College of Forestry, Shandong Agricultural University, Tai'an, Shandong 271018, PR China.
College of Food Science and Engineering, Shandong Agricultural University, Tai'an, Shandong 271018, PR China.
Int J Biol Macromol. 2024 Oct;277(Pt 2):134118. doi: 10.1016/j.ijbiomac.2024.134118. Epub 2024 Aug 4.
Coated fertilizers have been widely used to improve fertility in barren land. However, improving soil structure and water-retention capacity is also essential for arid and semi-arid areas with sandy soils to promote crop growth. Most currently available coated fertilizers rarely meet these requirements, limiting their application scope. Therefore, this study "tailored" pectin-montmorillonite (PM) multifunctional coatings for arid areas, featuring intercalation reactions and nanoscale entanglement between pectin and montmorillonite via hydrogen bonding and electrostatic and van der Waals forces. Notably, PM coatings have demonstrated an effective "relay" model of action. First, the PM-50 coating could act as a "shield" to protect urea pills, increasing the mechanical strength (82.12 %). Second, this coating prolonged the release longevity of urea (<0.5 h to 15 days). Further, the remaining coating performed a water-retention function. Subsequently, the degraded coating improved the soil properties. Thus, this coating facilitated the growth of wheat seedlings in a simulated arid environment. Moreover, the cytotoxicity test, life cycle assessment, and soil biodegradation experiment showed that the PM coating exhibited minimal environmental impact. Overall, the "relay" model of PM coating overcomes the application limitations of traditional coated fertilizers and provides a sustainable strategy for developing coating materials in soil degradation areas.
包膜肥料已被广泛用于改善贫瘠土地的肥力。然而,对于干旱和半干旱地区的沙土,改善土壤结构和保水能力对于促进作物生长也是至关重要的。目前大多数可用的包膜肥料很少能满足这些要求,限制了它们的应用范围。因此,本研究“定制”了适用于干旱地区的果胶-蒙脱石(PM)多功能涂层,其特征在于果胶和蒙脱石之间通过氢键、静电和范德华力进行插层反应和纳米级缠结。值得注意的是,PM 涂层表现出了一种有效的“接力”作用模式。首先,PM-50 涂层可以作为“屏蔽物”来保护尿素丸,增加其机械强度(82.12%)。其次,这种涂层延长了尿素的释放寿命(<0.5 小时至 15 天)。此外,剩余的涂层具有保水功能。随后,降解的涂层改善了土壤性质。因此,这种涂层促进了小麦幼苗在模拟干旱环境中的生长。此外,细胞毒性试验、生命周期评估和土壤生物降解实验表明,PM 涂层的环境影响最小。总体而言,PM 涂层的“接力”模式克服了传统包膜肥料的应用局限性,为开发土壤退化地区的涂层材料提供了可持续的策略。