Showing posts with label solar gadgets and applications. Show all posts
Showing posts with label solar gadgets and applications. Show all posts

Saturday, April 16, 2022

What is a SolVolt and How to Use It?

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SolVolt solar charger was advertised as the top-selling solar charger in 2001. So, I decided to write a short review about it. The company that made SolVolt says it sold over 50,000 SolVolt solar chargers in 2021.

SolVolt is a small portable solar charger that can charge two devices simultaneously. It is a useful solar gadget when you are outdoor or during emergencies. SolVolt solar charger is your necessary solar power bank when you are traveling. It only requires sunlight to provide enough power for your devices. In any outdoor activity such as camping, hiking, or climbing mountains, you can bring your SolVolt solar charger with you and be sure that it can withstand harsh weather conditions. In addition, this solar charger can charge at least three devices before it being exposed to the sun again and recharge.

There are hundreds, if not thousands of solar chargers on the market today, but what makes SolVolt different is its advanced Solar Photovoltaic Modules, which are the same technology used to power spacecraft and satellites orbiting Earth. This solar technology harnesses the sun’s rays, and you can count on this durable solar power bank anywhere you go. It lets you be off the grid for a long time and still stay connected. If you choose to buy SolVolt solar charger, see its features below.

:: SolVolt solar charger has a10,000 mAh battery capacity. You can charge your devices several times 
:: It has two USB ports and can charge two devices at the same time
:: It is a high speed and long-lasting
:: To charge fully, it takes two hour
:: It has 36 LED high illumination lights that are perfect during the unpredictable power outages or nights
:: Its size is 2.24 inches width and 4.06 inches length
:: It is fully compatible with iOS and Android phones
:: With SolVolt solar charger, you can also charge iPods, tablets, etc.
:: It is compact and lightweight (just 14oz)
:: It is built to withstand rain, snow, and wind
:: Waterproof, shockproof, and dustproof
:: The SolVolt solar charger uses a next-gen solar induction form to charge devices two times faster than many other devices

You can use SolVolt solar charger simply by placing it under the sunlight or plugging it in an electric socket to recharge it. SolVolt comes 70% charged, and the recommendation is to be 100% charged before use. You can bring it on an airplane if you pack it in your carry-on. Also, you can use any USB cord with a SolVolt solar charge.

SolVolt is an affordable power bank, and you can buy it at a discount price. You can order bundle packs for friends and family members and save more money. SolVolt is only available online, and it comes with a 60-day money-back guarantee, so there is no financial loss to try it. 

If you are interested in who owns SolVolt, it is an American company. Below is its address (from the official SolVolt website):

Invative Inc. Address:
10946 Ratner St #1759
Sun Valley CA 91352

And if you decide to give a SolVolt solar charger a try, buy it from its official website: www.solvoltcharger.com.

Sunday, March 27, 2022

10 Solar Power Technology Innovations

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In this post I will list 10 solar power technology innovations.

1. Building Integrated Photovoltaics

Building Integrated Photovoltaics (BIPV) system is the integration of photovoltaics (PV) into the building envelope and part of building components such as roofs, skylights, façades, or windows

The photovoltaic materials are used to replace conventional building materials and convert solar energy into electricity for on-site use or export to the grid. They also have some other functions such as thermal insulation, weather protection (waterproofing, sun protection), noise protection, etc.

BIPV systems are increasingly being incorporated into the construction of new buildings because they have lower overall costs than non-integrated PV systems. BIPV systems avoid the cost of conventional materials so the cost of PV materials is reduced and their life-cycle cost is improved.

:: Solar Windows

Solar windows are a form of Building Integrated Photovoltaics (BIPV). They are windows with built-in solar cells.

Solar windows feature photovoltaic glazing and not only provide a clear view, but also convert sunlight into renewable electricity for the building. Efficiency levels are between 12% and 15%. 

It is also possible to retrofit existing windows by buying a photovoltaic film and applying it to window glass. The film is made from mostly organic materials, such as carbon, nitrogen, hydrogen, and oxygen.

Transparent solar panels are another innovation in the solar technology.

Read about companies that are producing solar energy generating windows: pv-magazine-usa.com/2021/06/22/more-than-a-view-here-are-3-solar-energy-producing-windows/

:: Solar shingles

Another type of Building Integrated Photovoltaics is solar shingles. The solar shingle idea came from DOW Chemical Company, who first unveiled it in 2009.  In October 2016, the company Tesla entered the solar shingle industry in a joint venture with SolarCity. In 2017, Tesla began marketing their solar shingles (Solar Roof tiles).

Solar shingles are solar roofing products that function as mini solar panels and are designed to look like conventional roofing materials. They resemble the size and shape of regular asphalt shingles or roof tiles and blend aesthetically with the roof unlike the bulky solar panels mounted on the roof. 

An integrated, single-piece solar rooftop made using laminated glass is another innovative product that some companies offer.

2. Solar Paint

Solar paint is an innovation in solar energy technology that promises a much cheaper and easier way to use solar energy.

There are a few different types of solar paints that are in development now, and each has its own unique way of producing energy. Most solar paint prototypes contain liquids with photovoltaic properties so that they can capture the sunlight and transform it into electricity.

Currently, the tree solar paints type that has the most potential are:

  • Quantum Dot Solar Cells (Photovoltaic Paint)
  • Perovskite Solar Paint
  • Hydrogen-Producing Solar Paint

A disadvantage of solar paint is its efficiency (3 to 8%), new efficiency record of 13.4% for a quantum dot solar cell is still much behind that of silicon-based solar panels (20 to 25%).

Solar paints are not yet available to consumers, but with further research they may be on the market soon.

3. Solar Gadgets: Portable Solar Battery Charger & Portable Solar Lighting Kit

A portable solar charger and portable solar lighting kit are useful solar gadgets. With a portable solar battery charger you can charge your cell phone, laptop, tablet, iPods, digital cameras, etc., everywhere you want.

A portable solar lighting kit is helpful as an emergency light whenever required. It is also useful as portable light for campers and hitchhikers. Typically, such a kit provides power output in 3 – 10 W and has a rechargeable battery. Read more: economictimes.indiatimes.com/small-biz/productline/power-generation/solar-lighting-kit-extremely-useful-as-emergency-lights-or-portable-lights/articleshow/69198210.cms?utm_source=contentofinterest&utm_medium=text&utm_campaign=cppst

Portable solar power helps people in developing countries who lack access to electricity and those who survived disasters.

4. Solar Transportation

An example of solar transportation is a solar-powered car. In one of my previous posts “5 Partially Solar-Powered Cars You Can Buy”  you can read some interesting information regarding solar cars. There are also solar trainssolar planes, solar yachts, solar bikes, solar scooters, etc.

5. Solar Desalination

Solar desalination is an environment-friendly technique to produce drinking water from the sea using solar energy. There are two common methods – direct (thermal) and indirect (photovoltaic).

The salt from the water is removed via a specially designed still that uses solar energy. The produced heat boils seawater and captures the water vapor, which, is in turn, cooled and condensed into fresh water.

Another solar desalination method is reverse osmosis. It is a pressure-driven process that separates fresh water from other substances via a semi-permeable membrane. It is used in large solar-powered plants. 

Solar desalination could be helpful for millions of people around the world who do not have access to fresh drinking water (coastal community, low-income people, people in developing countries, survivors of various disasters). 

Saudi Arabia meets much of its drinking water needs by desalinationYears ago, the country started to use the power of the sun to produce fresh water. 

Solar-powered desalination plants could supply water in remote desert areas where fresh water isn’t available. 

6. Bifacial Solar Panels

Bifacial solar panels produce electricity from both sides of the panels – front and backside, as they can collect sunlight reflecting from the ground. Thus bifacial solar modules perform best when mounted near reflective surfaces. For example, light-colored roofs, white tiles, swimming pools, desert sand, and much more. Bifacial solar panels are also perfect for homes with limited space due to their ability to generate more power.

Bifacial solar panels aren’t something new. Bifacial solar technology  is dating back to the 1960s and 1970s. but only with the development of Passivated Emitter Rear Cell technology their popularity had increased because it helped increase their efficiency rate (between 20% to 40%).

Currently, the market is dominated by mono facial (traditional) solar modules. Predictions are that by 2029, bifacial solar modules will make up 50% of the market share. Source: solartechadvisor.com/bifacial-solar-panels/

7. Perovskite Solar Cells

Perovskite solar cells are a group of materials with a specific crystal structure, named after the mineral with that structure – calcium titanium oxide (CaTiO3). Any type of material that has the same crystal structure as calcium titanium oxide is considered a perovskite. And this is a group of 10 or more metallic elements that exhibit photovoltaic (PV) properties.

There is an increasing interest in perovskite solar cells because, unlike silicon solar cells, they can be mass-produced through roll-to-roll processing. In addition, they are light, colorful, and can be used in non-traditional settings such as windows and contoured roofs. 

Perovskite solar cells are an interesting area of research among some other new-generation solar power technologies due to their conversion efficiency. In recent years, they have shown a rapid increase in conversion efficiency from below 4% to over 25% today.

Perovskite solar cells are considered the future of solar cells since their specific crystal structure has shown a great potential for high conversion rate and low production costs.

The most recent innovation is pairing two different PV films together  to improve module conversion (tandem solar cells). Placing perovskite solar cells on top of existing silicon PV cells increases light absorption efficiency. These tandem solar cells can capture both short- and long-wavelength light and increase conversion efficiency to almost 44% compared to silicon-only PV cells, whose theoretical efficiency limit is only 30%.  Source: www.hanwha.com/en/news_and_media/stories/sustainability/plugging-into-the-sun-how-hanwha-is-leading-with-innovations-in-solar-energy.html

8. Solar Panels and Agriculture – Agrivoltaics

In recent years, a new technique regarding solar panel installation emerged – installing solar panels on farmlands to produce clean electricity from the sun to help farmers minimize their utility costsFarmers can also sell excess clean electricity to the grid and develop a form of passive income. At the same time, a huge array of crops are growing underneath the solar panels – peppers, tomatoes, beans, carrots, kale, garlic, radishes, lettuce, and more.  

Putting solar panels on farmlands and planting crops underneath is a new scientific field known as agrivoltaics – agriculture plus photovoltaics (“agri-“ relating to food production, “-voltaic” relating to electricity production).

We all know that plants need sunlight, but some need less than others. We can shade those crops and that means they will require less water, which rapidly evaporates in an open field. In addition, plants “sweat” through a process called transpiration, which makes the solar panels overhead cooler and boosts their efficiency.

There is no need agrivoltaics to be limited to the kinds of crops people eat. The farmers might let native grasses grow wild under the panels, providing food for livestock like cattle and sheep, which would also benefit from the shade. Source: www.wired.com/story/growing-crops-under-solar-panels-now-theres-a-bright-idea/

9. Floating Solar Power System

A floating solar power system (also called floating solar, floating photovoltaic) is a term that describes solar panels mounted on platforms that float on top of a water body surface, usually reservoirs or lakes. The clean electricity is sent from this floating solar structure via submarine cables to a transmission tower.

Floating solar is a fresh innovation in solar power technology. The first floating solar power system took place in Aichi Prefecture, Japan, in 2007. The construction combined hydro-engineering with solar PV technologies. Since then, this technology has begun to spread around the world. But Japan remains a world leader in floating solar technologies.

The top four global users of floating solar power are  China, Japan, Korea, and Taiwan.

A floating solar system has a more complicated structure than traditional land-based solar installations. Therefore, it is necessary higher initial capital investment. Floating solar is a new option for renewable energy that complements existing technologies.

Although most floating solar systems are built on calm water, such as reservoirs and lakes, there are also sea-based systems. In 2014, Swimsol  launched the world’s first floating solar power plant for the sea (SolarSea) in the clear blue waters of the Maldives. Source: www.energywatch.com.my/blog/2020/10/11/10-illuminating-facts-about-floating-solar-power/

10. Solar Power Stations in Space

Solar power stations in space or the so-called space-based solar power (SBSP), is an innovative and interesting concept. It means capturing solar power in outer space and distributing it to Earth. Read the post “Solar Power Stations in Space – Science Fiction or a Future Reality?”  to learn more about this concept.

Saturday, March 28, 2020

Mini Solar Tree Charger - a Unique Eco Gift

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SunTree Solar Charger

A mini solar tree charger can be a useful and unique eco gift. We may see it as a mini model of the solar-powered tree charging station about which I wrote in my previous post. 

A mini solar tree charger consists of several small solar panels that resemble leaves on a tree, rechargeable battery, and USB ports. Solar tree charger is an eco-friendly way to charge your mobile phone and tablet in your office or home, using solar energy. It absorbs the sun’s rays and uses solar energy to charge your mobile devices. Even when your phone is not plugged in it will continue to charge the built-in battery ready to transfer the power to your device. 

Here are three models of mini solar tree chargers. You can find on the market only the first and the second one. The third model is looking for investors. 

SunTree - this solar tree charger gives you an awesome way to charge your devices. It is made to look like an actual tree - has a wooden bamboo trunk and branches, and each branch has a small solar panel on the top of it. SunTree has 9 solar panels to charge your mobile devices using PV technology. You can place the SunTree next to a window and it'll charge its internal battery, and in turn, that battery will charge your phone, tablet, and other electronic devices. SunTree is designed by XDDesign, Netherlands. 

Ginkgo Solar Tree - It is made of aluminum, recycled plastic, and bamboo. Ginkgo Solar Tree is a mini solar charging station inspired by the Japanese Ginkgo tree. Gingko solar charger is an environment-friendly source of power. It gets its power from the sun, so it’s green and very easy to use, you just need sunlight. Ginkgo Solar Tree charger aims to make solar energy more approachable and user friendly. Bringing solar energy down to smaller gadgets can help reduce harmful emissions to the atmosphere caused by the growing need to power mobile phones and tablets. Ginkgo Solar Tree can charge your iPhone or iPad up to two times after charging. It has a powerful 4000mAh battery and two USB ports. This product is also designed by XDDesign, Netherlands.

Electree Mini - inspired by bonsai trees, this little solar charger tree collects sunlight to charge your gadgets attractively. Electree Mini is a product of the designer Vivien Muller, who worked together with an electrical engineer to turn his idea for the tree into a reality. This small solar charger has 27 flexible silicon solar panels that can be easily adjusted to harness the maximum amount of sunlight. The device can be used to directly power your gadgets when sunlight is available or use the internal batteries that store solar energy during daylight time. The Electree Mini turns into a miniature light show when the darkness falls. You can also change the color of the LED lantern just by rotating the Electree Mini. The mini solar charger isn’t yet strong enough to charge a tablet, but it can charge your phone or smartwatch once per day.


Tuesday, February 11, 2020

Solar-Powered Backpack

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A solar-powered backpack is one of the recent environment-friendly solar innovations which become more and more popular. It allows the hiker or traveler the opportunity to keep their electronic devices charged anywhere they go using solar energy. 

We live at the age when we are constantly connected to one device or another such as smartphones, MP3 players, tablets, laptops, so the importance of having a source of power with us has never been greater. Here comes a solar-powered backpack. It can harness enough solar energy to keep us connected with the world and it is ideal for people who like to take hiking trips or go camping.

The solar-powered backpack has a small solar panel attached to its outer surface so we can capture the sun’s rays. The interior space includes a storage battery and other components. The solar panel is lightweight, waterproof and can produce up to 10 watts of power. 

Other components of the solar-powered backpack include a flexible mono-crystalline or thin-film solar panels, charge controller, a variety of cell phone adapters and a USB plug for your MP3 player.

With the solar-powered backpack, you can also power a GPS, a travel lamp, a digital camera, a palm pilot, and other rechargeable electronic devices.

The solar-powered backpack has a lithium-ion battery pack inside to store this energy. NASA and the US Army have used copper indium gallium diselenide (CIGS) solar cells for its unbreakable strength and flexibility.

A solar-powered backpack known as REPPS (Rucksack Enhanced Portable Power System), was first used by the US army for communication equipment in 2010 in Afghanistan. The US Air Force had previously used solar panels on shipping containers, developed by Lockheed Martin. And the Marines developed suitcase units of foldable solar panels which can also be carried as a backpack.

A solar-powered backpack can also be used for international aid, disaster relief, and humanitarian relief efforts where power from the utility grid is not available. (read this article)

Several companies are manufacturing solar backpacks and they range in price from $75 to $500.