Showing posts with label sustainability. Show all posts
Showing posts with label sustainability. Show all posts

Monday, July 29, 2024

Planet Money, Urban Planning, and the Redistribution of Social Order


No plan survives first contact with the enemy, but we can try. Or we can continue to let the richest 1% of the population make those decisions for us. Either way, it's probably a good idea to keep these things in mind:

Enhancing resilience of urban public transport systems through greater network interconnectedness
Jan 2024, phys.org

Safe-to-Fail urban mobility: Multi-modal public transportation networks integrate different modes of transportation (rail, franchised buses, green minibuses, light rail, ferries and trams) to improve resiliance to failures.

"Our findings suggest that interconnectedness offers a distinct approach to enhancing transportation resilience, beyond simply improving each system in isolation or introducing an entirely new system" 

via City University of Hong Kong: Zizhen Xu et al, Interconnectedness enhances network resilience of multimodal public transportation systems for Safe-to-Fail urban mobility, Nature Communications (2023). DOI: 10.1038/s41467-023-39999-w



Research identifies characteristics of cities that would support young people's mental health
Mar 2024, phys.org

Another example of how consumerism breeds loneliness. Public space makes social capital, whereas private space makes money. When you have to spend money in order to see other people, it's depressing.

They used an initial survey starting in April 2020 to a panel of more than 400 individuals from 53 countries, including 327 young people ages 14 to 25, from a cross-section of fields, including education, advocacy, adolescent health, mental health and substance use, urban planning and development, data and technology, housing, and criminal justice. Then they administered three sequential surveys to panelists beginning in April 2020 that asked panelists to identify elements of urban life that would support mental health for young people.

The findings suggest that creating a mental health-friendly city for young people requires investments across multiple interconnected sectors like transportation, housing, employment, health, and urban planning, with a central focus on social and economic equity.

They also require urban planning policy approaches that commit to systemic and sustained collaboration, without magnifying existing privileges through initiatives like gentrification and developing green spaces at the expense of marginalized communities in need of affordable housing.

via Johns Hopkins Bloomberg School of Public Health’s Department of Mental Health: Collins, P.Y., Sinha, M., Concepcion, T. et al. Making cities mental health friendly for adolescents and young adults. Nature 627, 137–148 (2024). https://doi.org/10.1038/s41586-023-07005-4


Public transit agencies may need to adapt to the rise of remote work, says new study
Apr 2024, phys.org

Something something opportunity 

"Transit agencies need to be very concerned"

"People mostly rely on transit to go to work. On the other hand, many people rely on vehicles for trips other than going to work - shopping, restaurants and leisure activities. Transit agencies could provide more services during the off-peak hours in residential areas to better serve remote workers."

via University of Florida, Massachusetts Institute of Technology and Peking University: Impacts of remote work on vehicle miles traveled and transit ridership in the USA, Nature Cities (2024). DOI: 10.1038/s44284-024-00057-1

Thursday, July 21, 2022

Anthropogenic Metabolic Disorder


While the wheels are finally starting to roll on the apocalypse train, it's gotten harder for fossil fuel businesses to hide behind their multi-generational psychological operations campaign on the people of the civilized world. (Western France is facing a "heat apocalypse", experts have warned, BBC July 2022.)

Yet, just as this is happening, it's also becoming apparent that pretty much every single thing we do, we do it wrong, and we are destroying the planet in the process.

It's hard to know whether the agricultural industrial complex is organized enough to hide their own contributions to climate change behind the fossil fuel industry, or if we really just didn't know, but it's becoming apparent that industrial farming is a larger climate problem than we thought.

Emissions tied to the international trade of agricultural goods are rising
May 2022, phys.org

Earth system scientists at the University of California, Irvine and other institutions have drawn the clearest line yet connecting consumers of agricultural produce in wealthier countries in Asia, Europe and North America with a growth in greenhouse gas emissions in less-developed nations, mostly in the Southern Hemisphere.

Trade in land-use emissions—which come from a combination of agriculture and land-use change—increased from 5.1 gigatons of carbon dioxide equivalent (when factoring in other greenhouse gas emissions such as nitrous oxide and methane) per year in 2004 to 5.8 gigatons in 2017.

Land-use change—including clearing of carbon-absorbing forests to create space for farms and pastures—contributed roughly three-quarters of the amount of greenhouse gases driven by the global trade of agricultural goods between 2004 and 2017.

"Roughly a quarter of all human greenhouse gas emissions are from land use"

via University of California, Irvine: Chaopeng Hong et al, Land-use emissions embodied in international trade, Science (2022). DOI: 10.1126/science.abj1572

Image credit: Mostly unrelated CFD-porn: Yellow areas indicate low velocity wakes that extend downstream of wind turbines, and the algorithm identifies clusters of turbines (represented by colored rectangles) that can be optimized as a group to obtain a gain in power production. Credit: University of Texas at Dallas

Estimates of the carbon cycle—vital to predicting climate change—are incorrect, researchers show
Apr 2022, phys.org

Key parts of the global carbon cycle used to track movement of carbon dioxide in the environment are not correct

"Either the amount of carbon coming out of the atmosphere from the plants is wrong or the amount coming out of the soil is wrong."

When animals eat plants, the carbon moves into the terrestrial ecosystem. It then moves into the soil or to animals. And a large amount of carbon is also exhaled—or respirated—back into the atmosphere.

I don't know what these numbers mean, but I thought I should add them for context: Using the gross primary productivity of carbon dioxide's accepted number of 120 petagrams, the amount of carbon coming out through soil respiration should be in the neighborhood of 65 petagrams. ... but it's about 95 petagrams, meaning the gross primary productivity should be around 147. For scale, the difference between the currently accepted amount of 120 petagrams and this estimate is about three times the global fossil fuel emissions each year.

Why? The first possibility is that the remote sensing approach may be underestimating gross primary production. The other is the upscaling of soil respiration measurements, which could be overestimating the amount of carbon returned to the atmosphere.

via Virginia Tech and Pacific Northwest National Laboratory: Historically inconsistent productivity and respiration fluxes in the global terrestrial carbon cycle, Nature Communications (2022). DOI: 10.1038/s41467-022-29391-5

Post Script:
Australia election: How climate is making Australia more unliveable
May 2022, BBC News

MftF:
Australia is facing an "insurability crisis" with one in 25 homes on track to be effectively uninsurable by 2030, according to a Climate Council report. Another one in 11 are at risk of being underinsured.

Post Apocalypse:
Chinese volunteers live in Lunar Palace 1 closed environment for 370 days
Mar 2021, phys.org

The Lunar Palace 1 biosphere is made up of three modules. Two hold facilities for growing food—the third serves as home for the occupants. Air is supplied by the plants, as is the food. Water was recycled during the experiment. The occupants collected it from condensation on surfaces made for that purpose. Also, urine and feces were used as fertilizer. The volunteers also made a type of bread from mealworms that were fed mushrooms, which were grown on plant waste.

Tuesday, May 3, 2022

Kentucky Fried Consumerism and Cross Cultural Comparisons


KFC is the largest restaurant branch in China. This is a picture of the first KFC to debut in China, right near Tiananmen Square, in 1987. [no source on the image, taken from this site]

KFC faces boycott in China over meal toy promotion
Jan 2022, BBC News

Cultural comparisons -- this statement below, from the China Consumers Association, would sound outright ludicrous if made in the United States:

KFC "used limited-edition blind box sales to induce and condone consumers' irrational and excessive purchase of meal sets, which goes against public order, good customs and the spirit of the law", the state-affiliated CCA said in a statement.

This is literally the main business strategy of every publicly traded business in the United States -- to make people lose their minds (first) and then buy as much crazy and unnecessary shit as they can possible afford (I'm looking at you air fryers). I imagine this kind of admonition would not go over well in this neck of the woods.

Note, however, this outrage is mostly aimed at the waste of food that such panic creates:

The "Clean Plate Campaign" came against the backdrop of growing concerns about food security during the pandemic.

The campaign saw online influencers being banned from binge eating on social media platforms, while restaurant-goers were urged to not order more than they could eat.


Post Script:
KFC in China has its own Wikipedia page here.

Friday, April 8, 2022

Building the Future


Cosmic concrete developed from space dust and astronaut blood
Sep 2021, phys.org

A common protein from blood plasma — human serum albumin — could act as a binder for simulated moon or Mars dust to produce a concrete-like material. The resulting novel material, termed AstroCrete, is a concrete-like material made of extra-terrestrial dust along with the blood, sweat and tears of astronauts. Scientists found that incorporating urea — which is a biological waste product that the body produces and excretes through urine, sweat and tears — could further increase the compressive strength by over 300%.

Note this is not the spit-bricks theorized by the Graphene Center at Manchester, which are related to their Concretene, a concrete-like mixture that uses graphene.

via University of Manchester: Aled D. Roberts et al, Blood, sweat and tears: extraterrestrial regolith biocomposites with in vivo binders, Materials Today Bio (2021). DOI: 10.1016/j.mtbio.2021.100136


Wood

Mandelboxmenger006 by krzysztofmarczak on Deviant Art

Pioneering new process creates versatile moldable wood
Oct 2021, phys.org

After extracting the lignin—a polymer which binds the cell walls inside wood that give it strength—which softens it, and then closing the fibers via evaporation, the research team re-swelled the wood by "shocking" it with water.

"The rapid water-shock process forms a distinct partially open, wrinkled cell wall structure that provides space for compression as well as the ability to support high strain, allowing the material to be easily folded and molded".

"The resulting 3D-Molded Wood is six-times stronger than the starting wood and comparable to widely used lightweight materials like aluminum alloys."

via University of Bristol: Shaoliang Xiao et al, Lightweight, strong, moldable wood via cell wall engineering as a sustainable structural material, Science (2021). DOI: 10.1126/science.abg9556


Researchers make hardened wooden knives that slice through steak
Oct 2021, phys.org

  • Makes wood 23 times harder, and a knife made from the material is nearly three times sharper than a stainless-steel dinner table knife
  • Can produce wooden nails as sharp as conventional steel nails but unaffected by rusting
  • Partially delignification is the first step (get all the lingin out), then heat and pressurize it to get all the water out, making it more dense; last step is to coat it in mineral oil for general protection
  • Made by boiling the wood at 100°C in a bath of chemicals, which could potentially be reused from batch to batch, whereas ceramics requires heating above 1,000°C

via University of Maryland: Teng Li, Hardened Wood as a Renewable Alternative to Steel and Plastic, Matter (2021). DOI: 10.1016/j.matt.2021.09.020


New lignin based material to replace fossil plastics and adhesives
Nov 2021, phys.org

I thought this was interesting because the hardened wood mentioned above removes the lignin and uses only the cellulose. This one is lingin-based. Closing the loop. 

via Stockholm University: Adrian Moreno et al, Catalyst-Free Synthesis of Lignin Vitrimers with Tunable Mechanical Properties: Circular Polymers and Recoverable Adhesives, ACS Applied Materials & Interfaces (2021). DOI: 10.1021/acsami.1c17412


Using fungus feeding on a woody waste product to create living building blocks
Dec 2021, phys.org

They feed wood waste to the fungus Ganoderma, which grows to almost completely fill the shape of its container, and which is still alive when put to use, so that it can be attached to others by "growing together". 

"Functional macro-objects"

via Columbia University, Ecovative Design and MIT: Ross M. McBee et al, Engineering living and regenerative fungal–bacterial biocomposite structures, Nature Materials (2021). DOI: 10.1038/s41563-021-01123-y

Windows

Alef for Fractal Forums - Fractal a Fossil Trilobite - 2018

Scientists invent energy-saving glass that 'self-adapts' to heating and cooling demand
Dec 2021, phys.org

Vanadium dioxide nanoparticles composite, poly(methyl methacrylate) (PMMA), and low-emissivity coating. No electrical components.

During summer, the glass suppresses solar heating (near infrared light), while boosting radiative cooling (long-wave infrared)—a natural phenomenon where heat emits through surfaces towards the cold universe—to cool the room. In the winter, it does the opposite to warm up the room.

via Nanyang Technological University: Shancheng Wang et al, Scalable thermochromic smart windows with passive radiative cooling regulation, Science (2021). DOI: 10.1126/science.abg0291


New research introduces adaptable smart window design that can heat or cool a house
Jan 2022, phys.org

"PCM-based tuneable low-e glass panels"

We don't think about it much I bet, but windows are a huge part of the energy problem. You don't notice it because it's not like it's an open hole in the wall letting all the cold air into your house. You can't exactly feel it, because it's happening at a rate too small for you to detect, but it's there. The air in a room on the other of a window is getting much colder much faster than the air on the other side of an insulated wall. You just can't compare - windows suck at blocking the temperature. The more windows you have and the worse their insulation value (from having less panes or damaged seals), the more energy there is pouring out of that part of your building envelope. Luckily there's a lot of interesting work being done in this area.

Smart windows -- they are tunable, so you can select which part of the sunlight you want to let pass. In the winter it can absorb the infrared, in the summer it can reflect it, and all by simply re-tuning the frequency of the material. Meanwhile, the visible part is unchanged. I imagine these advances in smart envelope science will be an essential part of new "sustainable" design projects from here out. 

via University of Pittsburgh: Nathan Youngblood et al, Reconfigurable Low-Emissivity Optical Coating Using Ultrathin Phase Change Materials, ACS Photonics (2021). DOI: 10.1021/acsphotonics.1c01128

Mandatory Graphene News

Bathing in Reds - Taurus Arts Fractal Forums - 2017

Researchers move closer to controlling two-dimensional graphene
Nov 2021, phys.org

Doped graphene. Doping controls the flow of electricity by injecting electron-adjusting dopants to introduce either negatively charged electrons or positively charged "holes" where electrons used to be. Doping for silicon doesn't work for graphene, but there's a new way to do it:

One promising direction is to alter graphene's electronic and optical properties by changing the pattern of the tungsten oxyselenide, and to imprint electrical circuits directly on the graphene itself. The team is also working to integrate the doped material into novel photonic devices, with potential applications in transparent electronics, telecommunications systems, and quantum computers.

via Columbia University: Min Sup Choi et al, High carrier mobility in graphene doped using a monolayer of tungsten oxyselenide, Nature Electronics (2021). DOI: 10.1038/s41928-021-00657-y


Nanomaterial 'aerographene' used to create extremely powerful pumps
Nov 2021, phys.org

More graphene things:

New method for the generation of controllable electrical explosions, repeatedly heating and cooling the air contained inside to very high temperatures in an extremely short period of time. Theoretically, it only takes 450 grams of this material to lift an elephant. This enables extremely powerful pumps, compressed air applications or sterilizing air filters in miniature.

via Kiel University: Fabian Schütt et al, Electrically powered repeatable air explosions using microtubular graphene assemblies, Materials Today (2021). DOI: 10.1016/j.mattod.2021.03.010


Origami, kirigami inspire mechanical metamaterials designs
Nov 2021,  phys.org

Where there's graphene, there's origami:

"Origami and kirigami are, by nature, mechanical metamaterials, because their properties are mainly determined by how the crease patterns and/or cuts are made and just slightly depend on the material that folds the origami or kiragami," said author Hanqing Jiang.

Nothing is new, no matter how new it sounds -- Two-dimensional materials? Materials that are so thin, only one atom thick, that they behave in ways completely unknown to science, and have made us create a new branch of science just to help us understand them? 

That's what graphene did when it hit the scene in 2004. But it turns out origami and kirigami have been 2-D the whole time!

via American Institute of Physics: "Mechanical metamaterials based on origami and kirigami" Applied Physics Reviews, aip.scitation.org/doi/full/10.1063/5.0051088


The Future - Ubiquitous Intelligence

Sabine62 via Fractal Forums - Roqen's Domain Mashup - 2018

Creating an artificial material that can sense, adapt to its environment
Nov 2021, phys.org

"Developed an artificial material, called a metamaterial, which can respond to its environment, independently make a decision, and perform an action not directed by a human being."

The mechanical design of their new artificial material incorporates three main functions also displayed by materials found in nature—sensing; information processing; and actuation, or movement.

Some examples of these natural materials include the quick reaction of a Venus fly trap's leafy jaws to capture an insect, chameleons changing the color of their skin to blend into their surroundings, and pine cones adjusting their shapes in response to changes in air humidity, Huang said.

The material uses a computer chip to control or manipulate the processing of information that's needed to perform the requested actions, then uses the electrical power to convert that energy into mechanical energy. The researchers' next step is to implement their idea in a real-world environment.

via University of Missouri and University of Chicago: Yangyang Chen et al, Realization of active metamaterials with odd micropolar elasticity, Nature Communications (2021). DOI: 10.1038/s41467-021-26034-z


Post Script:
Sustainable, biodegradable, vegan glitter—from your fruit bowl
Nov 2021, phys.org

Using structural color, and old trick used in biology (like butterfly wings), but new to industrial color technology, this thing uses cellulose nanocrystal films, and can be produced at the industrial scale.

Biodegradable glitter sounds like an oxymoron, but I'll take it.

via University of Cambridge: Silvia Vignolini, Large-scale fabrication of structurally coloured cellulose nanocrystal films and effect pigments, Nature Materials (2021). DOI: 10.1038/s41563-021-01135-8

Thursday, July 15, 2021

Measure This

I studied sustainable design in graduate school. By the end of my courses, before I even graduated, I was already disillusioned. The moment came during my last final exam. I was asked to run a carbon footprint calculator, inputting variables as close as possible to my living conditions, get the verdict on my contribution to the climate apocalypse (I think we were still calling it global warming at that time), and then give a critical opinion on the utility of such a thing as a carbon calculator. 

Image credit: Calculator, Encyclopedia Britannica

The purpose of the carbon calculator is to give you an idea about how "sustainable" your life is, and as a by-product, to give you some insight into how you can reduce your footprint. (And as I have now come to understand, the real reason for such a thing, by our own deception of course, is to deflect and divert the blame and the responsibility for this mess from consolidated corporate entities to private individuals, like me and you.)

They ask you questions about the square footage of your dwelling, number of windows, wall thickness and insulation values, and a million other things. I ran my numbers, got my expected dose of existential guilt, and proceeded to bash the buttons out of this carbon calculator with my recently-acquired knowledge of building performance, environmental control systems, and life cycle assessments of building materials. 

The calculator had good intentions, but I was just finishing a graduate program -- 7 years of studying how buildings use energy -- and I was not impressed.

For one, the calculator was asking the thickness of my walls and the insulation value (these are the number one variable in your energy usage*), but I was living in a basement at the time, so my walls were half buried in the ground, surrounded by the most insulating thing there is -- year-round 55-degree earth. They asked about square footage, but my ceiling was 12 inches lower than usual, because I was in a basement, which makes the volume of the room that needs to be heated/cooled substantially smaller; no metrics for ceiling height in the calculator. But that was just the beginning. They were asking questions about appliances and Energy Star ratings; I didn't even have a full-sized refrigerator, or a freezer, as a single adult, which is unusual to say the least. There was no option for "no freezer".

They never even got into food or food miles; 75% of my food at the time was coming from the bakery in town and the farm a half mile from my house. You eat a lot of food, which takes lots of energy, but the outsized bulk of that energy comes from moving it from the ground where it's grown to your mouth. I'm writing this from the New York metropolitan area; think how far that is from California, and how many miles per gallon, per pound of food you eat from Trader Joe's, and put that in your carbon calculator.

We had chickens; we fed them grain and they gave us eggs (and eventually chicken soup). Because so much of my food did not come from a supermarket, I had little garbage, and whatever garbage I had was composted or recycled; I didn't use the municipal garbage truck for 7 years. That wasn't measured in the calculator either. I rode my bike to get around as much as I could, and when I couldn't, I was driving a Honda Civic, one of the most fuel-efficient vehicles at the time. When I went on vacation, I took the bus instead of an airplane across the country. No vacation plans in the carbon calculator.  

I was into the challenge. I had joined together the nature-worshipping simplicity of Bodhi Thoreau with the science-based carbon accounting of the 21st century environmentalist movement. This wasn't just about buying an Energy Star refrigerator, this was about a way of life. I had rearranged in intricate detail myriad aspects of my life to lower my carbon impact, and yet my score on this calculator was pretty average.

I was pissed. And then I graduated. And then the American housing market collapsed, taking the world's economy with it, so I never did get a job as a sustainable architect. I survived nonetheless, and over the following decade, my unusual, low-impact, transcendental lifestyle changed by shades until I was putting ice cubes in my water (BTU points) and buying furniture from a store and not a garage sale (embodied energy points). I even had to start using an air conditioner because I moved out of the basement, and it got too hot sometimes, because you know, the climate apocalypse. 

I didn't give up on sustainability, but I did come to a realization about the individual approach to saving the planet -- it all evens out, and you're not making much of a difference. I'm not saying what you do has no effect, but I'll bet you don't realize that for just about every energy-saving task you commit yourself to, there's an energy-wasting by-product attached to that task on the other end that you don't even realize is there. You can't escape it; it's physics. The carbon calculator in the front of your mind is balanced by the calorie calculator in the back.


Just like the planet, we have limits too. And although we often ignore those limits, it doesn't make them go away. Keep filling that Solo cup at the backyard bbq, you know what I mean. Everything has to even out in the end. This report from the University of Geneva agrees:

Mental accounting is impacting sustainable behavior
Oct 2020, phys.org

"Human beings tend to create separate mental budget compartments where specific acts of consumption and payments are linked."

Hanging your clothes out to dry means you might be less likely to separate your recycling; your "sustainability budget" has been all used up. You just bought a brand new super-efficient air conditioner, so you're leaving all the windows open in the house, thinking you can afford a bit more waste now, with all that Energy Star bling.

They call it mental accounting in this report, but it's actually your subliminal physiological calorie counter that's running in the background of your front-end carbon calculator. "Being sustainable" takes energy, both mental and physical. Where do you think single-serving silverware came from?

The point here is to take it easy. I mean, the planet it is going to kill us for sure, but you're not going to stop it on your own by becoming a low-impact warrior. An electric car might help, maybe a weekday vegetarian? But to sacrifice your way of life at the altar of sustainability is not going to do what you think it's going to do. Carbon in, carbon out.

*Solar geometry is actually the most important of all, but it's too unlikely that you won't be able to do anything about. If you can, put the long side facing the south, with awnings angled to block the sun in the summer but allow it in the winter, i.e., solar geometry. 
Just the Gulf of Mexico, on fire. July 2021.

Notes:
via University of Geneva: Ulf J. J. Hahnel et al. Mental accounting mechanisms in energy decision-making and behaviour, Nature Energy (2020). DOI: 10.1038/s41560-020-00704-6

Post Script, on equilibrium and sociothermodynamics:
If you change the order of the questions on a survey, respondents will change their answer, BUT when compiling all the answers, they will always cancel out; ALWAYS, an absolute measure that is almost never seen in social science research: Quantum Question Equality, Network Address, 2014.

Mostly unrelated post script:
Lots of people think astrology and astronomy are the same thing: Astronomological, Network Address, 2014.

Monday, January 29, 2018

Earl of Sandwich



Is your sandwich bad for the environment?

Jan 2018, phys.org

According to the British Sandwich Association (BSA) more than 11.5 billion sandwiches are consumed each year in the UK alone.


British Sandwich Association

That's all.

And girls eating sandwiches is a thing, also.

Wednesday, August 23, 2017

The Natural Way

Robots eating robots.

'Cyborg' bacteria deliver green fuel source from sunlight
Aug 2017, BBC news

Scientists have created bacteria covered in tiny semiconductors [solar panels] that generate a potential fuel source from sunlight, carbon dioxide and water.

The so-called "cyborg" bugs produce acetic acid [vinegar], a chemical that can then be turned into fuel and plastic.

After combing through old microbiology literature, researchers realised that some bugs have a natural defence to cadmium, mercury or lead that lets them turn the heavy metal into a sulphide which the bacteria express as a tiny, crystal semiconductor on their surfaces.

Dr Kelsey Sakimoto from Harvard University in Massachusetts, US:
"We grow them and we introduce a small amount of cadmium, and naturally they produce cadmium sulphide crystals which then agglomerate on the outsides of their bodies."

They have an efficiency of around 80%, which is four times the level of commercial solar panels, and more than six times the level of chlorophyll.
-phys.org

POST SCRIPT
The Energetically Autonomous Tactical Robot (EATR) was a project by Robotic Technology Inc. (RTI) and Cyclone Power Technologies Inc. to develop a robotic vehicle that could forage for plant biomass to fuel itself, theoretically operating indefinitely. It was being developed as a concept as part of the DARPA military projects for the United States military. [And so it eats dead bodies too]

Tuesday, August 22, 2017

Off the Grid


Brooklyn's social housing microgrid rewrites relationships with utility companies
Aug 2017, The Guardian

"Microgrids offer something that rooftop solar alone cannot: the ability to leave the grid entirely."

Until the shit goes down.

I am totally into the sentiment here, and I hope this triggers copycats all across the city, and every city. But there is no such thing as an island in the middle of a city; unless of course you're an actual island. After the power went out during Superstorm Sandy, there was not a single hot (powered) outlet in the city that didn't have something plugged into it. There is no way that a community like this, with its off-the-grid resilience, would be spared during an emergency of like proportions. They would be inundated by others trying to charge their phones, and their phone chargers, and their phone charger chargers.

If you want to be able to maintain power in such an emergency where everyone around you does not have it, you're gonna need a lil military to go with that power grid. A security defense system that keeps people out, and maybe even a way to protect the people who live there as they go out into the rest of the city, because people will be pretty pissed that you get power and they don't. This is all part of the glaring hole in prepper mentality - you may be able to prepare for you and your family, but you can't prepare for others. When the shit really goes down, the most dangerous thing you will face is not food shortages but other people.