College of Chemistry and Chemical Engineering, Qiqihar University, Qiqihar 161006, PR China.
College of Chemistry and Chemical Engineering, Qiqihar University, Qiqihar 161006, PR China.
Int J Biol Macromol. 2024 Oct;278(Pt 2):134713. doi: 10.1016/j.ijbiomac.2024.134713. Epub 2024 Aug 16.
The exploration of environmentally friendly slow-release fertilizer (SRF) based on natural bio-polymers is of great importance in the development of modern agriculture and horticulture. Herein, a novel starch carbamate (SC) modified sodium alginate (SA) hydrogel (SC/SAH) was prepared utilizing as-synthesized SC and natural SA through the cationic ions crosslinking method and ultimately the corresponding slow-release fertilizer (SC/SAH-SRF) was successfully developed by immersing the dried SC/SAH matrix into saturated urea solution. Due to the low gelation temperature and high viscosity of the synthesized SC, the formed SC/SAH exhibits significantly enhanced properties including excellent water absorbency up to 8.02 g/g with considerable repeatability, abundant pore structure and high hydrophilicity compared with the neat SAH and natural starch based hydrogel (NS/SAH). Accordingly, the SC/SAH leads to higher urea loading amount ∼ 1.28 g/g. Importantly, the resultant SC/SAH-SRF also shows superior slow-release performance, yielding a cumulative urea release of only 61.6 % within 10 h and almost completely release >16 h in water, what's more, only 58.5 % of the urea releases within 25 days and exceeding 50 days for complete release in soil column assays. The slow-release of urea from SC/SAH-SRF well complies for the first-order kinetics and accomplishes via a non-Fickian diffusion process. Moreover, the pot experiment demonstrates that the SC/SAH-SRF has higher growth promotion role for the maize seedlings than those of others. Consequently, this work provides a novel strategy for preparing environmentally friendly SRF by blending modified starch and hydrogel.
基于天然生物聚合物的环保型缓释肥料(SRF)的探索在现代农业和园艺的发展中具有重要意义。本文通过阳离子离子交联法,利用合成的 SC 和天然 SA 制备了一种新型的淀粉碳酸酯(SC)改性海藻酸钠(SA)水凝胶(SC/SAH),并最终通过将干燥的 SC/SAH 基质浸入饱和尿素溶液中成功制备了相应的缓释肥料(SC/SAH-SRF)。由于合成的 SC 的低凝胶化温度和高粘度,所形成的 SC/SAH 表现出显著增强的性能,包括高达 8.02 g/g 的优异吸水性,具有相当的重复性,丰富的孔结构和高亲水性,与纯 SAH 和天然淀粉基水凝胶(NS/SAH)相比。因此,SC/SAH 导致更高的尿素负载量约为 1.28 g/g。重要的是,所得的 SC/SAH-SRF 还表现出优异的缓释性能,在水中 10 小时内仅释放 61.6%的累积尿素,超过 16 小时几乎完全释放,在土壤柱试验中,25 天内仅释放 58.5%的尿素,超过 50 天完全释放。尿素从 SC/SAH-SRF 的缓慢释放符合一级动力学,并通过非菲克扩散过程完成。此外,盆栽实验表明,SC/SAH-SRF 对玉米幼苗的生长促进作用高于其他肥料。因此,这项工作为通过混合改性淀粉和水凝胶制备环保型缓释肥料提供了一种新策略。