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基于液化苹果树树枝的生物包衣大颗粒尿素的制备及其养分释放特性

Preparation and Nutrient Release Characteristics of Liquefied Apple Tree Branche-Based Biocoated Large Tablet Urea.

作者信息

He Di, Zhang Shugang, Yang Yuechao, Tong Zhaohui, Yao Yuanyuan, Xie Jiazhuo, Tang Yafu, Li Shan, Liu Yan, Yang Mingchuan

机构信息

National Engineering Research Center for Efficient Utilization of Soil and Fertilizer Resources; National Engineering and Technology Research Center for Slow and Controlled Release Fertilizers, College of Resources and Environment, Shandong Agricultural University, Taian, Shandong 271000, China.

Department of Soil and Water Science, Tropical Research and Education Center, IFAS, University of Florida, Homestead, Florida 33031, United States.

出版信息

ACS Omega. 2023 Mar 9;8(11):9775-9784. doi: 10.1021/acsomega.2c04674. eCollection 2023 Mar 21.

Abstract

Controlled-release fertilizers (CRFs) could improve crop yield and fertilizer use efficiency. However, the coating materials of conventional CRFs are mainly derived from petrochemical products, which are expensive and nondegradable, bringing potential environmental pollution. Therefore, using sustainable bio-based materials is the development direction. In this study, large tablet urea (LTU) was prepared using physical extrusion technology. The economical and biodegradable liquefied apple tree branch bio-based coating material was used to coat LTU, obtaining large tablet CRFs (LTCRUs). Also, the optimum proportion of liquefaction of apple tree branches modified by castor oil was studied. The specific surface area, surface morphology, and FTIR of LTCRU were characterized. The results showed that the surface of the LTCRU was the most smooth and the LTCRU modified with 30% castor oil presented the best controlled-release characteristics. The specific surface area of LTCRU was one-third of that of traditional small-particle fertilizers, which indicated that reducing the using dosage of coating materials is economical. Overall, this work provided theoretical and technical supports for the industrialization of biocoated superlarge tablet urea, which is conducive to the green development of agriculture.

摘要

控释肥料(CRFs)可以提高作物产量和肥料利用效率。然而,传统控释肥料的包膜材料主要来源于石化产品,这些材料价格昂贵且不可降解,会带来潜在的环境污染。因此,使用可持续的生物基材料是发展方向。在本研究中,采用物理挤压技术制备了大颗粒尿素(LTU)。使用经济且可生物降解的液化苹果树枝生物基包膜材料对LTU进行包膜,得到大颗粒控释肥料(LTCRUs)。此外,还研究了经蓖麻油改性的苹果树枝液化的最佳比例。对LTCRU的比表面积、表面形貌和傅里叶变换红外光谱进行了表征。结果表明,LTCRU的表面最光滑,用30%蓖麻油改性的LTCRU具有最佳的控释特性。LTCRU的比表面积是传统小颗粒肥料的三分之一,这表明减少包膜材料的用量是经济的。总体而言,这项工作为生物包膜超大颗粒尿素的工业化提供了理论和技术支持,有利于农业的绿色发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90ce/10035011/cbcdcf9021f9/ao2c04674_0009.jpg

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