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藻类与榛子壳协同热解并添加重过磷酸钙制备的生物炭基肥料:理化性质与缓释性能

Biochar-based fertilizers from co-pyrolysis of algae and hazelnut shell with triple superphosphate: Physicochemical properties and slow release performance.

作者信息

Esmaeili Nazanin, Khalili Rad Maryam, Fazeli Sangani Mahmood, Ghorbanzadeh Nasrin

机构信息

Department of Soil Science, Faculty of Agricultural Science, University of Guilan, Rasht, Iran.

出版信息

Waste Manag Res. 2025 Jul;43(7):994-1001. doi: 10.1177/0734242X241287738. Epub 2024 Oct 9.

Abstract

Phosphorus (P) is a vital nutrient for plant growth and food production. Excessive amounts of P fertilizers to a greater extent of crop P offtake are inevitably applied due to low utilization efficiency, causing environmental pollution. This study aimed to evaluate biochar-based fertilizers (BBFs) produced by co-pyrolyzing algae (A) and hazelnut shell (H) biomasses with triple superphosphate (TSP) at a ratio of 4:1 (w/w). The potential of the slow-release performance of BBFs was studied during kinetics experiments. The co-pyrolysis of biomasses with TSP yielded BBFs with significantly different properties, including electrical conductivity, pH, elemental ratios, functional groups, specific surface area and pore size characteristics. Phosphorus release from all biochars and BBFs followed the Elovich model, except for TSP and H+TSP. Kinetic studies revealed prolonged P-release times and slower release rates for BBFs compared to conventional TSP. So that, TSP released 100% of the total P, whereas H+TSP and A+TSP biochars released only 3.14% and 5.14% of the total P, respectively, during a 240-hour experiment. The slow-release performance of BBFs suggests their potential as promising alternatives to conventional phosphate fertilizers. BBFs have the potential to enhance P utilization efficiency, increase crop yield and mitigate the environmental impact of P fertilizer runoff.

摘要

磷(P)是植物生长和粮食生产所必需的养分。由于磷肥利用效率低,人们不可避免地施用了过量的磷肥,导致更大程度的作物磷吸收,从而造成环境污染。本研究旨在评估通过将藻类(A)和榛子壳(H)生物质与重过磷酸钙(TSP)以4:1(w/w)的比例共热解生产的生物炭基肥料(BBF)。在动力学实验中研究了BBF的缓释性能潜力。生物质与TSP的共热解产生了性质显著不同的BBF,包括电导率、pH值、元素比例、官能团、比表面积和孔径特征。除了TSP和H+TSP外,所有生物炭和BBF的磷释放均遵循Elovich模型。动力学研究表明,与传统TSP相比,BBF的磷释放时间延长,释放速率较慢。因此,在240小时的实验中,TSP释放了总磷的100%,而H+TSP和A+TSP生物炭分别仅释放了总磷的3.14%和5.14%。BBF的缓释性能表明它们有潜力成为传统磷肥的有前景的替代品。BBF有潜力提高磷的利用效率,增加作物产量,并减轻磷肥径流对环境的影响。

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