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New directions for agricultural wastes valorization as hydrogel biocomposite fertilizers

机译:农业废物储存的新方向作为水凝胶生物复合肥料

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摘要

The tremendous amount of waste is an environmental and social problem worldwide. The agri-food sector is the largest producer of waste and requires the extensive use of fertilizers, which entails the need to look for innovative solutions in waste management. Properly recycled bio-waste can be reused as fertilizer. Polymer capsules with immobilized waste biomass can be applied as carriers for fertilizer nutrients. The amount of components exerts a certain influence on the effectiveness of copper ions binding. The most important physicochemical properties of biocomposites, such as swelling, SEM (Scanning Electron Microscopy) and FTIR (Fourier Transform Infrared Spectroscopy) were investigated. FTIR analyzes revealed that carboxyl and hydroxyl groups play a key role in Cu~(2+) ion binding. Morphology analysis showed that ion binding leads to homogenization of the composite surface, while coating the structure makes it more regular and cohesive. The sorption kinetics and the determination of the process's equilibrium parameters (Q_(max) = 29.4 ± 0.493 mg g~(-1)) play an important role. The study of Cu~(2+) ion release in different media showed that the chitosan layer slowed down the diffusion of cations by about 50% in NaNO_3 (1% m/m) solution. Preliminary studies of the applicability of the capsules in germination tests demonstrate that the biocomposites have no phytotoxic effects on the test plant. The chitosan coating slows the release of Cu~(2+) ions by about 20% compared to uncoated capsules. New fertilizer formulations containing chitosan-encapsulated hydrogel with biomass-immobilized micronutrients can be applied for precision agriculture to minimize the loss of fertilizer nutrients to the environment. These fertilizers could be used to cultivate houseplants and greenhouse crops.
机译:废物的大量的是环境和社会的世界性难题。农业食品行业是废物的最大生产国和需要大量使用化肥,这需要需要寻找在废物管理的创新解决方案。正确回收利用生物废料可重复使用的肥料。用固定化废生物质的聚合物胶囊可作为肥料的营养物质的载体来施加。组分的量对铜离子结合的有效性有一定影响。生物复合材料的最重要的物理化学性质,如肿胀,SEM(扫描电子显微镜)和FTIR(傅立叶变换红外光谱法)进行了研究。 FTIR分析显示,羧基和羟基中的Cu〜(2+)离子结合起到了关键作用。形态学分析表明,离子结合导致复合材料表面的均质化,而涂布所述结构使得更规则和内聚。的吸附动力学和进程的平衡参数的确定(Q_(MAX)= 29.4±0.493毫克克〜(-1))中发挥重要作用。铜〜的研究(2+)离子在不同介质中的释放表明,脱乙酰壳多糖层通过在NaNO_3约50%(1%M / M)溶液减慢阳离子的扩散。在发芽试验胶囊的适用性的初步研究表明,生物复合材料对测试植物没有毒性作用。所述壳聚糖涂层相比未涂覆的胶囊由约20%的Cu减慢〜(2+)离子的释放。可应用于精密农业的含脱乙酰壳多糖的水凝胶包封的生物质固定化的微量营养素的新的肥料配方以最小化肥料养分到环境中的损失。这些肥料可用于培育的盆栽植物和温室作物。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|113480.1-113480.12|共12页
  • 作者单位

    Department of Advanced Material Technologies Wroclaw University of Science and Technology Wroclaw Lower Silesia 50-370 Poland;

    Department of Advanced Material Technologies Wroclaw University of Science and Technology Wroclaw Lower Silesia 50-370 Poland;

    Department of Advanced Material Technologies Wroclaw University of Science and Technology Wroclaw Lower Silesia 50-370 Poland;

    Department of Advanced Material Technologies Wroclaw University of Science and Technology Wroclaw Lower Silesia 50-370 Poland;

    School of Chemical Engineering National Technical University of Athens 9 Iroon Polytechniou Str. Zographou Campus GR-15780 Athens Greece;

    Department of Advanced Material Technologies Wroclaw University of Science and Technology Wroclaw Lower Silesia 50-370 Poland;

    Department of Advanced Material Technologies Wroclaw University of Science and Technology Wroclaw Lower Silesia 50-370 Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Waste biomass; Immobilization; Alginate; Chitosan; Slow-release fertilizers;

    机译:废物生物量;固定化;藻酸盐;壳聚糖;缓释肥料;

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