Company Filing History:
Years Active: 2015-2018
Title: Innovations of Philip M Almond
Introduction
Philip M Almond is a notable inventor based in Martinez, GA (US), recognized for his contributions to the field of nuclear fuel recovery. With a total of four patents to his name, Almond has made significant advancements in processes involving aluminum dissolution.
Latest Patents
Almond's latest patents include a "Process for dissolving aluminum for recovering nuclear fuel." This innovative process describes a method for controlling the dissolution of aluminum in an acid bath, which may contain a metal catalyst to facilitate the dissolution. By adding an iron source to the bath, the rate of dissolution and the amount of gas evolved can be effectively controlled. This process is particularly useful for dissolving aluminum found in spent fuel assemblies to recover nuclear fuel, such as uranium. Another significant patent is the "Method for controlling aluminum dissolution," which outlines a process that allows for the control of aluminum dissolution in an acid bath. This method involves contacting the metal with a cathodic member, which provides anodic protection and can halt the dissolution process without removing the metal from the acid bath. The cathodic member is typically made from a nickel-chromium-based alloy.
Career Highlights
Almond is currently employed at Savannah River Nuclear Solutions, LLC, where he applies his expertise in nuclear fuel recovery and metal dissolution processes. His work has contributed to advancements in the safe handling and processing of nuclear materials.
Collaborations
Some of Almond's notable coworkers include William E Daniel and Tracy S Rudisill, who have collaborated with him on various projects within the nuclear field.
Conclusion
Philip M Almond's innovative work in the field of nuclear fuel recovery showcases his dedication to advancing technology in this critical area. His patents reflect a commitment to improving processes that enhance safety and efficiency in handling nuclear materials.