Nano anion card and preparation method and application thereof
A technology of nano-anion and nano-anion powder, which is applied in the field of nano-anion card and its preparation, can solve the problems of high cost and inconvenient use, and achieve the effects of low cost, sufficient combustion and low use cost
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Embodiment 1
[0030] This embodiment provides a nano-anion card, which includes a carrier and a nano-anion powder layer; the nano-anion powder layer is loaded on the surface of the carrier. Wherein, the carrier is a PVC card, and the components of the nano-anion powder and the weight percentages of each component are shown in Table 1 below.
[0031] The composition of table 1 nano anion powder and the weight percent of each composition
[0032]
[0033]
[0034] Preparation method: firstly, the nano-anion powder is formulated into a nano-anion powder solution, and then the nano-anion powder solution is printed on a carrier by silk screen printing to form a nano-anion powder layer.
[0035] Then, after the nano-anion powder layer is cooled, the carrier printed with the nano-anion powder is punched to prepare a nano-anion card meeting specifications.
[0036] As a specification of the nano negative ion card in this embodiment, its length is 54 mm and its width is 36 mm. It is easy to ...
Embodiment 2
[0038] This embodiment provides a nano-anion card, which includes a carrier and a nano-anion powder layer; the nano-anion powder layer is loaded on the surface of the carrier. Wherein, the carrier is a PVC card, and the components of the nano-anion powder and the weight percentages of each component are shown in Table 2 below.
[0039] The composition of table 2 nano anion powder and the weight percent of each composition
[0040]
[0041]
[0042] Preparation method: firstly, the nano-anion powder is formulated into a nano-anion powder solution, and then the nano-anion powder solution is printed on a carrier by silk screen printing to form a nano-anion powder layer. Among them, the nano-anion powder layer is loaded on the carrier through multiple silk screen printings, and each screen printing needs to wait for the nano-anion powder layer printed in the previous printing to cool before printing the next nano-anion powder layer, so as to avoid the subsequent screen print...
Embodiment 3
[0046] In this embodiment, the amount of negative ions generated by the nano-negative ion card in the above-mentioned embodiment is detected by the existing detection method. Among them, the nano negative ion card can continuously release high-concentration negative ions, and the emission capacity of negative ions is as high as 13000 / cm 3 (The emission capacity of hydroxyl anions under static conditions is ≥3831 pieces / cm 3 ).
[0047] It can be seen that the nano-anion card in the present invention can effectively release and activate negatively charged oxygen molecules, thereby increasing the oxygen intake by 20%, making fuel molecules more atomized, burning more fully, and saving fuel consumption up to 10%- 30%, and can eliminate carbon deposits in the cylinder of the car, reduce emissions, save fuel, and enhance power.
[0048] Therefore, the nano negative ion card can be applied to all gasoline (lead or unleaded) and diesel fuel and gas vehicles.
[0049] At the same tim...
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