vapor extraction could be performed. The initial permeability of soil was so low that the soil gas flow rate was immeasurably small even at high vacuum levels. It was demonstrated that the mass flow rate of the volatile organic chemicals was enhanced in the recovered soil gas as a result of heating. When scaled up, this process can be used for the environmental clean up and restoration of DOE sites contaminated with VOC`s and other organic chemicals. Although it may be applied to many types of soil formations, it is particularly attractive for low permeability clayey soil where conventional in situ venting techniques are limited by air flow.
Date: April 5, 1996
Creator: Dev, H.; Enk, J.; Jones, D. & Sabato, W.
Object Type: Report
System: The UNT Digital Library
Demonstration, testing, and evaluation of in situ heating of soil. Volume 1, Final report (open access)

Demonstration, testing, and evaluation of in situ heating of soil. Volume 1, Final report

This document is a final reports in two volumes. Volume I contains the technical report and Volume II contains appendices with background information and data. In this project approximately 300 cubic yards of clayey soil containing a low concentration plume of volatile organic chemicals was heated in situ by the application of electrical energy. It was shown that as a result of heating the effective permeability of soil to air flow was increased such that in situ soil vapor extraction could be performed. The initial permeability of soil was so low that the soil gas flow rate was immeasurably small even at high vacuum levels. It was demonstrated that the mass flow rate of the volatile organic chemicals was enhanced in the recovered soil gas as a result of heating.
Date: April 5, 1996
Creator: Dev, H.; Enk, J.; Jones, D. & Sabato, W.
Object Type: Report
System: The UNT Digital Library
Texas Register, Volume 21, Number 25, Pages 2855-3088, April 5, 1996 (open access)

Texas Register, Volume 21, Number 25, Pages 2855-3088, April 5, 1996

A weekly publication, the Texas Register serves as the journal of state agency rulemaking for Texas. Information published in the Texas Register includes proposed, adopted, withdrawn and emergency rule actions, notices of state agency review of agency rules, governor's appointments, attorney general opinions, and miscellaneous documents such as requests for proposals. After adoption, these rulemaking actions are codified into the Texas Administrative Code.
Date: April 5, 1996
Creator: Texas. Secretary of State.
Object Type: Journal/Magazine/Newsletter
System: The Portal to Texas History