Showing posts with label recycling. Show all posts
Showing posts with label recycling. Show all posts

October 5, 2020

Extracting gold from computer parts

I hope it goes without saying but, "do not try this at home."

I'd read somewhere that the process of 'mining' gold from electronic waste was - at this point in time - more profitable than actual mining from the ground.

After watching these two videos in which NileRed tried to recover gold from electronic scrap, I'm not sure how I feel about the veracity of that statement.

September 3, 2018

Aluminum recycling - How it works by Norsk Hydro



We have to recycle more.

There are many countries that are far, far better at recycling than is the US, but we (the US) have to get better.

I hadn't thought about the challenge of not just sorting the majority metals (steel from aluminum from copper from etc) but rather sorting the various similar metal alloys out from each other. The use of x-ray spectroscopy to do that is an application that I would never have considered, and the puff of air used to fire away the unacceptable aluminum alloy chips is amazingly fast.

It's amazing to me how technologically advanced the recycling industry is becoming.

August 19, 2016

Coating to make soap pour cleanly out of plastic bottles, reduce waste and frustration



Anything that makes recylcing easier is to be lauded.

In this article from phys.org, Ohio State researchers found a way to spray coat polypropylene and polycarbonate with
a small amount of solvent and ultra-fine silica nanoparticles onto the inside of bottles. Manufacturers already use solvents to change the texture of molded plastics, because they cause the surface of the plastic to soften a little. By mixing the silica and solvent, the researchers were able to soften the surface of the polypropylene just enough that when the plastic re-hardened, the silica would be embedded in the surface. 
The structures are only a few micrometers—millionths of a meter—high, and covered in even smaller branchlike projections. They look like shaggy heart-shaped pillows, but they're hard as glass. 
They don't cover the inside of the bottle completely, either, but instead are planted a few micrometers apart. The main branches of the "y" overhang the plastic surface at an angle less than 90 degrees—steep enough that water, oils and even surfactant can't physically sustain a droplet shape that would fall in between the branches and touch the plastic. 
"You end up with air pockets underneath, and that's what gives you liquid repellency," Brown said.  
Instead of spreading out on the surface, the soap droplets form beads and roll right off.