Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor

Product Details
Customization: Available
Type: Reaction Kettle
Material: Glass-Lined
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  • Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor
  • Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor
  • Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor
  • Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor
  • Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor
  • Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor
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Basic Info.

Capacity
>1000L
Pressure
Positive
Heating
Oil Circulation Heating
Heat Transfer Structure
Jacketed
Condition
New
Shaft Seal
Packing Seal or Mechanical Seal
Overseas Service
Support
Overseas Aftersales
Support
Design and Manufacturer License
1, 2 and 3 Level Pressure Vessel License
Technology Support
Video Technology Support
Spare
Always Available
Transport Package
Metal Frame
Origin
China
HS Code
8479820090
Production Capacity
310 Sets Per Year

Product Description

1.0KL 2.0KL Glass lined reactor special for making glyphosate:

What is the glass lined reactor?

Glass lined reactor equipment is made by applying enamel with high silicon content on the metal surface, and enamel burning at 1200°C to make the enamel adhere to the surface of the metal iron tire. Therefore, it has the dual advantages of glass-like chemical stability and metal strength.

Glass-lined reactor equipment is widely used in reactions, evaporation, concentration, synthesis, extraction, polymerization, saponification, mineralization, and chlorine in chemical, pharmaceutical, dye, pesticide, organic synthesis, petroleum, food manufacturing, and defense industries and other industrial production and scientific research. To replace expensive stainless steel and non-ferrous metals. Corrosion resistance: It has strong corrosion resistance to various concentrations of inorganic acids, organic acids, organic solvents and weak alkalis. However, it is not applicable to strong alkalis, hydrofluoric acid and fluoride ion-containing media, and phosphoric acid with a temperature greater than 180°C and a concentration greater than 30%.

How to make glyphosate by the glass lined reactor?

The method for preparing glyphosate includes the following steps:
1) The raw material water, glyphosate, and activated carbon are mixed into a suspension in proportion to the pressure reactor, and the pressure reactor is closed for oxidation reaction, and the glyphosate is quickly oxidized; sampling and analyzing the mass fraction of glyphosate in the reaction solution , When the glyphosate is completely converted, stop the oxygen supply and release the pressure to normal pressure;
2) After the reaction material is heated to 80 ºC ~ 100 ºC, the filter cake I and mother liquor I mainly containing activated carbon are obtained through a microporous filter device;
3) After mother liquor I undergoes continuous multi-effect crystallization, the solids are separated by a microporous filter device to obtain filter cake II and mother liquor II. After filter cake II is dried, glyphosate technical medicine is obtained.

Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor

Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor
Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor
Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor



Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor

Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor



Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor

K type glass lined reactor technical data:
No Nominal capacity(L) Actual capacity(L) Heat exchange  area(m2) Motor
Power
(Kw)
Rotation Speed Main Dimension(mm) h Wight
(kg)
Anchor/
frame
Turbine/Paddle D D1 D2 D3 H H1 H2 H3 H0 Anchor/
frame
Turbine/
Paddle
 
1 K50 70 0.34 0.75 63rpm 85rpm 500 600 720 270 480 300 285 945 2030 50 90 330
2 K100 127 0.84 0.75 600 700 840 270 600 340 320 945 2170 60 110 430
3 K200 247 1.44 1.1 700 800 940 300 780 350 345 953 2440 60 130 530
4 K300 369 1.75 3.0 800 900 1040 350 800 380 380 1154 2770 80 150 595
5 K500 588 2.64 3.0 900 1000 1172 350 1070 480 405 1154 3030 85 160 655
6 K1000 1245 4.5 4.0 1200 1300 1478 400 1270 500 495 1276 3360 110 210 1331
7 k1500 1714 5.2 4 1300 1450 1655 400 1470 600 505 1276 3326 100 210 1623
8 k2000 2160 7.02 4 1300 1450 1655 400 1815 600 505 1276 3671 100 210 1931
9 K3000 3237 8.61 5.5 1600 1750 1960 450 1810 600 595 1316 3791 130 240 2638
10 K4000 4255 11.7 5.5 1600 1750 1960 450 2310 600 595 1316 4291 130 240 3225
11 K4000 4340 10.9 5.5 1750 1900 2152 450 2025 700 643 1316 4046 130 270 3500
12 K5000 5380 13.63 7.5 1600 1750 1960 450 2810 700 580 1316 4791 130 270 3850
13 K5000 5430 13.8 7.5 1750 1900 2152 450 2455 700 643 1316 4508 130 270 4046
14 K6300 6493 15.8 7.5 1750 1900 2152 450 2885 700 643 1395 5027 130 270 4626
15 K8000 8450 18.3 11 2000 2200 2457 510 2785 800 705 1545 5225 150 330 6368
16 K10000 10520 21.15 11 2200 2400 2708 550 3040 800 750 1770 5588 150 360 7655
17 K12500 13040 25.79 15 2200 2400 2708 550 3680 800 750 1770 6730 150 360 9173
                                     

Notes:
1.The enamel layer produced by our company can resist the corrosion of various concentrations of organic acids, inorganic acids, organic solvents and weak bases.
2.This product is not suitable for hydrofluoric acid, fluoride ion-containing medium, strong alkali and concentrated phosphoric acid under specific conditions (concentration ≥30%, temperature ≥180 ºC)
 
Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor




Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor

Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor




Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor
Corrosion Resistance Glyphosate Phosphoric Acid Usage Glass Lined Reactor










 

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