Egypt has managed to plant trees in the desert using wastewater
al-monitor.com
al-monitor.com
Perhaps they are drip irrigating the entire floor of the artificial forest to minimize evaporative losses? The paper linked in the article [1] doesn't really explain how they are doing this.
EDIT: this article [2] explains the system in a bit more detail. For a sense of the scale of forest vs the wastewater supply, it's a city of 400K people whose wastewater is supporting a .78 square mile "forest". So it's really more like a large park. It's a great demonstration nonetheless, especially if it can be a productive source of food for the city.
1. http://www.fao.org/forestry/35800-094f4eedb0c86a4a33be1a3d90...
2. https://www.intelligentliving.co/egyptian-desert-forest-recy...
Under the current models we send most of the rainfall immediately back into rivers + oceans. By creating inland forests we get mini little "oceans" to evaporate and move water for a 2nd rainfall. Each cycle the plants + ground hold onto a little, but mostly it can be evaporated and re-rained again and again. Deserts have the issue that they have little to hold onto the water, and to reevaporate it for subsequent rainfalls.
The right tarp or net that lets through the most useful wavelengths seems to help more than hurt.
A lot of places are starting to install solar over farm installations on a small scale. Yields are tending up while also generating electricity to run the operation
Or you burn natural gas to produce CO2 (and some water), but then your carbon sequestration goals go up in smoke...
I am not an expert, but based on books and articles I've read[1], forests tend to do that. I think you don't even need a large patch of forest for it to attract rain, anecdotally.
[1] Get an old copy of The Forest and The Sea by Marston Bates, if you can.
"In 1960, he published the ecological science book The Forest and the Sea, an introduction to how ecosystems work. He compares a rain forest and a tropical sea, their similarities and differences, and through it demonstrates how to understand biological systems."
https://en.m.wikipedia.org/wiki/Marston_Bates
Influential book, I believe.
This has come up due to Ethiopia’s Grand Ethiopian Renaissance Dam and the plans being made on how quickly to fill up its reservoir.
I mention this as making forests in the desert is going to end up being a political issue and will likely be used in arguments over water rights in the region, even if its total draw is inconsequential.
Really, how well the forest grows is beside the point. They're doing this to dispose waste water. If they can make a tree crop to offset costs a bit, then great. The "climate change" angle is lipstick on the pig.
If the potential toxins on the crop are the concern, these animals can also then not be for human consumption (directly or indirectly). In a lot of cases they probably can't even produce things for human consumption. There's not a whole lot of use left once you eliminate those use cases.
Also, eating food irrigated with waste sludge is a great way to catch e-coli. Treated waste is aerated and anaerobic pathogens like that largely neutralized, but it could still happen. If a hog is sick/dies, it's not as big a deal as a human.
I take it you've never set foot inside a waste treatment plant either.
More or less (saw it on german TV a few weeks ago) - here ( https://www.planet-wissen.de/video-aegypten--ein-wald-mitten... ), if you jump to 01:55 you'll see the small pipes that distribute the water, but it's a bit more than just "drip irrigation" (at 02:34 it's visible that it's more than just a few drops).
There's an interesting paper [3] about building 40,000 Sorek style plants to sequester excess water in arid areas and avoid problems with sea level rise. Without any savings at scale, this would be around 20 trillion dollars, but that's clearly cheaper than building infrastructure to protect coasts around the world, with the side benefit of creating jobs and food in areas that are in the most need.
I've been working (in the script-writing sense) on a narrative around EarthStations -- molten salt solar towers powering desal plants and green tech manufacturing, surrounded by highly efficient farms, and further out in the ring, forests that eat the desert. Since they are located on coasts, all the infrastructure can be delivered by ships, and all the goods created easily shipped out once they are up and running.
One big technical problem is what to do with the brine -- I'm not sure how much could go into molten salt heat storage. But they could serve as an engine to keep sea levels stable.
This is a longwinded way of saying I think the project in Egypt is a good example of the terraforming we need to be doing instead of dreaming about for a planet like Mars. Even though it is small scale, turning deserts into forests is pretty impressive, and something we need to do learn how to do well to fight climate change.
[1] https://www.scientificamerican.com/article/israel-proves-the...
[2] https://en.globes.co.il/en/article-ide-wins-sorek-2-desalina...
Global Pattern of Microplastics (MPs) in Commercial Food-Grade Salts: Sea Salt as an Indicator of Seawater MP Pollution
Ji-Su Kim, Hee-Jee Lee, Seung-Kyu Kim, and Hyun-Jung Kim Environmental Science & Technology 2018 52 (21), 12819-12828 DOI: 10.1021/acs.est.8b04180
Resolves to:
https://pubs.acs.org/doi/10.1021/acs.est.8b04180
Karami, A., Golieskardi, A., Keong Choo, C. et al. The presence of microplastics in commercial salts from different countries. Sci Rep 7, 46173 (2017). https://doi.org/10.1038/srep46173
Resolves to:
I can actually recommend this, which should not have the micro-plastic issue:
https://www.jqdsalt.com/our-salt/
“Our brine is naturally sourced from an ancient, untouched sea called the Iapetus Ocean (predating the Atlantic) trapped below the Appalachian mountains. Our salt is free of contaminants and heavy metals that may be found in other oceans. Gleaned from the earth by an underground brine aquifer, the salt is then processed naturally using the power of the sun and gentle mountain breezes.”
https://news.mit.edu/2019/brine-desalianation-waste-sodium-h...
You can use the brine to get NaCl but it's not just boiling it up.
Surprised we can't just pipe it deeper and let it disperse slower.
Cant it be dumped back into the ocean at points where it can re-salinate?
As they try to develop out in to the desert, most of the projects have nothing to say about this critical resource. These developments are therefore totally unsustainable as it requires constantly importing water by truck, building enormous infrastructure from the Nile or desalination facilities plus the transport infrastructure. Even then the cost to actually change the soil composition from desert to anything less arid have absurd water costs, to say nothing of what happens when these theoretical cities have to start providing for demands of the expected hundreds of thousands or millions people.
To make matters worse, development around the city continues, and the prime agricultural lands, where water use is most efficient per calorie grown, has all but disappeared.
In Egypt, like so many other places, but especially in Africa, are increasingly vulnerable to compound effects of man-made and climate change crises. Books have been written on the corruption, but the combined effects with climate are truly frightening to contemplate.
Whatever transpires there after the proverbial well runs dry is going to make the January Revolution look like child’s play.
Of course the evaporation might raise the salinity above what they could handle. Perhaps a monthly flush out somehow?
https://www.permaculturenews.org/2009/12/11/greening-the-des...
The video above is a followup (6 years later) to greening a section of the desert in 2003.
Permaculture isn't about "going back in time" its about re-jigging things so that you are not having to put in a tonne of nutrients only to take them out again/let them be blown away.
For example in wide open pastures it can be as "simple" as planting trees for nuts/fruit/lumber widely spaced to cut down on wind. not only that but it cuts down on the need for water because.
This makes up for the reduction in sunlight getting to the grass.
aquaculture is about trade-offs. its about choosing overly high yield now, with ever increasing fertiliser/feed/water inputs (thus higher costs) or reduced yield in the setup phase for much more resilient/comparatively productive and cheaper yields in future.
I'd be willing to do the lab and field work if somebody wants to help build experiments and test theories.
So far I don't see any negatives to where I have applied biochar.
The positives could be anything but my guess is the trial needs to be long term.
Hit me up on YouTube or my contact page on my blog (link in my profile).
YouTube - https://www.youtube.com/c/RussellBallestrini
TL;DR lets test ideas on growing food together, subscribe if you are into this stuff.
Anyway, gave you a sub and liked the video on fresh salsa. Home grown salsa is incomparable to any other.
You could think of charcoal as a "substrate" or "substrata" which living organisms can live on and with in.
My process is a simple fire pit, filling over the period of a couple hours from the bottom up (it's fun you can cook on it too) and at then end once the pit full top you douse the entire thing with water. This is the stereotypical dug in, campfire.
During this process material is placed on-top of the burnt material, which slows it's burn (due to lack of oxygen) and the material will transition to charcoal but not further to ash.
There is very little smoke and the coals stay very hot all throughout the process. Due to the lack of oxygen, the syn gases are instead burned fully instead of going into the atmosphere.
Anyways, I can create a 5 gallon bucket of charcoal in a couple hours.
The next step is charging the charcoal, since it has nearly infinite microscopic holes in the material, it acts as a sponge with immense surface area. The charging process fills the holes slightly with goodies for microbiology to utilize, for example nitrogen.
Eventually the charcoal itself starts to be break down (over tens, hundreds, and potentially thousands of years) and serves as a "battery" to fertilize plants and other higher life forms.
http://www.fao.org/forestry/35800-094f4eedb0c86a4a33be1a3d90...
I really like the idea though, I hope it goes through
China had something similar but results were mixed
The greatest threat facing the natural world is not climate change, it is habitat loss.
How much water needs to be channeled to simply maintain the current size (demand as the current trees grow)? Is there some metrics of water needed per acre?
Wikipedia indicates that the following are from Australasia and South Asia and therefore are non-native and must have extremely limited conservation value in north Africa:
Casuarina equisetifolia, Dalbergia sissoo, Eucalyptus camaldulensis, Eucalyptus citriodora, Terminalia arjuna
The following are Mediterranean or Sub-saharan African:
Cupressus sempervirens, Khaya grandifoliola, Khaya senegalensis, Pinus halepensis
I am very concerned that climate change is creating a generation that does not understand the value of natural habitat with native plant species. Many people nowadays seems to just care about climate change and not about species conservation.
I agree. Boswellia is native to the region. There is a planting project going on in Yemen for specific species but the fighting has complicated the project. A lot is hitting the species and is likely to increase in demand. NYT piece covers some of the challenges its facing: https://www.nytimes.com/2019/07/05/science/frankincense-tree...
I mean it’s certainly interesting but as others have pointed out the desert is a natural ecosystem and it makes a lot more sense to reforest areas of previous growth than doing this. That’s not really my problem with it though.
Surely from a climate change perspective this is really just introducing a fairly large carbon sink that will eventually release the carbon in short order if the irrigation stops or political will blows in a different direction?
We’re way beyond the point of just planting more trees to combat climate change, although we definitely need to do that too, we need a plan to sequester greenhouse gases permanently, and I’m not sure this does that.
[1] https://www.nature.com/scitable/knowledge/library/green-saha...
“Even if humans stop emitting greenhouse gases today, these gases would still be elevated by the year 12000.”
Creating a temporary carbon sink in the form of a desert forest helps in the short term, but is not negative carbon. It’s net carbon neutral.
Genuinely being “green” in this instance requires sequestration of the existing gas from the atmosphere.
This new water filter box will come in handy for ongoing restoration projects in the Galapagos Islands etc where fresh water is unavailable. Will make a post for it when more information becomes available.
Groasis invented the concept in 2003. [0]
[0] https://www.groasis.com/en/products/the-development-of-the-p...
Notice, that it's a playlist with a bunch of these case studies.
The device displayed in the video (the company makes a few different ones) didn't require watering at all, because it collects dew. It's also biodegradable, so there isn't a cleanup cost. They also provide physical protection for the sapplings, which can be important. It seems to add up to very high survival rate in tough environments.
Edit: here's a brochure explaining the technology: https://issuu.com/groasis/docs/brochure_eng_2
[1] https://www.groasis.com/en/planting/what-is-capillary-water-...
Instead of centralized distillation plus transport, you have distributed mini distillers at point of consumption plus transport. This doesn't seem special, what am I missing?
This project is 200 ha
That is 1.4km by 1.4km.
Not a small farm, not a large farm.
If it was real, obviously the Serapium Forest doesn't really exist outside of fantasy. As you can see from the map.