首页> 外文会议>Technical meeting on radiation processed materials in products from polymers for agricultural applications >PRODUCTS BASED ON BIO-RESOURCED MATERIALS FOR AGRICULTURE. RADIATION PROCESSED BIODEGRADABLE POLYMERS, PLANT GROWTH PROMOTERS AND SUPERABSORBENT POLYMERS
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PRODUCTS BASED ON BIO-RESOURCED MATERIALS FOR AGRICULTURE. RADIATION PROCESSED BIODEGRADABLE POLYMERS, PLANT GROWTH PROMOTERS AND SUPERABSORBENT POLYMERS

机译:基于生物资源的农业材料的产品。辐射加工可生物降解的聚合物,植物生长促进剂和超吸收性聚合物

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Radiation-processed natural polymers and their derivatives, namely starch, alginate, chitosan and carboxymethyl cellulose (CMC) were explored for different agricultural applications such as biodegradable mulch films, super adsorbent polymers (SAPs), and plant growth promoters (PGPs). It was observed that gamma radiation-processed starch can lead to a better processability of starch/synthetic polymer alloys, and can offer tuneable biodegradability (as low as one month) with acceptable physico-mechanical properties. Acrylic acid/CMC-based SAP was prepared using ~(60)Co gamma radiation, for soil conditioning. The equilibrium degree of swelling (EDS) of the acrylic acid/CMC SAP was found to be 460 g/g. The field trial of the SAP was conducted on sorghum. It was found that, with the use of 20 kg/ha of SAP, the crop yield can be increased by almost 18.5% whereas the increase in plant height was 8.5%. A new super adsorbent polymer with a much higher water uptake capacity was also developed by adding a small fraction of carrageenan to neutralized acrylic acid (AA). This SAP had EDS of 800 g/g, with the addition of only 1% carrageenan. Experiments to check the soil conditioning efficacy of AA/carrageenan SAP are in progress. Oligomers of chitosan and alginates were prepared by gamma irradiation and were tried as plant growth promoters in wheat (Triticum aestivum), mung bean (Vigna radiata), linseed (Linum usitatissimum), mentha (Mentha arvensis), and lemon grass. The results suggest that these oligomers have a significant impact on the grain and oil yield. Large scale field trials on Mentha arvensis in collaboration with an industry are in progress, and efforts are going on to formulate a policy framework for the use of oligosaccharides as plant growth promoters.
机译:探讨辐射加工的天然聚合物及其衍生物,即淀粉,藻酸盐,壳聚糖和羧甲基纤维素(CMC),用于不同的农业应用,如可生物降解的覆盖膜,超吸附剂聚合物(SAP)和植物生长促进剂(PGP)。观察到γ辐射加工的淀粉可导致淀粉/合成聚合物合金的更好可加工性,并且可以提供可接受的物理机械性能的可调可调性的生物降解性(低至一个月)。使用〜(60)COγ辐射制备丙烯酸/ CMC的SAP,用于土壤调节。发现丙烯酸/ CMC SAP的膨胀(EDS)的平衡度为460g / g。 SAP的现场试验是在高粱上进行的。结果发现,随着20公斤/公顷的SAP,作物产量可以提高近18.5%,而植物高度的增加是8.5%。还通过向中和的丙烯酸(AA)中和中和的丙烯酸(AA)增加了一种具有更高的水吸收能力的新型超吸附剂聚合物。该SAP具有800g / g的eds,仅添加了1%的角叉菜胶。检查AA /角叉菜胶皂蛋白菌的土壤调节效果的实验正在进行中。通过γ辐射制备壳聚糖和藻酸盐的低聚物,并在小麦(Triticum aestivum),绿豆(豇豆radiata),亚麻籽(Linum Usitatisimum),Mentha(Mentha arvensis)和柠檬草中被尝试为植物生长促进剂。结果表明,这些低聚物对籽粒和油产量产生了重大影响。在与行业合作的Mentha arvensis上的大规模场地试验正在进行中,并努力制定用于使用低聚糖作为植物生长促进剂的政策框架。

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