CN207596867U - A kind of device that can continuously cultivate microbial flocculant - Google Patents

A kind of device that can continuously cultivate microbial flocculant Download PDF

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CN207596867U
CN207596867U CN201721394640.0U CN201721394640U CN207596867U CN 207596867 U CN207596867 U CN 207596867U CN 201721394640 U CN201721394640 U CN 201721394640U CN 207596867 U CN207596867 U CN 207596867U
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culture tank
pipe
inlet pipe
water inlet
mfr
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林俊岳
曾建忠
刘小兵
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Jinggangshan University
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Jinggangshan University
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Abstract

本实用新型公开了一种可连续培养微生物絮凝剂的装置,包括培养罐本体、控制箱、浊度仪ZS‑720、进水管、冷水管、热水管、温度传感器、浊度仪ZS‑720探头、导热板、电动机和搅拌杆,培养罐本体下部一侧设置有控制箱,培养罐本体中部一侧设置有出液管,进水管一端设置有冷水管和热水管,温度传感器一侧设置有浊度仪ZS‑720探头,培养罐本体内部侧面设置有导热板,电动机下方设置有搅拌杆,本实用新型通过培养罐进行培养,产量较高,利用温度传感器温度,通过控制器MFR‑012控制进水管通入热水和冷水,通过导热板传递热量,便于控温,通过浊度仪ZS‑720探头检测培养液内微生物浓度,调节输入培养液的流速,以达到最佳的培养效果,操作简便,有利于生产。

The utility model discloses a device capable of continuously cultivating microbial flocculants, comprising a culture tank body, a control box, a turbidity meter ZS-720, a water inlet pipe, a cold water pipe, a hot water pipe, a temperature sensor, and a turbidity meter ZS-720 Probe, heat conduction plate, motor and stirring rod, a control box is installed on the lower side of the culture tank body, a liquid outlet pipe is installed on the middle side of the culture tank body, a cold water pipe and a hot water pipe are installed on one end of the water inlet pipe, and a temperature sensor is installed on the side There is a turbidity meter ZS-720 probe, a heat conduction plate is installed on the side of the culture tank body, and a stirring rod is installed under the motor. The utility model is cultivated through the culture tank, and the output is high. The temperature of the temperature sensor is used to control the temperature through the controller MFR-012 Control the water inlet pipe into hot water and cold water, transfer heat through the heat conduction plate, and facilitate temperature control. Use the probe of the turbidimeter ZS-720 to detect the concentration of microorganisms in the culture solution, and adjust the flow rate of the input culture solution to achieve the best cultivation effect. The operation is simple and convenient for production.

Description

一种可连续培养微生物絮凝剂的装置A device capable of continuously cultivating microbial flocculants

技术领域technical field

本实用新型涉及微生物培养技术领域,具体为一种可连续培养微生物絮凝剂的装置。The utility model relates to the technical field of microorganism cultivation, in particular to a device capable of continuously cultivating microorganism flocculants.

背景技术Background technique

微生物絮凝剂是一类由微生物或其分泌物产生的代谢产物,是一种利用微生物技术得到的水处理剂,相对于无机絮凝剂和有机絮凝剂,具有生物分解性和安全性的高效、无毒、无二次污染等优势,微生物絮凝剂通过培养的细菌、真菌等微生物发酵、提取、精制而得,培养微生物是生产微生物絮凝剂必不可少的过程。Microbial flocculant is a kind of metabolite produced by microorganisms or their secretions. It is a kind of water treatment agent obtained by using microbial technology. Toxicity, no secondary pollution and other advantages, microbial flocculants are obtained by fermentation, extraction and refining of cultured bacteria, fungi and other microorganisms, and the cultivation of microorganisms is an essential process for the production of microbial flocculants.

但是目前的微生物絮凝剂培养装置产量较小,微生物生产需合适的温度和培养液浓度,调节不便,操作繁琐,不利于生产。However, the output of the current microbial flocculant culture device is small, and the microbial production needs suitable temperature and culture solution concentration, which is inconvenient to adjust and cumbersome to operate, which is not conducive to production.

发明内容Contents of the invention

本实用新型提供一种可连续培养微生物絮凝剂的装置,可以有效解决上述背景技术中提出的问题。The utility model provides a device capable of continuously cultivating microbial flocculants, which can effectively solve the problems raised in the above-mentioned background technology.

为实现上述目的,本实用新型提供如下技术方案:一种可连续培养微生物絮凝剂的装置,包括培养罐本体、底脚、控制箱、控制器MFR-012、浊度仪ZS-720、出液管、进水管、冷水管、热水管、第一电动阀门、第二电动阀门、温度传感器、浊度仪ZS-720探头、导热板、盖板、输液管、手动阀门、支架、电动机和搅拌杆,所述培养罐本体底面焊接有底脚,所述培养罐本体下部一侧设置有控制箱,所述控制箱内部底面安装有控制器MFR-012,所述控制器MFR-012顶面设置有浊度仪ZS-720,所述培养罐本体中部一侧设置有出液管,且培养罐本体上部一侧设置有进水管,所述进水管一端设置有冷水管和热水管,所述冷水管和热水管两端分别对应设置有第一电动阀门和第二电动阀门,所述培养罐本体内部底面一侧设置有温度传感器,所述温度传感器一侧设置有浊度仪ZS-720探头,所述培养罐本体内部侧面设置有导热板,且培养罐本体顶面设置有盖板,所述盖板顶面一侧贯穿有输液管,所述输液管上部设置有手动阀门,所述盖板上方设置有支架,所述支架上方设置有电动机,所述电动机下方设置有搅拌杆,所述控制器MFR-012和浊度仪ZS-720均与外部电源电性相连,所述浊度仪ZS-720与浊度仪ZS-720探头电性相连,所述温度传感器与控制器MFR-012输入端电性相连,所述第一电动阀门和第二电动阀门均与控制器MFR-012输出端电性相连。In order to achieve the above purpose, the utility model provides the following technical solutions: a device that can continuously cultivate microbial flocculants, including the culture tank body, feet, control box, controller MFR-012, turbidity meter ZS-720, liquid outlet Pipe, water inlet pipe, cold water pipe, hot water pipe, first electric valve, second electric valve, temperature sensor, turbidimeter ZS-720 probe, heat conduction plate, cover plate, infusion pipe, manual valve, bracket, motor and stirring Rod, the bottom surface of the culture tank body is welded with feet, the lower side of the culture tank body is provided with a control box, the inner bottom surface of the control box is installed with a controller MFR-012, and the top surface of the controller MFR-012 is set There is a turbidimeter ZS-720, the middle side of the culture tank body is provided with a liquid outlet pipe, and the upper side of the culture tank body is provided with a water inlet pipe, and one end of the water inlet pipe is provided with a cold water pipe and a hot water pipe. The two ends of the cold water pipe and the hot water pipe are respectively provided with a first electric valve and a second electric valve. A temperature sensor is provided on the inner bottom of the culture tank body, and a turbidimeter ZS-720 is installed on the side of the temperature sensor. Probe, the inner side of the culture tank body is provided with a heat conduction plate, and the top surface of the culture tank body is provided with a cover plate, the top side of the cover plate is penetrated by an infusion tube, and the upper part of the infusion tube is provided with a manual valve. A bracket is arranged above the cover plate, a motor is arranged above the bracket, and a stirring rod is arranged below the motor. Both the controller MFR-012 and the turbidimeter ZS-720 are electrically connected to an external power supply. The turbidity The instrument ZS-720 is electrically connected with the probe of the turbidimeter ZS-720, the temperature sensor is electrically connected with the input end of the controller MFR-012, and the first electric valve and the second electric valve are connected with the controller MFR-012 The output terminals are electrically connected.

优选的,所述控制箱正面设置有观察窗。Preferably, an observation window is provided on the front of the control box.

优选的,所述培养罐本体内部的培养液高度与出液管位于同一水平面。Preferably, the height of the culture solution inside the culture tank body is at the same level as the liquid outlet pipe.

优选的,所述导热板内部设置有进水管,所述进水管为螺旋型,所述培养罐本体下部侧面设置有出水管,出水管与进水管一端相连。Preferably, a water inlet pipe is provided inside the heat conducting plate, and the water inlet pipe is a spiral shape, and a water outlet pipe is provided on the lower side of the culture tank body, and the water outlet pipe is connected to one end of the water inlet pipe.

优选的,所述电动机通过转轴与减速器相连,减速器与搅拌杆相连。Preferably, the motor is connected to a reducer through a rotating shaft, and the reducer is connected to the stirring rod.

与现有技术相比,本实用新型的有益效果:本实用新型结构科学合理,使用安全方便,通过培养罐进行培养,产量较高,利用温度传感器温度,通过控制器MFR-012控制进水管通入热水或者冷水,通过导热板传递热量,改变培养罐本体内部的温度,便于控温,通过浊度仪ZS-720探头检测培养液内微生物浓度,调节输液管输入培养液的速度,以达到最佳的培养效果,操作简单,有利于生产,本设计结构简单,实用性强,可大面积推广使用。Compared with the prior art, the utility model has the beneficial effects: the utility model has a scientific and reasonable structure, is safe and convenient to use, is cultivated through the cultivation tank, and has a high yield, and uses the temperature of the temperature sensor to control the flow of the water inlet pipe through the controller MFR-012. Enter hot water or cold water, transfer heat through the heat conduction plate, change the temperature inside the culture tank body, and facilitate temperature control. Use the probe of the turbidimeter ZS-720 to detect the concentration of microorganisms in the culture solution, and adjust the speed of the infusion tube to enter the culture solution to achieve It has the best cultivation effect, simple operation, and is beneficial to production. The design has simple structure, strong practicability, and can be popularized and used in a large area.

附图说明Description of drawings

附图用来提供对本实用新型的进一步理解,并且构成说明书的一部分,与本实用新型的实施例一起用于解释本实用新型,并不构成对本实用新型的限制。The accompanying drawings are used to provide a further understanding of the utility model, and constitute a part of the description, and are used to explain the utility model together with the embodiments of the utility model, and do not constitute a limitation to the utility model.

在附图中:In the attached picture:

图1是本实用新型的结构示意图;Fig. 1 is the structural representation of the utility model;

图2是本实用新型的控制箱结构示意图;Fig. 2 is the structural representation of the control box of the utility model;

图3是本实用新型的导热板安装结构示意图;Fig. 3 is a schematic diagram of the installation structure of the heat conducting plate of the present invention;

图中标号:1、培养罐本体;2、底脚;3、控制箱;4、控制器MFR-012;5、浊度仪ZS-720;6、出液管;7、进水管;8、冷水管;9、热水管;10、第一电动阀门;11、第二电动阀门;12、温度传感器;13、浊度仪ZS-720探头;14、导热板;15、盖板;16、输液管;17、手动阀门;18、支架;19、电动机;20、搅拌杆。Labels in the figure: 1. Culture tank body; 2. Foot; 3. Control box; 4. Controller MFR-012; 5. Turbidimeter ZS-720; 6. Outlet pipe; 7. Inlet pipe; 8. Cold water pipe; 9. Hot water pipe; 10. First electric valve; 11. Second electric valve; 12. Temperature sensor; 13. Turbidimeter ZS-720 probe; 14. Heat conduction plate; 15. Cover plate; 16. Infusion tube; 17, manual valve; 18, bracket; 19, electric motor; 20, stirring rod.

具体实施方式Detailed ways

以下结合附图对本实用新型的优选实施例进行说明,应当理解,此处所描述的优选实施例仅用于说明和解释本实用新型,并不用于限定本实用新型。The preferred embodiments of the present utility model are described below in conjunction with the accompanying drawings. It should be understood that the preferred embodiments described here are only used to illustrate and explain the present utility model, and are not intended to limit the present utility model.

实施例:如图1-3所示,本实用新型提供一种技术方案,一种可连续培养微生物絮凝剂的装置,包括培养罐本体1、底脚2、控制箱3、控制器MFR-0124、浊度仪ZS-7205、出液管6、进水管7、冷水管8、热水管9、第一电动阀门10、第二电动阀门11、温度传感器12、浊度仪ZS-720探头13、导热板14、盖板15、输液管16、手动阀门17、支架18、电动机19和搅拌杆20,培养罐本体1底面焊接有底脚2,培养罐本体1下部一侧设置有控制箱3,控制箱3内部底面安装有控制器MFR-0124,控制器MFR-0124顶面设置有浊度仪ZS-7205,培养罐本体1中部一侧设置有出液管6,且培养罐本体1上部一侧设置有进水管7,进水管7一端设置有冷水管8和热水管9,冷水管8和热水管9两端分别对应设置有第一电动阀门10和第二电动阀门11,培养罐本体1内部底面一侧设置有温度传感器12,温度传感器12一侧设置有浊度仪ZS-720探头13,培养罐本体1内部侧面设置有导热板14,且培养罐本体1顶面设置有盖板15,盖板15顶面一侧贯穿有输液管16,输液管16上部设置有手动阀门17,盖板15上方设置有支架18,支架18上方设置有电动机19,电动机19下方设置有搅拌杆20,控制器MFR-0124和浊度仪ZS-7205均与外部电源电性相连,浊度仪ZS-7205与浊度仪ZS-720探头13电性相连,温度传感器12与控制器MFR-0124输入端电性相连,第一电动阀门10和第二电动阀门11均与控制器MFR-0124输出端电性相连。Embodiment: As shown in Figure 1-3, the utility model provides a technical solution, a device that can continuously cultivate microbial flocculants, including a culture tank body 1, feet 2, control box 3, and a controller MFR-0124 , Turbidity meter ZS-7205, liquid outlet pipe 6, water inlet pipe 7, cold water pipe 8, hot water pipe 9, first electric valve 10, second electric valve 11, temperature sensor 12, turbidimeter ZS-720 probe 13 , heat conduction plate 14, cover plate 15, infusion tube 16, manual valve 17, bracket 18, motor 19 and stirring rod 20, the bottom surface of the culture tank body 1 is welded with feet 2, and the lower side of the culture tank body 1 is provided with a control box 3 A controller MFR-0124 is installed on the inner bottom of the control box 3, a turbidimeter ZS-7205 is installed on the top of the controller MFR-0124, a liquid outlet pipe 6 is installed on the middle side of the culture tank body 1, and the upper part of the culture tank body 1 One side is provided with a water inlet pipe 7, and one end of the water inlet pipe 7 is provided with a cold water pipe 8 and a hot water pipe 9, and the two ends of the cold water pipe 8 and the hot water pipe 9 are respectively provided with a first electric valve 10 and a second electric valve 11. A temperature sensor 12 is arranged on one side of the inner bottom of the tank body 1, a turbidimeter ZS-720 probe 13 is arranged on one side of the temperature sensor 12, a heat conduction plate 14 is arranged on the inner side of the culture tank body 1, and a Cover plate 15, an infusion tube 16 runs through one side of the top surface of the cover plate 15, a manual valve 17 is arranged on the upper part of the infusion tube 16, a bracket 18 is arranged above the cover plate 15, a motor 19 is arranged above the bracket 18, and a stirring device is arranged below the motor 19 The rod 20, the controller MFR-0124 and the turbidimeter ZS-7205 are all electrically connected to the external power supply, the turbidimeter ZS-7205 is electrically connected to the probe 13 of the turbidimeter ZS-720, and the temperature sensor 12 is connected to the controller MFR- The input end of 0124 is electrically connected, and the first electric valve 10 and the second electric valve 11 are both electrically connected with the output end of the controller MFR-0124.

为了便于观察浊度仪ZS-7205显示的数值,本实施例中,优选的,控制箱3正面设置有观察窗。In order to facilitate the observation of the value displayed by the turbidimeter ZS-7205, in this embodiment, preferably, the front of the control box 3 is provided with an observation window.

为了使输液管16输入培养液的速度与出液管6出液速度相同,本实施例中,优选的,培养罐本体1内部的培养液高度与出液管6位于同一水平面。In order to make the speed of the culture solution input by the infusion tube 16 the same as that of the liquid outlet pipe 6 , in this embodiment, preferably, the height of the culture solution inside the culture tank body 1 is on the same level as the outlet pipe 6 .

为了便于控制温度,本实施例中,优选的,导热板14内部设置有进水管7,进水管7为螺旋型,培养罐本体1下部侧面设置有出水管,出水管与进水管7一端相连。In order to facilitate temperature control, in this embodiment, preferably, a water inlet pipe 7 is arranged inside the heat conducting plate 14, and the water inlet pipe 7 is a spiral shape, and an outlet pipe is arranged on the lower side of the culture tank body 1, and the outlet pipe is connected to one end of the water inlet pipe 7.

为了便于减缓搅拌杆20的转动速度,本实施例中,优选的,电动机19通过转轴与减速器相连,减速器与搅拌杆20相连。In order to slow down the rotation speed of the stirring rod 20 , in this embodiment, preferably, the motor 19 is connected to the reducer through the rotating shaft, and the reducer is connected to the stirring rod 20 .

本实用新型的工作原理及使用流程:本实用新型为一种可连续培养微生物絮凝剂的装置,在培养罐本体1注入培养液,直至培养液与出液管6齐平,浊度仪ZS-720探头13检测微生物浓度,手动调节手动阀门17,使培养液输入时浊度仪ZS-7205显示的浓度接近理论最佳值,此时溢出的培养液从出液管6流出,定时检查浊度仪ZS-7205的数值是否处于最佳值,以便于及时进行调整,温度传感器12检测到内部温度降低时,会发出信息给控制器MFR-0124,控制器MFR-0124接通第二电动阀门11电路,热水由热水管9流入进水管7内,由导热板14传递热量,当温度达到设定值时关闭第二电动阀门11,同理,温度升高时,冷水管8通入冷水,控制温度,操作简单,有利于生产。The working principle and application process of the utility model: the utility model is a device capable of continuously cultivating microbial flocculants. The culture solution is injected into the culture tank body 1 until the culture solution is flush with the outlet pipe 6, and the turbidimeter ZS- The 720 probe 13 detects the concentration of microorganisms, and manually adjusts the manual valve 17 so that the concentration displayed by the turbidimeter ZS-7205 is close to the theoretical optimal value when the culture solution is input. At this time, the overflowed culture solution flows out from the outlet pipe 6, and the turbidity is checked regularly Whether the value of the instrument ZS-7205 is at the optimal value, so as to adjust in time, when the temperature sensor 12 detects that the internal temperature drops, it will send a message to the controller MFR-0124, and the controller MFR-0124 will connect the second electric valve 11 circuit, hot water flows into the water inlet pipe 7 from the hot water pipe 9, and the heat is transferred by the heat conducting plate 14. When the temperature reaches the set value, the second electric valve 11 is closed. Similarly, when the temperature rises, the cold water pipe 8 passes into cold water , temperature control, simple operation, and conducive to production.

最后应说明的是:以上所述仅为本实用新型的优选实例而已,并不用于限制本实用新型,尽管参照前述实施例对本实用新型进行了详细的说明,对于本领域的技术人员来说,其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换。凡在本实用新型的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本实用新型的保护范围之内。Finally, it should be noted that: the above is only a preferred example of the utility model, and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, for those skilled in the art, It is still possible to modify the technical solutions described in the foregoing embodiments, or to perform equivalent replacements for some of the technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present utility model shall be included in the protection scope of the present utility model.

Claims (5)

1. a kind of device that can continuously cultivate microbial flocculant, including culture tank ontology(1), footing(2), control cabinet(3), control Device MFR-012 processed(4), transmissometer ZS-720(5), outlet tube(6), water inlet pipe(7), cold water pipe(8), hot-water line(9), first electricity Movable valve(10), the second electrically operated valve(11), temperature sensor(12), transmissometer ZS-720 probe(13), heat-conducting plate(14), lid Plate(15), woven hose(16), manually-operated gate(17), stent(18), motor(19)And stirring rod(20), it is characterised in that:Institute State culture tank ontology(1)Bottom surface is welded with footing(2), the culture tank ontology(1)Lower part side is provided with control cabinet(3), institute State control cabinet(3)Inner bottom surface is equipped with controller MFR-012(4), the controller MFR-012(4)Top surface is provided with turbidity Instrument ZS-720(5), the culture tank ontology(1)Middle part side is provided with outlet tube(6), and culture tank ontology(1)Top side It is provided with water inlet pipe(7), the water inlet pipe(7)One end is provided with cold water pipe(8)And hot-water line(9), the cold water pipe(8)And heat Water pipe(9)Both ends are correspondingly arranged on the first electrically operated valve respectively(10)With the second electrically operated valve(11), the culture tank ontology(1) Inner bottom surface side is provided with temperature sensor(12), the temperature sensor(12)Side is provided with transmissometer ZS-720 probes (13), the culture tank ontology(1)Inner side is provided with heat-conducting plate(14), and culture tank ontology(1)Top surface is provided with cover board (15), the cover board(15)Top surface side, which is run through, woven hose(16), the woven hose(16)Top is provided with manually-operated gate (17), the cover board(15)Top is provided with stent(18), the stent(18)Top is provided with motor(19), it is described electronic Machine(19)Lower section is provided with stirring rod(20), the controller MFR-012(4)With transmissometer ZS-720(5)And external power supply It is electrical connected, the transmissometer ZS-720(5)It pops one's head in transmissometer ZS-720(13)It is electrical connected, the temperature sensor(12) With controller MFR-012(4)Input terminal is electrical connected, first electrically operated valve(10)With the second electrically operated valve(11)With control Device MFR-012 processed(4)Output terminal is electrical connected.
A kind of 2. device that can continuously cultivate microbial flocculant according to claim 1, which is characterized in that the control Case(3)Front is provided with observation window.
A kind of 3. device that can continuously cultivate microbial flocculant according to claim 1, which is characterized in that the culture Tank ontology(1)Internal culture solution height and outlet tube(6)Positioned at same level.
A kind of 4. device that can continuously cultivate microbial flocculant according to claim 1, which is characterized in that the heat conduction Plate(14)It is internally provided with water inlet pipe(7), the water inlet pipe(7)For screw type, the culture tank ontology(1)Lower side is set There are outlet pipe, outlet pipe and water inlet pipe(7)One end is connected.
5. a kind of device that can continuously cultivate microbial flocculant according to claim 1, which is characterized in that described electronic Machine(19)It is connected by shaft with retarder, retarder and stirring rod(20)It is connected.
CN201721394640.0U 2017-10-26 2017-10-26 A kind of device that can continuously cultivate microbial flocculant Expired - Fee Related CN207596867U (en)

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Granted publication date: 20180710

Termination date: 20181026