木质素基双层包膜尿素的绿色构建与释放机制
Green construction and release mechanism of lignin-based double-layer coated urea.
作者信息
Chen Xiaojuan, Yang Huchen, Zhang Lidan, Li Zhongli, Xue Yunna, Wang Rongfeng, Fan Xiaolin, Sun Shaolong
机构信息
College of Natural Resources and Environment, South China Agricultural University, Guangzhou, 510642, Guangdong, China.
出版信息
Biotechnol Biofuels Bioprod. 2023 Jun 8;16(1):97. doi: 10.1186/s13068-023-02355-7.
BACKGROUND
Lignin played an important role in the establishment of coated fertilizers coating material as a substitute for petrochemical raw materials. However, so far, the lignin-based coated fertilizers was limited in only the poor slow-release performance. To achieve good slow-release performance of lignin-based coated fertilizers, hydrophilic of lignin need to be resolved to establish an green and better controllable lignin-based coated fertilizers.
RESULTS
In the study, a novel green double layer coating with lignin-based polyurethane (LPU) as the inner coating and epoxy resin (EP) as the outer coating was effectively constructed for coated urea. Fourier transform infrared spectra confirmed that lignin and polycaprolactone diol successfully reacted with Hexamethylene diisocyanate. The loss weight and water contact angle (WCA, 75.6-63.6°) of the LPUs decreased with the increased lignin content. The average particle hardness of the lignin-based double-layer coated urea (LDCU) first increased from 58.1 N (lignin of 30%) to 67.0 N (lignin of 60%), but then decreased to 62.3 N (lignin of 70%). The release longevity of the coated urea was closely related to the preparation parameters of the coating material. The optimal cumulative nutrient release rate (79.4%) of LDCU was obtained (lignin of 50%, -CNO/-OH molar ratios of 1.15, EP of 35%, and coating ratio of 5%). The aggregates of hydrone on the LDCU caused the dissolution and swelling of nutrients, and then the diffusion of nutrients through the concentration gradient.
CONCLUSIONS
A though the nutrient release of the LDCUs was affected by many factors, the successful development of the LDCUs will help improve the rapid development of the coated fertilizer industry.
背景
木质素作为一种替代石化原料的物质,在包膜肥料包膜材料的制备中发挥着重要作用。然而,到目前为止,木质素基包膜肥料仅存在缓释性能差的问题。为了实现木质素基包膜肥料良好的缓释性能,需要解决木质素的亲水性问题,以制备出绿色且可控性更好的木质素基包膜肥料。
结果
在本研究中,成功构建了一种以木质素基聚氨酯(LPU)为内涂层、环氧树脂(EP)为外涂层的新型绿色双层包膜尿素。傅里叶变换红外光谱证实木质素和聚己内酯二醇成功与六亚甲基二异氰酸酯发生反应。随着木质素含量的增加,LPU的失重和水接触角(WCA,75.6 - 63.6°)降低。木质素基双层包膜尿素(LDCU)的平均颗粒硬度先从58.1 N(木质素含量30%)增加到67.0 N(木质素含量60%),但随后降至62.3 N(木质素含量70%)。包膜尿素的释放寿命与包膜材料的制备参数密切相关。获得了LDCU的最佳累积养分释放率(79.4%)(木质素含量50%,-CNO/-OH摩尔比1.15,EP含量35%,包膜率5%)。LDCU上的水合氢离子聚集体导致养分溶解和膨胀,进而使养分通过浓度梯度扩散。
结论
尽管LDCU的养分释放受多种因素影响,但LDCU的成功研制将有助于推动包膜肥料行业的快速发展。
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