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When the potatoes are cooked, they have about 10 times more power generation than before they were cooked, extending the power supply time to days or even weeks.
According to experiments, the easiest and most effective solution is to boil the potatoes for 8 minutes and then stir them into minced pieces. Be.
If you don't add other substances, you don't know, put it in a bottle. It is recommended that the electrode be made of aluminum-copper, preferably aluminum-silver. Electricity.
The pole contact area should be large, and multiple electrodes can be used. It is concluded that the larger the electrode area, the higher the current and voltage, but the longevity.
Life will be less, and the total energy will be certain.
The same applies not only to potatoes, but also to any other acidic fruit. It is acids and electrodes that are consumed. Get.
It's the electricity that comes in. Attention should be paid to preventing electrode curing, oxidation and surface cleaning.
Hair under the metal activity table: potassium, calcium, sodium, magnesium, aluminum, zinc, iron, tin, lead, hydrogen, copper, mercury, silver, platinum, gold. Potassium is the most reactive and gold is the least reactive. The electrodes are selected with a metal before and after hydrogen.
Magnesium has not been used for fear **, sodium ** violently) Aluminum is the best positive grade, copper (silver is too expensive).
is the best negative rating. The reaction consumes only positive grade metal aluminum, and the electrode selects a flat piece to increase the reaction area. Because electrical energy decays over time, a simple circuit is required to charge it.
The working principle of the potato battery is mainly two electrodes, one side is copper, and the other side is aluminum (zinc, iron are fine) provided by potatoes.
The chemical reaction requires an acid, and the metal zinc is chemically more active than copper, when both metals are in the acid at the same time.
zinc loses electrons, and these lost electrons travel along the wire to the copper sheet, forming an electric current.
Potatoes provide the acid needed for the reaction.
This enables the movement of electrons from copper to zinc, which are the poles of the battery from copper and zinc, respectively. Each potato can produce a voltage of about volts, and the current is about milliampere.
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Potatoes can be conductors, but current science can't use them as batteries.
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It's too common to use potatoes as batteries in the lab, try it with Coke.
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Potatoes can be used as batteries, what is the principle of this? Potato power generation is made of electrodes made mainly of potatoes and metal. The working principle of potato batteries mainly requires two metals, one as an anode and a low electrode, such as zinc; The other as a cathode, is the bandPositive chargeelectrodes, such as metallic copper.
When electrons flow from one end to the other, the acid in the potato reacts chemically with zinc and copper.
Chemical properties of zinc metal.
Reactive than copper, zinc loses electrons when both metals are in acid at the same time, and these lost electrons travel along the wire to the copper sheet, forming an electric current.
The working principle of the potato battery mainly requires two pieces of metal, one as the anode, which is the electrode with low potential, such as zinc; The other piece acts as a cathode and is a positively charged electrode, such as metallic copper. The acids inside the potato react chemically with zinc and copper, and when electrons flow from one end to the other, the electrical energy is released. Zinc is chemically more reactive than copper, and when both metals are in acid at the same time, zinc loses electrons, which travel along the wire to the copper sheet to form an electric current.
Legumes are a type of protease that contains a lot of them.
High starch plant! Similar to fruit acids.
The water content of potatoes.
Also high! There is an electrolytic chemical reaction to the inserted metal with different activity! In this reaction an electric current is generated!
This is the reaction phenomenon of the original battery! At this point, the potato acts as an electrolytic medium! It's not just potatoes!
Many fruits and plants with high acids, enzymes, and plants have this effect! The working principle of potato batteries mainly requires two metals, one as an anode, which is a low-potential electrode, such as zinc; The other, as a cathode, is an electrode with a positive charge, such as metallic copper.
Insert the copper electrode and the Tuanhuxiao zinc electrode into the cut potato, connect to the microampere galvanometer, you can see a very weak DC current coming through, at the same time, you can see that one end of the copper electrode will turn green, which is the positive electrode, and the zinc electrode that does not change color is the negative electrode, this is because the potato is a high starch plant that contains a lot of proteases. Similar to fruit acid, potatoes also have a high water content, and there is an electrolytic chemical reaction to insert metals with different activities, and an electric current will be generated in this reaction, which is the galvanic cell reaction phenomenon!
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Technical principle: The working principle of the potato battery mainly requires two pieces of metal, one as the anode, which is an electrode with low potential, such as zinc code; The other piece acts as a cathode and is a positively charged electrode, such as metallic copper.
The acids inside the potatoes react chemically with zinc and szakhai copper, and when electrons flow from one end to the other, the electrical energy is released.
When these two metals are in acid at the same time, zinc loses electrons, and these lost electrons are transmitted along the wire to the copper sheet to form an electric current.
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Because potatoes are good conductors of electricity. Therefore, potatoes can conduct electricity when all conditions are suitable.
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It is because potatoes react with oxygen to be able to conduct electricity. If there is an electric current passing through, it can act as a battery, which is actually a physical and chemical principle. I think it's amazing. Gomonoshin.
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Do you know why it is rumored on the Internet that potato batteries can generate electricityDo you know why, and there are rumors on the Internet that there will be a series of fruit batteries such as potatoes and apple rolling fruits? Because as you know, building an ordinary battery is more expensive than buying a basket of fruits. So they are whimsical, of course, it is made here according to the principle of batteries.
First of all, apple batteries, potato batteries, etc., all contain natural acid, and then the positive and negative electrodes eaten on the roof, inserting a copper sheet and zinc sheet on the potato are equivalent to the positive and negative electrodes of a battery. The next step is to get two wires, one on top of the copper sheet and one on the zinc sheet. The next step is to take those two wires and put them on a small light bulb.
In the end, the small light bulb turned on, and the experiment was successful, that is, the experiment proved that the potatoes contained bioelectricity.
Potato batteries can be transferred, which is now a more energy-efficient way to produce electricity. If the whole world were to use potato batteries, humanity would enter a history of uncontamination. Global warming will stop.
It was originally invented by an Israeli scientist who invented the potato battery celery, mainly to help mankind curb global warming. At that time, the invention of the potato battery also had a purpose, which was to help poor countries and let them do so. Use this energy-saving way to generate electricity to make your life better.
Although the potato battery has been invented, there are still so many countries that have not implemented it, so if it is implemented in the future, it will definitely help people around the world get rid of poverty and become rich.
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A battery pack consisting of potato batteries can be recharged.
It is concluded that the larger the electrode area, the higher the current and voltage, but the life will be less, and the total energy will be certain. The same applies not only to potatoes, but also to any other acidic fruit. It is the acid and the electrode (negative electrode) that are consumed.
What you get is electricity. Attention should be paid to preventing oxidation of the electrode, preventing oxidation and cleaning the surface.
The working principle of the potato battery is mainly two electrodes with copper on one side and zinc on the other (iron, tin are OK) potatoes provide the acid needed for chemical reactions, the chemical properties of metal zinc are more active than copper, when these two metals are in acid at the same time, zinc will lose electrons, and these lost electrons are transmitted along the wire to the copper sheet to form an electric current. The potatoes provide the acid needed for the reaction, which allows the movement of electrons from copper to zinc, which are the poles of the battery from copper and zinc, respectively. Each potato can produce about the voltage and current around.
Attached: Metals in active order, potassium, calcium, sodium, magnesium, aluminum, zinc, iron, tin, lead, (hydrogen) copper, mercury, silver, platinum, gold. Potassium is the most chemically reactive and gold is the most chemically stable.
The electrode selects a reactive type of metal before and after hydrogen. Aluminum is the best negative electrode, and copper (silver is too expensive) is the best positive electrode. The reaction consumes only the negative electrode metal, and the electrode selects a flat piece to increase the reaction area.
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Potatoes contain starch and amylase, which breaks down starch into glucose and water. Glucose is a reducing sugar, which has strong reducing property and can reduce Fe3+, Cu2- and other metal ions, so that electrochemical reactions can occur. Yes, it can be charged.
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Potatoes can be used as biological batteries, pay attention to the wire material should be selected, the voltage is not too large.
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Potatoes can generate electricity, as can all fruits and vegetables that contain acidic ions, such as oranges. Lemons, tomatoes, etc., Israeli researchers are currently working on the development of sustainable use of "potato batteries", hoping that it can bring a sustainable, cheap and environmentally friendly power solution to many countries with insufficient electricity in the world.
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Israeli researchers have announced that they have developed an organic battery that uses boiled potatoes to generate electricity, and Xiangxiang has the characteristics of simple construction and sustainable use. Yissum R&D Co., Ltd. announced that it will launch a pure organic battery based on potato coating. This simple, sustainable and powerful device brings immediate, affordable power solutions to many of the world's most under-powered countries. Be hungry.
Place the potato skins in an airtight container with some straw or other unreusable items; Put some water in the container, cover it with plastic, ferment for 3-5 days, and take out the mixed soil to become fertilizer.
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