An industrialized method for rapid and efficient production of inulin
A high-efficiency inulin technology, applied in the field of natural extract extraction and refining, can solve the problems of easy breeding of microorganisms, long extraction time, and large water consumption, and achieve the effects of shortening processing time, increasing production capacity, and reducing water consumption
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Embodiment 1
[0027] (1) Wash 500 kg of fresh Jerusalem artichoke raw materials to remove epidermis and sediment, and transport the washed Jerusalem artichoke to a shredding machine through a feeding device, and cut it into shredded artichokes with a diameter of 2.0 mm to obtain shredded artichokes;
[0028] (2) Add a flocculation washing liquid of 0.6 times the mass of the raw material to the Jerusalem artichoke silk, send it into the colloid mill through a transmission device, grind the Jerusalem artichoke silk to 250 mesh, and obtain the Jerusalem artichoke pulp;
[0029] (3) After adding deionized water 0.7 times the mass of raw materials to the Jerusalem artichoke pulp, transport the slurry to a grinder, and grind it repeatedly for 30 minutes to obtain a Jerusalem artichoke pulp with a particle size of 10 μm, and transport the slurry to a flocculation tank through a delivery pipeline;
[0030] (4) While stirring, add solid Ca(OH) 2 Flocculation, after adjusting the pH of the feed solut...
Embodiment 2
[0036] (1) Wash 600 kg of fresh Jerusalem artichoke raw materials to remove the epidermis and sediment, and transport the washed Jerusalem artichoke to a shredding machine through a feeding device, and cut it into 1.5mm diameter Jerusalem artichoke shreds to obtain Jerusalem artichoke shreds;
[0037] (2) Add the primary flocculation and slag washing liquid of 1 times the mass of the raw material to the Jerusalem artichoke silk, send it into the colloid mill through the transmission device, grind the Jerusalem artichoke silk to 300 mesh, and obtain the Jerusalem artichoke pulp;
[0038] (3) After adding deionized water 0.8 times the mass of raw materials to the Jerusalem artichoke pulp, transport the slurry to a grinder, and grind it repeatedly for 40 minutes to obtain a Jerusalem artichoke pulp with a particle size of 15 μm, and transport the slurry to a flocculation tank through a delivery pipeline;
[0039] (4) While stirring, add solid Ca(OH) 2 Flocculation, after the pH o...
Embodiment 3
[0045] (1) Wash 450 kg of fresh Jerusalem artichoke raw materials to remove epidermis and sediment, and transport the washed Jerusalem artichoke to a shredding machine through a feeding device, and cut it into shredded artichokes with a diameter of 1.0 mm to obtain shredded artichokes;
[0046] (2) Add a flocculation washing liquid of 0.4 times the mass of the raw material to the Jerusalem artichoke silk, send it into the colloid mill through a transmission device, grind the Jerusalem artichoke silk to 200 mesh, and obtain the Jerusalem artichoke pulp;
[0047] (3) After adding deionized water 0.6 times the mass of the raw material to the Jerusalem artichoke pulp, transport the slurry to a grinder and grind it repeatedly for 45 minutes to obtain a Jerusalem artichoke pulp with a particle size of 10 μm, and transport the slurry to a flocculation tank through a delivery pipeline;
[0048] (4) While stirring, add solid Ca(OH) 2 Flocculation, after the pH of the feed liquid is adj...
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