Separation device, separation method and manufacturing method by recycling resin materials
A sorting device and sorting technology, which is applied to the analysis of materials, the use of radiation for material analysis, the use of wave/particle radiation for material analysis, etc., can solve the problems of the average bromine concentration increase, and achieve sufficient bromine content and low bromine content , the effect of reducing the possibility of misjudgment of results
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Embodiment approach 1
[0045] Regarding the "presence or absence" of bromine in the following description, when bromine is contained in a certain proportion or more, it is expressed as bromine, bromine contained; Contains bromine. Below, the main reference figure 1 , figure 2 Details of Embodiment 1 of the present invention will be described.
[0046] figure 1 The sorting device 110 in Embodiment 1 of the present invention shown in figure 2 As also shown in , the measurement unit 100 for determining the presence or absence of bromine, which is a specific element, includes an X-ray source 1 that irradiates continuous X-rays 6 , a first filter 3 and a second filter 4 . It also includes an X-ray image intensifier as a first X-ray detector that detects the intensity of continuous X-rays 6 that are irradiated from the X-ray source 1 and sequentially pass through the first filter 3 and the resin sheet 2 that is the object to be sorted. 15. It also includes an X-ray image intensifier as a second X-...
Embodiment approach 2
[0086] In Embodiment 2 of the present invention, as Figure 11 As shown in the measurement unit 120 in the second embodiment, the first filter 3 and the second filter 4 are arranged on the lower side as the side where X-rays are detected as seen from the conveying device 7, and are irradiated from the X-ray source 1. The continuous X-rays 6 first pass through the resin sheet 2, and then pass through the first filter 3 and the second filter 4. The same effect can also be obtained by exchanging the permeation order of the filter and the resin sheet 2 in this way. In addition, by dividing one X-ray image intensifier 5 into two (for example, the right side and the left side of the drawing) and using one X-ray source 1, the cost of equipment investment can be reduced. The difference from Embodiment 1 of the present invention lies only in the above points.
Embodiment approach 3
[0088] In Embodiment 3 of the present invention, as Figure 12 As shown in the measurement unit 130 in the third embodiment, the motor 8 is attached to the first filter 3 and the second filter 4 so as to be rotatable. That is, the first filter 3 and the second filter 4 are rotationally moved. Thereby, the first filter 3 and the second filter 4 are alternately inserted between the X-ray source 1 and the resin sheet 2 . Therefore, the continuous X-rays 6 passing through the first filter 3 or the continuous X-rays 6 passing through the second filter 4 pass through the resin sheet 2 and can be detected by the X-ray image intensifier 5 . The difference from Embodiment 1 of the present invention lies only in the above points. In addition, the part where the first filter 3 and the second filter 4 are alternately inserted may not be between the X-ray source 1 and the resin sheet 2, but may be arranged between the resin sheet 2 and the X-ray sheet as in Embodiment 2 of the present in...
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