Enhancing Longevity and Mechanisms of Controlled-Release Fertilizers Through High Cross-Link Density Hyperbranched Bio-Based Polyurethane Coatings

IF 7.3 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY ACS Sustainable Chemistry & Engineering Pub Date : 2024-12-13 DOI:10.1021/acssuschemeng.4c08547
Boning Su, Mingchuan Yang, Bin Gao, Xiangjie Zhao, Ziyao Li, Shugang Zhang, Dongdong Cheng, Tianlin Shen, Yuanyuan Yao, Yuechao Yang
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Abstract

The maturation of biobased polymer synthesis process has led to the rapid adoption of biobased controlled-release fertilizers (BCRFs). Despite this progress, the loose structure, low cross-linking density, and poor water repellency of current biobased coatings result in short controlled-release periods, which do not meet the long-term nutrient demands of crops throughout their reproductive phases. Moreover, existing modifications to address these issues often involve the addition of external additives, which can increase biotoxicity and cost. In this study, castor oil-based hyperbranched polyol (COHBPs) was synthesized from castor oil (CO) using a “one-pot method.” We report the development of high cross-linking density biobased hyperbranched polyurethane (COHBPPFs) as a coating for BCRFs. Gel content and SEM analysis demonstrated that COHBPPFs exhibited a high degree of cross-linking. Mechanical testing using an electronic universal testing machine, along with AFM results, highlighted the superior mechanical properties of COHBPPFs compared to traditional coatings. COHBPPFs significantly enhanced controlled release performance, with a 3% coating content providing nearly 50 days of controlled release, a marked improvement over conventional coatings. The controlled release mechanism of COHBPPFs was elucidated by modeling the cross-linking process of COHBPs with PAPI. This study offers a comprehensive examination of CRF coatings from multiple perspectives and provides valuable insights into the development of high cross-link density, environmentally friendly, and renewable biobased CRFs.

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高交联密度超支化生物基聚氨酯涂料提高肥料控释寿命及其机理研究
随着生物基高分子合成技术的成熟,生物基控释肥料(BCRFs)得到了广泛应用。尽管取得了这些进展,但目前生物基涂层结构松散,交联密度低,防水性差,导致控释期短,不能满足作物在整个繁殖阶段的长期营养需求。此外,解决这些问题的现有修改通常涉及添加外部添加剂,这可能会增加生物毒性和成本。本研究以蓖麻油(CO)为原料,采用“一锅法”合成了蓖麻油基超支化多元醇(COHBPs)。我们报道了高交联密度生物基超支化聚氨酯(COHBPPFs)作为BCRFs涂层的发展。凝胶含量和SEM分析表明,COHBPPFs表现出高度的交联。使用电子通用试验机进行机械测试,以及AFM结果,与传统涂层相比,COHBPPFs具有优越的机械性能。COHBPPFs显著提高了控释性能,3%的涂层含量可提供近50天的控释,与传统涂层相比有显著改善。通过模拟COHBPs与PAPI的交联过程,阐明COHBPPFs的控释机制。本研究从多个角度对CRF涂层进行了全面的研究,并为开发高交联密度、环保和可再生的生物基CRF提供了有价值的见解。
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来源期刊
ACS Sustainable Chemistry & Engineering
ACS Sustainable Chemistry & Engineering CHEMISTRY, MULTIDISCIPLINARY-ENGINEERING, CHEMICAL
CiteScore
13.80
自引率
4.80%
发文量
1470
审稿时长
1.7 months
期刊介绍: ACS Sustainable Chemistry & Engineering is a prestigious weekly peer-reviewed scientific journal published by the American Chemical Society. Dedicated to advancing the principles of green chemistry and green engineering, it covers a wide array of research topics including green chemistry, green engineering, biomass, alternative energy, and life cycle assessment. The journal welcomes submissions in various formats, including Letters, Articles, Features, and Perspectives (Reviews), that address the challenges of sustainability in the chemical enterprise and contribute to the advancement of sustainable practices. Join us in shaping the future of sustainable chemistry and engineering.
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