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This post was last edited by goldliyang on 2017-3-23 at 09:33. Through years of work, I have noticed that there are numerous recycling techniques in industrial processes. I intend to write a book on these recycling techniques; however, due to my limited experience, I hope to find chemical engineering professionals with similar interests to collaborate on this project. After all, aside from those in our own field, no one cares whether chemical processes are relevant or not. Here are a few examples of cycle technologies: isobaric drying, wet decarburization, refrigeration, heat pumps, power generation, and so on. So far, I have written a few thousand words of introduction and posted it on Weibo; in the future, I hope to update it on HaiChuan, Weibo, and another platform as well. For contact information, it is recommended to send a private message to Haichuan
The scope of circular technology is a bit too broad
So I can’t complete it with my own abilities. . . I’d like to first see everyone’s suggestions on what technologies are involved, before deciding on how to proceed. . . If one doesn’t push themselves, they won’t learn* nor make progress.
What position do you hold? In terms of cycle technology, it’s better to focus on one area; otherwise, it’s difficult to cover everything
My main areas of expertise include cryogenic processing, drying, wet carbon removal, heat pumps, ORC power generation, as well as the reuse of treated water, sulfuric acid, and exhaust gases.
Iteration is just one method that is used in many areas, similar to iteration in mathematics; how is it possible to describe or cover everything related to it?
In chemical processes, many materials that have not been completely converted are returned to the reactor; is this also considered a form of recycling technology?
This post was last edited by holysong0 on 2017-3-21 at 11:11. My personal view is that recycling is considered valid, as it involves pressure reduction; the recycling process includes steps such as water removal or impurity removal, as well as compression. It also conforms to the principles of the circular economy, namely reduction – that is, less of the useful components are discharged outside. Processes such as backflow of sludge, pump-backflow, and Fenton backflow are also forms of backflow, but they can occur in a single cycle and represent relatively simple applications within circular economy technologies.
Therefore, the technology I’m talking about must also take into account the requirements of a circular economy; in addition to processes such as purification and compression along the production route, a single piece of equipment does not constitute a circular process – it is merely one device. Things such as the reflux line of a tower, the Fenton reflux line, and the pump reflux line can all be collectively referred to as reflux lines; their mechanisms are more or less similar.