Waste mercury recovery and purification device and use method thereof
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A liquid storage and control mechanism technology, which is applied in the field of new waste mercury recovery and purification devices, can solve the problems of no professional organization for door-to-door recovery, complex production process, dangerous transportation, etc., and achieves the effects of light weight, reduced inventory rate, and expanded application scope.
Active Publication Date: 2016-05-18
苏交科集团(江苏)安全科学研究院有限公司
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[0005] 3. Since waste mercury is a hazardous waste, professional companies are required to recycle it. However, for small-batch storage units like laboratories, there is no professional organization to come and recycle them
[0006] 4. Pure mercury is a hazardous chemical, and its production process is complicated, expensive, and dangerous to transport
[0007] 5. It is neither economical nor safe to purchase new pure mercury and clean waste mercury continuously
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Embodiment 1
[0033] like Figure 1-4 As shown, the waste mercury recovery and purification device of the present invention includes a control mechanism 100, a vibrating screen mechanism 200 and a filtering liquid storage mechanism 300;
[0034] The control mechanism 100 includes a striker 101 and a fixed platform 102 arranged at the bottom of the striker 101. The surface of the control mechanism 100 is provided with a switch 103, a liquid crystal display screen 104, a working frequency knob 105, a working time setting knob 106 and an emergency stop in parallel. Switch 107, two integral fixing rods 114 are fixed in parallel at the bottom of the fixed platform 102. The integral fixing rods 114 are connected by the upper fixing clamp 109, the middle fixing clamp 111 and the bottom support rod 113, the upper fixing clamp 109, the middle fixing clamp 113 The fixing clamp 111 , the bottom support rod 113 and the integral fixing rod 114 are respectively fixed by the upper fixing part 108 , the mi...
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Abstract
The invention discloses a waste mercury recovery and purification device and a use method thereof. The waste mercury recovery and purification device comprises a control mechanism, a vibration sieving mechanism and a filtering and solution storage mechanism. According to the invention, waste mercury solution can be purified through combination and adjustment, thus generation of toxic wastes is reduced, the inventory rate of hazardous wastes is decreased, the cost of experimental materials is reduced, and the usage rate of mercury is increased; the traditional purification method is broken through, and an organic solvent and high-temperature operation or low-temperature operation are not required, thus the purification method is expanded; high-strength polytetrafluoroethylene plastic is used, thus the support strength is ensured, and moreover, the high-strength polytetrafluoroethylene plastic is corrosion-resistant, free from reacting with mercury, light in weight, and convenient to move and carry; and in the invention, a physical sieving method is utilized, and has the advantages of being high in safety, high in purification effect, simple in equipment and method, low in cost, convenient to move, convenient to operate, easy to popularize and use, and the like compared with the existing purification technologies of vacuum distillation, acid-base washing, and the like.
Description
technical field [0001] The invention relates to the field of laboratory auxiliary equipment, in particular to a novel waste mercury recovery and purification device and a use method thereof. Background technique [0002] According to GBT21650.1-2008 "Determination of pore size distribution and porosity of solid materials by mercury intrusion method and gas adsorption method - Part 1: mercury intrusion method", the microporous structure is tested by non-wetting medium, in which the experimental mercury is required to be analytically pure, Different types of mercury porosimeters, such as ThermoScientific, Quantachrome and other instruments, use at least 6 grams of mercury per test. In the current laboratory testing process, there are mainly the following problems: [0003] 1. Every time the microporous structure sample is tested, a large amount of waste mercury will be generated, which will bring trouble to the actual detection work; [0004] 2. Every time the user finishes ...
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