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Bio Cng Plant In Indore | FINSEN RITTER

Make the waste pure fuel with our advanced Bio CNG Plant Manufacturers in Indore. FINSEN RITTER one of the largest manufacturers of agricultural machinery and high -quality plants that meet the energy requirements of farmers and agricultural -based industries. We make BIO -CNG high -quality systems that convert organic waste into environmentally friendly compressed natural gas, which helps companies to reduce the costs of protecting the environment. The selection of our products includes livestock manure and different types of plants that can produce renewable energy sources. FINSEN RITTER BIO

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Bio Cng Plant In Indore | FINSEN RITTER

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  1. Methane Concentration Plant Proposal GOBAR-GAS PLANT Initial Proposal for Gobar Gas Plant (Bio-Gas) Monish Gaikwad (COO) +91-7999409559 www.finsenritter.com Satish Dev (HBD) +91-9424086952 contact@finsenritter.com

  2. OVERVIEW OF PRESENT TECHNOLOGIES Digestion Process Of Biomass Working Principle Gobar (Dung) Water and dung is mixed in 1:1 ratio After water addition, homogenous mixture (Slurry) is prepared through agitator The slurry is transferred to the Anaerobic Digestor In digester, dung degrades in presence of anaerobic bacteria to produce Biogas.

  3. OVERVIEW OF PRESENT TECHNOLOGIES Gobar Gas Plant Technological advancement Advantages Disadvantages Reliability (96% availability) Ideal for large plants and landfill gas upgrading Only technology to remove Carbon Dioxide, Nitrogen and Oxygen in one stage Can upgrade biogas with high Oxygen and Nitrogen All pollutants removed (not released with the exhaust) Low consumables consumption Lower Recovery rate Venting of the usable product Methane in the exhaust cycle

  4. FEATURES The salient features of BGFP project are given below:

  5. Application of Bio-Gas The purity of biogas is about 98% and compressed to 150-bar pressure for filling in cylinders. The upgraded biogas is used for power generation, cooking and industrial application. The slurry of biogas plant is being based as an organic fertilizer in their nearby agro fields. The field trials have indicated 150% growth in agro- production and substantial improvements in the quality

  6. BENEFITS ADVANTAGES Reliability and long life of a Plant Modularity and turndown capability Digester Excellent flexibility and overall system performance Excellent recovery of methane (98%) High gas purity (98%) - if required Oxygen / Nitrogen removal - if required Competitive investment (CAPEX) Lower overall operating costs (OPEX) due to VPSA

  7. Results The purity of the enriched biogas is continuously monitored by online analyzing system alongwith calibration of analyzers. The purified biogas is equivalent / similar to CNG

  8. P&ID for Gobar Gas Generation Plant

  9. HYBRID BIOMETHANE CONCENTRATION PLANT KEY FEATURES OF FINSEN RITTER PROPOSED DESIGN Energy Efficient Design per NMCH gas separated High Reliability due to Stainless Steel Grade 304 Piping Completely Flange end pipe coupling Safe design with all electronic sensors and redundant control systems Fully Automated PLC Controlled Plant SCADA integration Use of state of the art quality equipment like Siemens PLC, Festo Valves and fittings, SS 304 Piping, Honeywell sensors Very high recovery rate of 99% allowing almost all Methane to be recovered with minimal wastage Completely in house design of plant providing reliable after sales support

  10. OUR CORPORATE CLIENTS ABOUT THE COMPANY For more information visit: www.finsenritter.com Email us: contact@finsenritter.com

  11. NIELS RYBERG FINSEN 15 December 1860 – 24 September 1904 He was one of the pioneers to use UV light in medicine. In 1903, he was awarded the Nobel Prize in Medicine and Physiology "in recognition of his contribution to the treatment of diseases, especially lupus vulgaris, with concentrated light radiation, whereby he has opened a new avenue for medical science." OUR TRIBUTE JOHANN WILHELM RITTER 16 December 1776 – 23 January 1810 Johann Wilhelm Ritter was a German chemist, physicist and philo sopher. He was one of the first to document the UV rays. In 1801, after hearing about the discovery of "heat rays" (infrared radiation) by William Herschel (in 1800), Ritter looked for an opposite (cooling) radiation at the other end of the visible spectrum. He did not find exactly what he expected to find, but after a series of attempts he noticed that silver chloride was transformed faster from white to black when it was placed at the dark region of the Sun's spectrum, close to its violet end. The "chemical rays" found by him were afterwards called ultraviolet radiation

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