Total biodegraded thermoplastic starch resin
A thermoplastic starch and all-biological technology, which is applied in the field of degradable resins, can solve the problems of not meeting the requirements of action and reducing starch content, and achieve the effect of being beneficial to biodegradation, increasing content, and degrading with controllability
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Embodiment 1
[0007] Components and dosage (by weight)
[0008] Corn starch 50.0
[0009] Polyethylene 15.0
[0010] Cellulose 10.0
[0011] Undecenylbutanedioic anhydride 5.0
[0012] DCP 0.5
[0013] Dibutyl adipate 10.0
[0014] Glycidyl methacrylate 0.5
[0015] Di-tert-butylphenol 1.0
[0016] First, the starch is subjected to superfine treatment to make it sieve with a fineness of 2000 mesh, and at the same time, glycidyl methacrylate is added, then heat-melted at 100-150°C, and then put into a high-speed mixer, mixed with the heat-melted The blend containing dibutyl adipate, DCP, polyethylene and cellulose is evenly mixed, reacted for about 15 minutes, then added to a second-stage extruder for mixing, extruded and granulated to obtain the present invention. The performance testing results are shown in Table 1.
Embodiment 2
[0018] Components and dosage (by weight)
[0019] Tapioca starch 60.0
[0020] POE 8.0
[0021] Polycaprolactone 30.0
[0022] Lauryl Succinate 1.0
[0023] DTBP 0.1
[0024] Di(2-ethylhexyl) adipate 6.0
[0025] Maleic anhydride 3.0
[0026] 246 0.1
[0027] Its preparation method is with embodiment 1. The performance testing results are shown in Table 1.
Embodiment 3
[0029] Components and dosage (by weight)
[0030] Pea starch 70.0
[0031] Polypropylene 5.0
[0032] Polyvinyl alcohol 20.0
[0033] Octadenoic Acid 3.0
[0034] BPO0.8
[0035] Dibutyl phthalate 2.0
[0036] Titanate 1.5
[0037] Antiager H 2.0
[0038] Its preparation method is with embodiment 1. The performance testing results are shown in Table 1.
[0039] Product Starch Content
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