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40results about How to "Increased chance of absorption" patented technology

Titanium dioxide light anode, and preparation method and use thereof

The invention discloses a titanium dioxide light anode, comprising a transparent conductive substrate and a coating film coated on the transparent conductive substrate. The coating film contains titanium dioxide nano particles, wherein a titanium dioxide microsphere layer is also coated on the surface of the coating film. The invention further discloses a method for preparing the titanium dioxide light anode and use thereof. Compared with the prior art, the invention has the advantages that by introducing the titanium dioxide light anode with a double-layer structure, the number of light propagation paths in a titanium dioxide film is increased; the rate that light is absorbed by the titanium dioxide film is increased; the photoelectric conversion efficiency of a cell is advantageous for being improved; the preparation of the titanium dioxide microsphere is simple, environment-friendly and cheap and the profile of the titanium dioxide microsphere is novel; the titanium dioxide microsphere is applicable for being used as a scattering layer and coated on a light anode of a dye-sensitized nanocrystalline solar cell; the titanium dioxide light anode with the double-layer structure is formed; the scattering characteristics of the light anode are improved; and the photoelectric conversion efficiency of the cell is improved.
Owner:NINGBO UNIV

Titanium dioxide light anode, and preparation method and use thereof

The invention discloses a titanium dioxide light anode, comprising a transparent conductive substrate and a coating film coated on the transparent conductive substrate. The coating film contains titanium dioxide nano particles, wherein a titanium dioxide microsphere layer is also coated on the surface of the coating film. The invention further discloses a method for preparing the titanium dioxidelight anode and use thereof. Compared with the prior art, the invention has the advantages that by introducing the titanium dioxide light anode with a double-layer structure, the number of light propagation paths in a titanium dioxide film is increased; the rate that light is absorbed by the titanium dioxide film is increased; the photoelectric conversion efficiency of a cell is advantageous for being improved; the preparation of the titanium dioxide microsphere is simple, environment-friendly and cheap and the profile of the titanium dioxide microsphere is novel; the titanium dioxide microsphere is applicable for being used as a scattering layer and coated on a light anode of a dye-sensitized nanocrystalline solar cell; the titanium dioxide light anode with the double-layer structure is formed; the scattering characteristics of the light anode are improved; and the photoelectric conversion efficiency of the cell is improved.
Owner:NINGBO UNIV

Flue gas pollutant combination removal method based on high-activity solid absorbent

The invention provides a flue gas pollutant combination removal method based on a high-activity solid absorbent. The flue gas pollutant combination removal method comprises: uniformly mixing an oxidant into boil tail flue gas to obtain oxidized flue gas, wherein the NO in the flue gas is oxidized into a high-valence nitrogen oxide, and the zero-valence mercury is oxidized to a high-valence mercuride; making the oxidized flue gas completely contact solid particles, and simultaneously removing the sulfur oxide, the high-valence nitrogen oxide and the high-valence mercuride in the flue gas so asto obtain pollutant-removed dust-containing flue gas; and carrying out dust removing on the dust-containing flue gas to obtain clean flue gas, wherein the solid particles collected from the bottom portion of a dust removing device are fed into a material storage bin, the partial solid particles are activated and humidified, the activated and humidified solid particles returns to the reactor so asto continuously participate in the reaction, and the remaining solid particles are discharged from the bottom portion of the material storage bin so as to maintain the material balance. According to the present invention, the semi-dry absorption method is used, wherein the calcium-based absorbent is sprayed into the reactor in the form of the humidified solid particles, such that the water consumption is low, the final product is the solid-state product, the treatment of the wastewater is not required, the process is simple, and the method can be widely used in the industrial flue gas treatment.
Owner:CHINA COAL RES INST CCRI ENERGY SAVING TECH CO LTD

Combined flue gas pollutant removal system based on high active solid absorbent

The invention discloses a combined flue gas pollutant removal system based on a high active solid absorbent. The combined flue gas pollutant removal system includes an oxidation reaction flue, a desulfurization denitrification demercuration reactor, a dust removal unit and a spent absorbent storage, activation and humidification unit; an ozone spraying module is disposed in the oxidation reactionflue; the outlet of the oxidation reaction flue is connected with the inlet of the desulfurization denitrification demercuration reactor; the outlet of the desulfurization denitrification demercuration reactor is connected with the dust removal unit; the flue gas outlet of the dust removal unit is in turn connected to an induced draft fan and a chimney; and the outlet of a dust falling outlet of the dust removal unit is connected with the spent absorbent storage, activation and humidification unit. When the system is used to remove pollutants, a semi-dry absorption method is adopted, the waterconsumption is small, the final product is solid, no treatment of waste water is required, and the process is simple. Therefore, the combined flue gas pollutant removal system can be widely used in industrial flue gas treatment processes.
Owner:CHINA COAL RES INST CCRI ENERGY SAVING TECH CO LTD

Manufacturing method of heterojunction cell , heterojunction cell and solar cell module

The invention belongs to the technical field of solar cells, and particularly relates to a manufacturing method of a heterojunction cell, the heterojunction cell and a solar cell module. The manufacturing method comprises the following steps: sequentially depositing intrinsic amorphous silicon and doped amorphous silicon on the front and back surfaces of a silicon wafer to form a semi-finished product cell; depositing a front conductive film on the front surface of the semi-finished battery, and depositing a composite laminated back conductive film of TCO1, Mx and TCO2 on the back surface of the semi-finished battery; and respectively manufacturing metal electrodes on the positive conductive film and the composite laminated back conductive film. The ultrathin metal layer is introduced into the composite laminated back conductive film, the conductive performance of the back film is greatly improved, meanwhile, due to the plasma enhancement effect, the internal reflection of long-wavelength transmission light is improved, the absorption probability of the long-wavelength transmission light in a silicon wafer is increased, and more light current is generated; and in addition, due to insertion of the ultrathin metal layer, the conductivity of the back film can be greatly improved, and only a welding main grid is reserved in a back pattern, so that the consumption of back silver paste is greatly reduced, and the production cost is reduced.
Owner:ZHEJIANG AIKO SOLAR ENERGY TECH CO LTD +3
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