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In the present case, glass-waste interactions were found to provide a homogeneous foaming, without other additives, and partial crystallization.
Wastes ratios in the mixtures were systematically selected based on Simplex Lattice mixture design, and statistical analyses were performed to elucidate possible synergetic and antagonistic effects of wastes interactions on the kinetics and ultimate methane potentials of wastes co-digestion.
A monitoring system for the injection zone was created; laboratory studies of liquid radioactive waste (LRW) interactions with the host rock were conducted; and mathematical models and software were designed for simulating the LRW behavior and changes in the condition of the injection zone during deep radioactive-waste injection.
In the context of deep geological disposal of high level radioactive wastes, the interactions between iron and clay-rich materials may lead to adverse transformations of clay minerals with a potential loss of confining properties such as swelling and capacity to exchange cations.
A 6-a pressurized unsaturated flow (PUF) test was conducted to investigate waste form waste form interactions that may occur when water penetrates the canisters and contacts the waste forms.
Specifically, the research program addresses four critical areas: (a) SNF dissolution mechanisms and rates; (b) formation and properties of U6+-secondary phases; (c) waste form waste package interactions in the near-field; and (d) integration of in-package chemical and physical processes.
Conceptually, institutions being the rules guiding the conduct of public service provision and routine social interactions, waste collection systems embedded in institutions can only realize their potentials if they fully evolve continuously to reflect evolving social and technical matrices underlying the cultures, organizations, institutions and social conditions they are designed to address.
Bacteria have enormous catabolic potential for remediating wastes; however, the interactions between bacteria and pollutants are complex and suitable remediation does not always take place.
In the deep geological repository of high-level nuclear waste (HLW), the interaction of carbon steel (Fe) overpack container and the back-fill clay mineral, montmorillonite (mont), is an important issue to be clarified in view of the long-term performance of clay mineral as an engineered barrier.
The result is that the trainee's whole world becomes very small — the PI, other people in the research group, and perhaps a few others with whom the trainee can interact without the PI judging the interactions a waste of time.
Here, we show that plastic waste influences predator-prey interactions in aquatic ecosystems by interfering with interspecific chemical communication.
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CEO of Professional Science Editing for Scientists @ prosciediting.com