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mumbai new dolomite pellet making machine

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Sand Making Machine

Sand Making Machine

Dolomite Powder Fertilizer Granulation Machine with roller granulator 1>Description for chicken manure granulator machine The roller granulator machine is suitable for compound fertilizer,medicine,chemical industry,feeding field etc. The roller granulator can produce all kinds of thick high,a variety of types compound fertilizer (including organic fertilizer, inorganic fertilizer,biological fertilizer, magnetic fertilizers, etc. ) It is especially used for the rare earths,potash,producyion series compound fertilizer granulation

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dolomite granulator, dolomite granulator suppliers and

Main Features 1) Granular strength can be adjusted by adjusting the pressure of roller, control strength of final products. 6) A wide range of raw materials can be used, granular strength can be freely adjusted according to different materials. Quantity: 4 sets of DH850 Brand: FUYI Original: China Dsigned 4 sets of DH850 granulation process program for potassium sulphate plant of russia, and has been put into production

Tongda series of disc fertilizer granulator, is a new type of inclined disc granulation equipment: the granulation rate is up to 95% or more. The main gear of the granulator adopts high frequency quenching and doubles the service life. 5.Do you provide the installation service after ordering your machines9 A:As for the single machine, we provide the users instruction and operation video

2.The design of granulator which greatly reduce the labor intensity and improves labor efficiency. 6.Quick profit,good economic returns The machine has won the users praise after coming into the market. 3. Disc granulator the circular moving disc and the presence of the scrapper arm for scrapping the stuck power

dolomite granulator, dolomite granulator suppliers and

We provide the consumable parts at agent price when you need replacement 5). ,ltd is located in JiNan city,ShanDong province with more than 10 years, Biomass machinery Co. For EXW price, clients need to arrange shipment by themselves or their agents

Our factory is small sized but dedciated in only roller compactor for granulating and briquetting Natural dolomite granules made by hydraulic granulator Limestone granules made by hydraulic granulator Hydrated lime granules made by hydraulic granulator Lime granules made by hydraulic granulator Compaction hydraulic granulator's specs. (mm) Φ240 Φ360 Φ504 Φ600 650 Roller width (mm) 80/120/160 180 300 310 330 Roller speed (r/min) 5-35 3-26 14-20 12-18 10-16 Power of screw feeder (kw) 4 7.5 11 11 15 Pre-pressure of accumulator (Mpa) 5 6 8-10 8-10 10-14 Max. linear pressure (kN/cm) 65 65 70(75) 70(75) 70(75) Thickness of compacted product before crush (mm) 2-6 6-8 10-12 12-14 14-16 Compacting productivity (t/h) 0.8-2 2.5-3 6-8 8-10 10-12 Final output (kg/h) 200-600 1000-1200 2500-3000 3000-3600 3500-4500 Pellet size (mm) 1-5 1-5 1-5 1-5 1-5 Power of flaking machine (kw) 11 30 75 90 110 Installed capacity (kw) 35 50 109 125 165 Dimension (l*w*h) (mm) 1850*1500*1650 2350*2000*2400 3650*2250*2500 3660*2450*2700 4000*2600*3300 Total weight (t) 7-8 10 20-21 25-26 32-33 Delivery time(d) 15 25 30 60 60 The above date is for K2SO4. Compaction hydraulic granulator applications Compaction hydraulic granulator line (model A produces small angular (irregular) granules) Difference of Compaction hydraulic granulator A and B Compaction hydraulic granulator consists of screw feeder (upper taper) and double roller compactor Compaction hydraulic granulator peripheral equipments Granules variable shape Granules and its rollers Compaction hydraulic granulator line are being loaded in one 40ft

fish feed processing line - fish feed pellet making

Proveg Engineering Is The Leading Manufacturer For Floating And Sinking Type Of Fish Feed Making Machines And Plant. The Company Is In This Business Since Last 15 Years And Sucessfully Installed Many Plant In Pan India. The Company Is Continuously Upgrading The Technology As Per The Demands Coming From Markets And Current Trends.Currently Company Is Working From Pune And Mumbai, Hyderabad  To Cater Western And Southern Market And Kota, Guwahati To Cater Easternand Northern Market  

          1.  Main Power- 18.5 KW    2. Output Capacity- 150-200 Kg/hr    3. Dimension 1650(L)*1400(W)1300(H) mm    4. Cutter Power- 1 KW    5.  Heating Power- 1.5 KW     6.  Feeding Motor- 1.5 KW    7. Screw diameter- 70 mm    8.Voltage- 440V, 50Hz    9. Weight- 560 Kg

             1.  Main Power- 15 KW        2. Output Capacity-120-150 Kg/hr      3. Dimension- 1450(L)*1700(W)1100(H) mm     4. Cutter Power- 0.4 KW      5.  Heating Power- 1 KW        6. Feeding Motor- 0.4 KW       7. Screw diameter- 60 mm      8. Voltage- 440V, 50Hz       9. Heating Plate- 1 KW

           1.  Main Power- 5.5 KW     2.  Output Capacity- 50 Kg/hr     3. Dimension 1460(L)*1670(W)900(H) mm     4. Cutter Power- 0.4 KW     5. Heating Power- 1 KW     6. Feeding Motor- 0.4 KW     7. Screw diameter- 40 mm      8. Voltage- 440V, 50Hz

fish feed processing line - fish feed pellet making

             1. Main Power- 15 Hp        2.     Output Capacity- 80-100 Kg/hr        3.     Dimension                   1400(L)*1670(W)900(H) mm        4      Cutter Power- 1 Hp        5.     Heating Power- 1 KW         6.     Feeding Motor- 1 Hp        7.     Screw diameter- 60 mm        8.     Voltage- 440V, 50Hz         9.     Heating Plate- 1 KW

effect of limestone and dolomite flux on the quality of

Owing to the depletion of high-grade iron ore quality, many steel plants over the world are now using pellets after beneficiation of low grade ores as blast furnace feed. For the effective utilization of low-grade iron ore resources (59–62% Fe) with high loss of ignition (LOI), mineralogical characteristics play the vital role to improve the process efficiency. The present work illustrates the effect of limestone and dolomite as flux material in pelletization of an Indian goethetic-hematite iron ore with 59.75% Fe, 4.52% SiO2, 3.84% Al2O3, and 4.85% LOI. As per mineralogical analysis, this ore contains 30.11% goethite and 9.71% kaolinite, which contribute major LOI of the sample. The self-binding properties of the ore ensured the complete elimination of an external binder due to the presence of kaolinite. LOI of the ore indeed affected the quality of indurated pellets by cracking, which might be the reason for the degradation of pellet quality. Concurrently, the same LOI enhanced the pellet quality when suitable fluxes were added. Limestone, dolomite, and their combinations were used as fluxing agent. The effects of CaO and MgO for the improvement of inherent pellet properties were evaluated through the physical, mineralogical, thermal, chemical, and metallurgical properties of the fluxed pellet using different analytical techniques, i.e., Thermogravimetric Analysis (TGA), X-ray diffraction, Stereomicroscopy, Optical Microscopy, Field Emission Scanning Electron Microscopy, and Wavelength Dispersive Microscopy with Electron Microprobe. TGA results indicated the thermal decomposition of goethite, kaolinite, and fluxes at different temperatures. With the addition of dolomite and limestone in the pellet feed material, CCS (Cold Compressive Strength/kg.pellet−1), RI (Reducibility Index/%), RDI (Reduction Degradation Index/%), SI (Swelling Index/%) and porosity could be improved. Due to the loss of mass in flux materials, by increasing the MgO content, it is possible to reduce swelling index and increase the pellet porosity. Simultaneously, the strength of the pellet increases because of slag formation in the form of calcium/magnesium aluminum silicate. The physical and metallurgical properties, i.e., CCS, porosity, SI, RDI, and RI of the fluxed pellets were optimized. At particular ratio of limestone and dolomite, synergistic effect was observed with respect to pellet characteristics

Pallishree Prusti is working as a Senior Scientist in Mineral Processing Department at CSIR-Institute of Minerals and Materials Technology, Bhubaneswar since 2012. She has received her M. Tech from AcSIR, CSIR-IMMT in the area of Material-Resource Engineering and B. Tech in Chemical engineering from IGIT Sarang. Her research interest is in the area of Utilization of Low grade ores, Iron Ore Pelletization, Sintering and Dry processing of coal

effect of limestone and dolomite flux on the quality of

Kashinath Barik is working as a full time Assistant Professor in the Department of Chemical Engineering IGIT Sarang, An Autonomous Institute of Govt. of Odisha since 2014. He has obtained his Master Degree from the Department of Chemical Engineering, IIT Kharagpur. His area of research is focused on Transport Phenomena, Mineral Processing, and Process Modeling and Simulation

Nilima Dash, Scientist has obtained her M.Sc. and M.Phil (Geology) in 2005 and 2006 respectively from Utkal University. She pursued her Doctorate degree at CSIR-IMMT, Bhubaneswar from 2008 and was awarded Ph.D. in 2012 from Utkal University. After completing Ph.D. she joined CSIR-IMMT, Bhubaneswar as DST-Women Scientist in 2013 and in November 2015 joined the same Institute as Scientist “C”. She has 10 years of R&D experience in the field of Mineral characterization and Processing

S.K. Biswal presently working as Chief Scientist and Head of Mineral Processing Dept. at Institute of Minerals and Materials Technology, Bhubaneswar. He has obtained B. Sc. Engg. in Chemical Engineering from REC (at present NIT), Rourkela and M. S. from BITS, Pilani. He was awarded Ph. D. in Chemical Engineering from IIT, Kharagpur in the area of Mineral Processing. He has one-year industrial experience in Chloro-alkali industry as Shift Engineer. He has more than 32 years R&D experience in the field of Mineral Processing and Extractive Metallurgy

effect of limestone and dolomite flux on the quality of

B.C. Meikap has obtained Ph. D. in Chemical Engineering from IIT, Kharagpur. He is presently appointed as Professor, Chemical Engineering Dept. at IIT, Kharagpur. His research area includes, Industrial Environmental Pollution Monitoring & Control, Coal Beneficiation, CO2 Capturing and Fluidization