Automatic sacrifice item incinerator capable of reducing dioxin emission
A technology for incinerators and articles, applied in the field of incinerators, can solve the problems of easily generating dioxins and increasing the load of tail gas treatment, so as to avoid filter failure and safety accidents, reduce emissions, and suppress dioxins The effect produced
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Embodiment 1
[0024] Embodiment 1, an automatic sacrificial object incinerator for reducing dioxin emissions, including an incinerator 1, a quenching chamber 2, a dust removal chamber 3, a catalytic filter chamber 4 and an lye rinser 5, an incinerator 1, and a quenching chamber 2 , dust removal chamber 3, catalytic filter chamber 4 and lye elutriator 5 are arranged in sequence along the horizontal direction, and the quenching chamber 2 is a bucket body with an upper end opening, so as to avoid the increase of the pressure in the quenching chamber 2 after the water in the quenching chamber 2 is vaporized. Water supply is difficult, which affects the cooling efficiency. The quenching chamber 2 is provided with a spiral pipe 6 placed in the quenching chamber 2. The upper end of the spiral pipe 6 is placed above the quenching chamber 2, and the lower part of the spiral pipe 6 is located at the bottom of the quenching chamber 2. The lower end of 6 runs through the quenching chamber 2 and is place...
Embodiment 2
[0025] Embodiment 2, on the basis of embodiment 1, the catalytic filter plate 7 that is positioned at the catalytic filter chamber 4 is installed on the catalytic filter chamber 4, the catalytic filter plate 7 is used for the decomposition of catalyzed dioxin, and the catalytic filter plate 7 faces the catalyst The air inlet of the filter chamber 4 is inclined, thereby increasing the contact area between the flue gas and the catalytic filter plate 7, and improving the catalytic efficiency. The catalytic filter plate 7 separates the inside of the catalytic filter chamber 4 to communicate with the air inlet of the catalytic filter chamber 4 The air inlet part of the air intake part and the exhaust part communicated with the exhaust port of the catalytic filter chamber 4, the catalytic filter chamber 4 is connected with an ultrasonic generator 8 placed in the exhaust part, and the ultrasonic generator 8 is connected with at least one transducer, The transducer is in close contact ...
Embodiment 3
[0026]Embodiment 3, on the basis of Embodiment 1, the dust removal chamber 3 is divided into a dust removal part, a cleaning part and a motor part through a partition, and the dust removal part, the cleaning part and the motor part are arranged in sequence from top to bottom in the vertical direction, and the dust removal part They are respectively connected with the air inlet of the dust removal chamber 3 and the exhaust port of the dust removal chamber 3. The dust removal chamber 3 is provided with two motors 13 located in the motor part. The top wall is placed in the cleaning part. The output shaft of the motor 13 is covered with a base 14 inherently placed in the cleaning part. The base 14 is a bucket with an upward opening. A leading screw 15, the leading screw 15 is coaxial with the corresponding base 14, the upper end of the leading screw 15 is placed in the dust removal part and connected with the dust removal chamber 3 in rotation, the lower end of the leading screw 15...
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