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通过低成本淀粉基生物降解聚合物减少氮污染的影响与修复。

Nitrogen Pollution Impact and Remediation through Low Cost Starch Based Biodegradable polymers.

机构信息

College of Engineering, Muzahimiyah Branch, King Saud University, Riyadh, 11451, Saudi Arabia.

Department of Chemical Engineering, Al-Hussein Bin Talal University, Ma'an, Jordan.

出版信息

Sci Rep. 2020 Apr 3;10(1):5927. doi: 10.1038/s41598-020-62793-3.

Abstract

The world does not have too much time to ensure that the fast-growing population has enough land, food, water and energy. The rising food demand has brought a positive surge in fertilizers' demand and agriculture-based economy. The world is using 170 million tons of fertilizer every year for food, fuel, fiber, and feed. The nitrogenous fertilizers are being used to meet 48% of the total food demand of the world. High fertilizer inputs augment the reactive nitrogen levels in soil, air, and water. The unassimilated reactive nitrogen changes into a pollutant and harms the natural resources. The use of controlled-release fertilizers for slowing down the nutrients' leaching has recently been practiced by farmers. However, to date, monitoring of the complete discharge time and discharge rate of controlled released fertilizers is not completely understood by the researchers. In this work, corn starch was thermally processed into a week gel-like coating material by reacting with urea and borate. The granular urea was coated with native and processed starch in a fluidized bed reactor having bottom-up fluid delivery system. The processed starch exhibited better thermal and mechanical stability as compared to the native starch. Unlike the pure starch, the storage modulus of the processed starch dominated the loss modulus. The release time of urea, coated with processed starch, remained remarkably larger than the uncoated urea.

摘要

世界没有太多时间来确保快速增长的人口拥有足够的土地、食物、水和能源。不断增长的粮食需求带来了化肥需求和以农业为基础的经济的积极增长。世界每年使用 1.70 亿吨化肥来生产粮食、燃料、纤维和饲料。氮肥用于满足世界 48%的粮食总需求。高肥料投入增加了土壤、空气和水中的活性氮水平。未被同化的活性氮变成污染物,危害自然资源。农民最近开始使用控释肥料来减缓养分淋失。然而,到目前为止,研究人员还不完全了解控释肥完全释放时间和释放率的监测。在这项工作中,玉米淀粉与尿素和硼酸盐反应,被热加工成类似凝胶的周质地壳材料。在具有底部进料系统的流化床反应器中,颗粒状尿素被天然和加工淀粉包覆。与天然淀粉相比,加工淀粉表现出更好的热稳定性和机械稳定性。与纯淀粉不同,加工淀粉的储能模量主导了损耗模量。包覆加工淀粉的尿素的释放时间明显长于未包覆的尿素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f7d/7125204/022c82c72f2f/41598_2020_62793_Fig1_HTML.jpg

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