Crypto’s journey to going green; the IMPT project

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Since their debut ten years ago, cryptocurrencies like Bitcoin and Ethereum have done significant progress. They have changed from being praised as the Internet’s currencies to becoming volatile digital assets. Initially, all you needed to mine Bitcoin was a laptop, but because to the exponential increase in the amount of power required to produce Bitcoin, this is no longer an option.

Currently, the greatest cryptocurrency in the world, Bitcoin, uses more electricity than Argentina, a country of 45 million people, which uses an estimated 133.64 terawatt-hours yearly. Previously, Ethereum, the world’s second biggest cryptocurrency, had a similarly enormous usage, but that has been remedied recently with the switch to Proof of Stake.

The proof of work (PoW) consensus process is to blame for this enormous demand for electricity

This is a form of mining in which extremely fast computers compete with one another to execute transactions by solving quintillions of numerical guesses per second intricacies. Miners earn fresh coins as payment for this computational service, giving them a financial incentive to keep the machines running.

Many nations have decided to restrict cryptocurrencies outright due to the growing concern about the negative impact that cryptocurrency mining has on the environment. These nations include China, Algeria, Bangladesh, Egypt, Iraq, Morocco, Oman, Qatar, and Tunisia. Russia is the newest nation to outlaw cryptocurrency mining. But firms have also acknowledged the damaging effects that cryptocurrencies have on the environment, not just nations. Due to worries about climate change, Tesla, an electric car manufacturer, stopped accepting Bitcoin for vehicle orders in May 2021, according to a tweet from Elon Musk, the company’s CEO A longtime proponent of cryptocurrencies, Musk’s tweet, at that time, caused Bitcoin to decline by more than 10%.

The good news is that the industry has begun to take a number of measures in this regard after waking up early.  According to Sumit Gosh, CEO of Chingari App,

“Within ten years of the invention of Bitcoin, efforts were made to make the crypto business more environmentally friendly and sustainable. When compared to other industries that have been around for a while, they have not yet developed totally eco-friendly alternatives. Consider the automobile sector. Although internal combustion (IC) engines, which are responsible for excessive carbon emissions, have been around since the 19th century, the vehicle industry has yet to provide a mass-market, scalable, ecologically friendly replacement”

The Crypto Climate Accord was established in 2021 with the goal of decarbonizing the cryptocurrency industry by making it simpler for blockchain initiatives to buy offsets. So far, more than 200 businesses, blockchains, and individuals working in the technology, energy, finance, and cryptocurrency industries have endorsed it. Here are some further projects.

Proof of Stake (PoS)

Some in the business are attempting to create new cryptocurrencies on a different energy system dubbed “proof of stake,” despite the fact that the energy system that powers Bitcoin is currently the one known as “proof of work.” In this regard, Ethereum, the second-largest cryptocurrency, has already switched from a Proof-of-Work (PoW) model to a Proof-of-Stake (PoS) structure.

Anyone who possesses any quantity of cryptocurrencies can use the “proof of stake” method to pledge their tokens as collateral for the advancement of blockchain technology. When a new block is added to the blockchain, the user is compensated with a specific portion of the pledged assets. The’staking’ of cryptocurrency assets refers to this practice. When compared to “Proof-of-Work,” Proof-of-Stake uses very little energy. Just 0.01 percent of the energy needed for mining is used in this operation. Additionally, unlike to the proof of work protocol, which requires specialized processing equipment, proof of stake algorithms can be run from a laptop.

Mining going green

Another option is hybrid consensus models like Solana, which combine Proof-of-History and Proof-of-Stake to let the network to process up to 50,000 transactions per second (tps), compared to the many minutes it takes to validate a single Bitcoin transaction. Additionally, Solana’s average transaction cost is $0.00025, suggesting that it has a huge capacity for growing.

Mining with renewable energy is already in use with energy-efficient consensus algorithms like proof of history (Solana), proof of elapsed time, proof of burn, and proof of capacity, in projects such as Solarcoin and Power Ledger.

Given the way digital currency is set up, it is well known that there is a limitless amount of Bitcoin that can be mined. And as miners rapidly reach that top limit, the amount of energy needed to mine each token will only rise. Therefore, a number of businesses have begun to migrate toward renewable energy sources including hydropower, wind, and solar energy. These companies include those with names like Argo from London, Hive Blockchain from Canada, and Bit Digital and BlockFusion from the United States. Then there is the Houston-based tech company Lancium, which funded $150 million to construct renewable-powered Bitcoin miners around Texas.

Jack Dorsey, co-founder and former CEO of Twitter, also paid attention to the rising issue posed by cryptocurrency mining. For his American financial services company, Dorsey announced a new $5 million investment in Bitcoin mining on June 5 of last year. The same week, President Nayib Bukele of El Salvador gave a directive to state-owned geothermal firms to mine Bitcoin using only clean, renewable, and emission-free geothermal energy. Uzbekistan recently legalized bitcoin mining using solar power. Additionally, it exempted all crypto operations carried out by domestic and international businesses from income tax.

So how much of mining is powered by sustainable energy? According to Michael Saylor, the CEO of the software company MicroStrategy, who founded the Bitcoin Mining Council, a voluntary global community of Bitcoin mining companies, the percentage is 59.5%. However, a recent study on the electricity mix and carbon footprint of the Bitcoin network (entitled Revisiting Bitcoin’s carbon footprint), published in the Elsevier journal Joule on February 25, 2022, finds that the proportion of renewable energy that powers the network is declining, from 41.6% in 2020 to 25.1% in August 2021.

Although renewable energy sources like wind and solar power lower the cost of mining, its limitations stem from the fact that they are an erratic source of energy. Energy use for bitcoin miners is constant. When using wind energy, the amount of electricity produced varies depending on the weather. Blackouts may occur as a result of grid congestion brought on by an excess supply. The difficulty of other renewable energy sources, such as solar energy, to consistently produce enough electricity for nonstop trading throughout the day poses challenges as well. Once activated, a Bitcoin ASIC miner won’t be shut off until it either malfunctions or loses the ability to mine Bitcoin for a profit. Because of this, a grid’s base load requirement is increased by bitcoin miners.

Intel’s new crypto chip

One of the biggest chip manufacturers in the world, Intel, released a new Blockscale ASIC chipset in April of this year to increase the effectiveness of crypto mining carried out via a proof-of-work mechanism. It guarantees Bitcoin miners will receive the same number of bitcoins while using less energy. Contrary to industry practice, Intel will offer its clients just the chip rather than the entire ASIC mining setup. The company also asserts that it will be able to supply these chips in large quantities without endangering the availability of new CPUs or GPUs. Argo Blockchain, Hive, and Block Inc., among others, have signed up to buy the chip.

US becoming the new mining center

In September 2021, China outlawed cryptocurrencies, which caused a huge change in the Bitcoin mining landscape. The US swiftly rose to the top of the list in terms of hashrate and became the world’s largest Bitcoin miner. This was due to a combination of factors, including the availability of renewable energy sources, low energy prices, and legislation that supported cryptocurrencies. In particular, the state of Texas has a lot to offer the miners. Energy prices in the state are among the lowest on earth, which is a big draw for miners who work in a low-margin sector where their sole variable cost is frequently energy. Additionally, the state is home to legislators who are pro-business and crypto-progressive. In the US, West Texas is the epicenter of renewable energy.

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India still lags behind

India is the fourth-largest generator of solar power in the world, and more than a third of its total energy capacity is derived from renewable sources, yet it is still lagging behind in the field of cryptocurrency mining. The central bank and government of India have a love-hate relationship with cryptocurrencies so far. They have openly denounced the asset class in the past, and even momentarily stopped banks from supporting such transactions, while also making suggestions that they would issue their own digital currency.

The Bengaluru-based blockchain technology startup AB Nexus had to stop mining Bitcoin and Ethereum in 2017 when it imposed a ban on the import of ASCI machines made expressly for cryptocurrency mining.

States that rank in the top five states for solar energy generation, such as Rajasthan, Karnataka, Telangana, Tamil Nadu, and Andhra Pradesh, make for excellent prospects for cryptocurrency mining. However, India is wasting this opportunity.
Raj Kapoor, the organization’s founder, claims “The issue of mining’s excessive energy usage can be resolved by making use of the world’s abundant natural resources. But by failing to regulate mining, India has fallen behind and is missing out on significant chances to generate income. A person who mines a cryptocurrency receives a reward that is considered income and is subject to taxation. Worldwide, there are countless thousands of transactions. Even a small portion of such mining would bring in money for India. It will not only affect our revenue and GDP, but it will also promote employment. In that sense, the entire ecosystem will be affected.”

IMPT – The Impact Project

IMPT, The Impact Project, is a brand-new project focused on using blockchain technology to create a more sustainable world and is currently a strong contender for the title of the “greenest” crypto this year.

This blockchain-based ecosystem aims to transform the opaque carbon credit market by incentivizing individuals and companies to reduce CO2 emissions.

IMPT’s primary service is streamlining the process of obtaining and trading carbon credits, which play a fundamental role in the fight against climate change. These carbon credits are essentially contracts that allow the holder to emit a specific amount of CO2 into the atmosphere. Each carbon credit typically relates to one ton of carbon dioxide emissions.

Interestingly, these carbon credits can also be traded, with prices decided based on the laws of supply and demand. Here’s an overview of how this works:

  • Company X and Company Y are allowed to emit 200 tons of carbon dioxide in 2023
  • Company X is estimated only to emit 100 tons, whilst Company Y is trending towards 300 tons
  • Company X can sell 100 carbon credits to Company Y so that the latter can emit 300 tons in total

The ‘net emissions’ remain the same, yet Company Y is still abiding by the prevailing regulation

As noted in IMPT’s whitepaper, the volume of carbon credits required globally is expected to increase at least 20-fold by 2035. This increase in demand necessitates a safe and transparent marketplace that allows individuals and companies to work together for the common good.

This is where IMPT comes in, as its blockchain-based platform helps eradicate the ‘double-selling’ within the carbon credit market. Moreover, IMPT makes it easy for individuals to help the environment by allowing them to acquire carbon credits through their everyday shopping activities.

IMPT raises $220k in the first 24 hours of the presale

The presale for IMPT has commenced, and the project has already managed to successfully sell out $220k. As the presale progresses, the price will steadily rise, meaning that the earliest buyers are the ones who will end with the best deal.

While there was a brief early adopter sale, right now, IMPT is in its first presale phase with IMPT tokens being sold for just $0.018. There are a total of 600,000,000 tokens (3 billion IMPT is the max supply) up for grabs during this round, with a further 660 million to be sold for $0.023 during round two, and another 540 million to be sold during the third and final presale phase for $0.0280.

Earn cash back in IMPT on spending

One of the main incentives for people use IMPT is the fact that they are able to earn cashback on spending.

Every time someone makes a purchase through the platform, they can opt to become part of the solution for high carbon emissions, by earning IMPT tokens in return. Those who earn IMPT can then choose to use the tokens to acquire carbon credits as NFTs.

Over 10,000 brands have agreed to join IMPT.io

One of the main claims that the project makes on their website is how pleased they are to have such a large array of brands on board with their vision. Thus far, according to their website, over 10,000 brands have agreed to join IMPT.io and to work with them in the future as part of their mission to reduce emissions.

 As such, we could see some impressive growth for IMPT upon its release. With IMPT tokens expected to sell for $0.0280 during the phase three presale, we could estimate that IMPT will likely list for between $0.028 to $0.06. This would see early presale investors making a sizable profit immediately and with more growth expected soon after the project is released, we could see prices climb far higher soon after the token becomes available on exchanges around the world.

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Source: https://insidebitcoins.com/news/cryptos-journey-to-going-green