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2030-ஆம் ஆண்டுக்குள் சுமார் 11 மில்லியன் மெட்ரிக் டன் லித்தியம் அயன் பேட்டரி கழிவுகள் நிலப்பரப்பில் கொட்டப்படும் என ஆய்வு புள்ளி விபரங்கள் கணித்துள்ளன.

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00:23I'm going to recycle the battery. Lithium-on and sodium-on batteries are something that we focus on.
00:27As you know, there is a lot of cars and electric vehicles.
00:34It's a big problem.
00:39First of all, it's a problem.
00:45Second thing, we don't need to monetize it.
00:48The battery waste will have lithium-on, cobalt, nickel, copper.
00:53All these are expensive metals.
00:54The expensive metals are required.
00:57You can use batteries or other industries.
01:00There is an industry which is untapped in India.
01:03It's a capitalized industry.
01:04We are supporting a lot.
01:07We support many start-ups and industries to set up this recycling facility.
01:13Even here, we are working with them on recycling.
01:20When we are translating the technology, we are working with them.
01:31Lithium-on batteries are hands-down.
01:35For example, if you have a phone or a car, you have a car.
01:40This is a huge waste that is going to come out.
01:44This is a huge waste that is going to come out.
01:46This is a huge waste that is going to come out.
01:47How effective can we do this?
01:48Now, we have a black powder.
01:53This is called black mass.
01:56This is black mass.
01:58This is black mass.
02:07This is a huge waste.
02:08All of these things are valuable.
02:10So, how much does this need to be used in India?
02:13That's the reason why we are using this research.
02:14We are using this environmental design.
02:20We have a simple process.
02:22This is a simple process.
02:22This is where we are using all of the India.
02:26This is not the valuable elements.
02:28Nickel, very expensive.
02:29Cobalt.
02:30Cobalt is in one country.
02:33Most of it is mine in one country.
02:35Congo.
02:36Most of the refining is controlled by certain players in the world.
02:40It would be very expensive for us.
02:43When we are using this battery,
02:45It is cobalt.
02:46It is when we are using this material.
02:47That is something we are trying to do.
02:49We are trying to establish this process.
02:52Now, we are going to process this 100,000 tons per day.
02:55We are currently running 100,000 tons per day.
03:00What are we doing?
03:01This is the most important thing.
03:09We can extract the expensive elements and supply the industry.
03:14We can create a full battery in India.
03:19So, we have a self-sufficient system.
03:22We have to recycle it properly.
03:25We have to recycle it properly.
03:29Currently, we have 99% of the battery.
03:34We have to buy a dollar.
03:39So, that is a big amount of money going out.
03:41If we can do that in India, we can do that.
03:47If we can do that in India, we can dump the battery waste.
03:55That is not right.
03:56So, there are tons and tons of battery waste.
04:01So, we can solve it properly.
04:02When we solve it properly, we can solve it properly.
04:07Now, if we can do that, we can do it properly.
04:11If we can do it properly, we will do it properly.
04:13If we can do it properly, we will remove it.
04:16If we can do it properly, we will be stuck.
04:18We can use electrolytes for lithium-ion batteries.
04:23We can add lithium-ion batteries, so the electricity.
04:29There is an electrolyte that is called as a liquid.
04:33The liquid is a fuel.
04:36Fuel is a gas or petrol product.
04:40It is one of the products.
04:44So, if you leak that product,
04:47if you dump it or remove it, it will leak it.
04:51Lithium is one of the most reactive.
04:54If we take the battle, it is one of the metals.
04:57So, if you leak the lithium,
05:01if you leak the battery,
05:04it will leak it.
05:07If you leak it, it will leak it.
05:08If you leak the battery,
05:16Look at the scale of destruction.
05:19This is a very easy method.
05:21When you leak it,
05:26we use the hydro-metallology method.
05:29We use the hydro-metallology method.
05:30We use acid,
05:31leach,
05:32and the acid is dissolved.
05:36It will dissolve the battery in the water.
05:39the battery is dissolved.
05:41That is not all the fuel.
05:42You can leak it.
05:43If you leak it.
05:44If you leak it,
05:44you leak it.
05:44You leak it.
05:45You leak it.
05:45Then you leak it.
05:46It is a very easy method.
05:47This is a hydro-metallology method.
05:54There is an electric method.
05:56So, in the two process combinations, companies can adapt easily.
06:02For example, if we start an industry or a company, for example, recycling, this methodology is very easy.
06:10So, that's why we follow this methodology.
06:12Why?
06:13Companies can adapt easily.
06:15When you start a solar system, you start a battery.
06:18When you start a solar system, you start a battery.
06:20When you start a solar system, you start a current.
06:25So, that is not a feasible thing.
06:28So, when we start a solar system, you start a battery storage.
06:32So, in the evening, the battery should power the thing.
06:35So, when you start a solar system, you start to recycle the battery in 5-10 years.
06:40So, when you start a solar system, you start to recycle the infrastructure.
06:44So, I think it's a very important step.
06:47In the industry, I think it's a very important step.
06:50So, we do solar panel research.
06:51Solar panel from e-waste.
06:52E-waste is the motherboard, computer, circuit board, electrical circuit boards.
06:57That's all.
06:58That's all.
06:58That's all.
06:58There's valuable gold.
06:59Copper.
07:00In fact, when you start to mine, even if you start to mine,
07:03even if you start to mine, even if you start to mine,
07:04even if you start to mine, even if you start to mine,
07:04even if you start to use e-waste, it's cheaper.
07:07So, how much cheaper is it?
07:08Because we are a processor.
07:10If you start to do it, it's all burning.
07:13They're all burning it.
07:13It's all burning it.
07:17That's all.
07:18In our labs, we do a very safe new process,
07:24which is very safe.
07:25We are able to extract all these metals,
07:28which we can export,
07:30or companies can adopt,
07:31or start-ups can come up.
07:34We can start to make the start-ups.
07:35We can start to make the start-ups.
07:37We can recycle everything.
07:39We can recycle everything.
07:39All batteries, all e-waste,
07:40can be 100% recycle everything.
07:42And if we can't do it,
07:43we can establish the labs.
07:45Recycle is always an advantage.
07:47Recycle is always an advantage.
07:48upfront capital cost.
07:50We are going to go to the top.
07:52That's all.
07:53It has to be there.
07:55But that,
07:56for a return,
07:58even more than that,
07:59we can go to the top.
08:00So,
08:01upfront cost is always good.
08:02How much is the return?
08:03As long as we can get to the value.
08:05How much is the value?
08:06We can recycle everything.
08:07We need to recycle everything.
08:09The second reason we can recycle is,
08:09we need to do a waste process,
08:12and keep going to go to the store.
08:13No.
08:14We can't recycle everything.
08:16That's the most important thing in recycling.
08:18That's the concept that we're trying to do.
08:21Even if we don't want to recycle any other industry,
08:28we can't do business model.
08:31That's what we're trying to do.
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