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Semicontinuous distillation is a process intensification technique for purification of multicomponent mixtures.
Semicontinuous separation is a distillation based process intensification technique devised for the purification of ternary mixtures to desired purities.
Sono-chemical conversion is a process intensification technique increasingly being applied to several reactions due to its characteristic ability to reduce process time and increase production.
Then, applying the intensification technique of the tabu search allowing to relaunch the search from an elite solution of each cluster autonomously to attain more dominant solutions of the search space.
This efficiency is explained by the flexible selection of the promising parts of the search space by the clustering operator after the genetic algorithm process and by applying the intensification technique of the tabu search allowing to start from an elite solution to attain new more dominant solutions.
The used tabu search algorithm is based on an intensification technique allowing to start the research from an elite solution in a cluster ({rm {CL}}_{i}) (a promising part in the search space) to collect new scheduling sequence minimizing the makespan.
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Many process intensification techniques involve the use of gas compressors.
Suitable exchangers can be selected for enhancement by implementing one or more intensification techniques to increase the whole network energy recovery within very low retrofit cost.
Ample scope is available for the use of process intensification techniques with an objective of making the synthesis economically viable and one such intensification approach is based on the use of sonochemical reactors.
In this paper, simplified microbial growth fundamentals, and elemental mass balances are used to analyze and compare the various aquaculture intensification techniques and, in particular, to compare conventional and heterotrophic techniques to the use of high rate photosynthetic systems.
For an economic production of bio-based chemicals, the use of intensified processes is inevitable and approaches are needed for the various process intensification techniques to identify their applicability to be used for the production of bio-based components.
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