Method for producing biogas through utilizing lignocellulose raw material
A lignocellulose and biogas technology, applied in waste fuel, fermentation and other directions, can solve the problems of lignocellulosic raw material collection and transportation cost restricting the promotion of biogas fermentation technology, and achieve the improvement of hydrolysis efficiency, gas production rate and gas production. The effect of efficiency
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Embodiment 1
[0023] Crush corncobs, use dilute sulfuric acid with a mass fraction of 0.05%, a solid-to-liquid ratio of 15, a reaction temperature of 210°C, and a reaction time of 10 minutes for dilute acid hydrolysis, and filter after hydrolysis to obtain the initial corncob dilute acid hydrolyzate.
[0024] Then use lime to adjust the pH of the hydrolyzate to 10.0, filter and neutralize to obtain corncob dilute acid hydrolyzate.
[0025] The obtained corncob dilute acid hydrolyzate was diluted with water to an initial COD of 2000 mg / L, and urea and potassium dihydrogen phosphate were added to adjust the C / N mass ratio of the diluted hydrolyzate to 50:5, and the C / P mass ratio to 50:1.
[0026] The anaerobic granular sludge is loaded into the anaerobic fermentation tank, and the amount of sludge is 80% of the volume of the reactor.
[0027] The corn cob dilute acid hydrolyzate containing nitrogen source and phosphorus source was pumped into the anaerobic fermentation tank for continuous fe...
Embodiment 2
[0029] Using sawdust as raw material, using dilute hydrochloric acid with a mass fraction of 5% and a solid-to-liquid ratio of 2.5, the reaction temperature is 80°C, and the reaction time is 300 minutes for dilute acid hydrolysis. After hydrolysis, filter to obtain the initial dilute acid hydrolyzate of sawdust.
[0030] Then adjust the pH of the hydrolyzate to 5.5 with calcium carbonate, filter and neutralize to obtain a dilute acid hydrolyzate of sawdust.
[0031] The obtained sawdust dilute acid hydrolyzate was diluted with water to an initial COD of 10,000 mg / L, and yeast extract and ammonium dihydrogen phosphate were added to adjust the C / N mass ratio of the diluted hydrolyzate to 100:5, and the C / P mass ratio to 200:1.
[0032] The anaerobic granular sludge is loaded into the upflow anaerobic sludge bed reactor, and the amount of sludge loaded is 10% of the volume of the reactor.
[0033] Pump dilute acid hydrolyzate of sawdust into the upflow anaerobic sludge bed reacto...
Embodiment 3
[0035] Bagasse was used as raw material, after pulverization, dilute acid hydrolysis was carried out with a mass fraction of 3% formic acid, a solid-to-liquid ratio of 10, a reaction temperature of 170°C, and a reaction time of 200 minutes. After hydrolysis, it was filtered to obtain the initial bagasse hydrolyzate.
[0036] Then use sodium hydroxide to adjust the pH of the hydrolyzate to 7.5, filter and neutralize to obtain a bagasse enzyme hydrolyzate.
[0037] The obtained bagasse enzymatic hydrolyzate was diluted with water to an initial COD of 25000 mg / L, and peptone and potassium hydrogen phosphate were added to adjust the C / N mass ratio of the diluted hydrolyzate to 500:5, and the C / P mass ratio to 500:1.
[0038] The anaerobic granular sludge is loaded into the anaerobic granular sludge expanded bed reactor, and the amount of sludge is 60% of the volume of the reactor.
[0039] Pump the bagasse enzymatic hydrolyzate into the anaerobic granular sludge expanded bed react...
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