National Engineering Laboratory for Efficient Utilization of Soil and Fertilizer Resources, National Engineering & Technology Research Center for Slow and Controlled Release Fertilizers, College of Resources and Environment, Shandong Agricultural University, Taian, Shandong 271018, China.
J Agric Food Chem. 2013 Aug 28;61(34):8166-74. doi: 10.1021/jf402519t. Epub 2013 Aug 20.
In this paper, we synthesized a biobased polyurethane using liquefied corn stover, isocyanate, and diethylenetriamine. The synthesized polyurethane was used as a coating material to control nitrogen (N) release from polymer-coated urea. A novel superabsorbent composite was also formulated from chicken feather protein (CFP), acrylic acid, and N,N'-methylenebisacrylamide and used as an outer coating material for water retention. We studied the N release characteristics and water-retention capability of the double-layer polymer-coated urea (DPCU) applied in both water and soils. The ear yields, dry matter accumulation, total N use efficiency and N leaching from a sweet corn soil-plant system under two different irrigation regimes were also investigated. Comparison of DPCU treatments with conventional urea fertilizer revealed that DPCU treatments reduced the N release rate and improved water retention capability. Evaluation of soil and plant characteristics within the soil-plant system revealed that DPCU application effectively reduced N leaching loss, improved total N use efficiency, and increased soil water retention capability.
本文使用液化玉米秸秆、异氰酸酯和二乙烯三胺合成了一种生物基聚氨酯。合成的聚氨酯用作涂层材料,以控制聚合物包衣尿素中的氮(N)释放。还从鸡毛蛋白(CFP)、丙烯酸和 N,N'-亚甲基双丙烯酰胺配制了一种新型高吸水性复合材料,并用作保水的外层涂层材料。我们研究了双层聚合物包衣尿素(DPCU)在水和土壤中的 N 释放特性和保水能力。还研究了在两种不同灌溉制度下,甜玉米土壤-植物系统中的穗产量、干物质积累、总 N 利用效率和 N 淋失。与传统尿素肥料相比,DPCU 处理的比较表明,DPCU 处理可降低 N 释放率并提高保水能力。对土壤-植物系统内土壤和植物特性的评估表明,DPCU 的应用可有效减少 N 淋失损失,提高总 N 利用效率,并增加土壤保水能力。