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A Biochar-Based Route for Environmentally Friendly Controlled Release of Nitrogen: Urea-Loaded Biochar and Bentonite Composite

机译:以生物炭为基础的环保控制氮释放途径:尿素载生物炭和膨润土复合材料

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摘要

Biochar-based fertilizers have attracted increased attention, because biochar can improve the soil fertility, promote plant growth and crop yield. However, biochar-based controlled release nitrogen fertilizers (BCRNFs) still face problems because of the high cost, inefficient production technology, instability of nitrides, and the challenge associated with the controlled release of nutrients. In this study, we hydrothermally synthesised novel BCRNFs using urea-loaded biochar, bentonite and polyvinyl alcohol for controlled release of nutrients. Scanning electron microscopy and gas adsorption were conducted to identify the urea-loading and storage of bentonite in the inner pores of the biochar particles. X-ray diffraction, Fourier transform infrared spectroscopic and X-ray photoelectron spectroscopic studies demonstrated that strengthening the interactions among biochar, urea, and bentonite, helps control the moisture diffusion and penetration of bentonite, thereby leading to nutrient retention. The BCRNF showed significantly improved nutrient release characteristic compared with that of a mixture of biochar and urea. This urea-bentonite composite loaded with urea provides control over the release of nutrients stored in the biochar. BCRNF, especially those produced hydrothermally, can have potential applications in sustainable food security and green agriculture.
机译:基于生物炭的肥料已经引起了越来越多的关注,因为生物炭可以改善土壤肥力,促进植物生长和农作物产量。然而,基于生物炭的控释氮肥(BCRNFs)仍然面临问题,因为成本高,生产效率低,氮化物不稳定以及与养分控释相关的挑战。在这项研究中,我们使用载有尿素的生物碳,膨润土和聚乙烯醇进行水热合成,控制营养释放。进行扫描电子显微镜和气体吸附以鉴定生物炭颗粒内孔中膨润土的尿素负载和储存。 X射线衍射,傅立叶变换红外光谱和X射线光电子光谱研究表明,加强生物炭,尿素和膨润土之间的相互作用,有助于控制膨润土的水分扩散和渗透,从而导致养分保留。与生物炭和尿素的混合物相比,BCRNF具有显着改善的养分释放特性。负载有尿素的尿素-膨润土复合材料可控制生物炭中储存的养分的释放。 BCRNF,尤其是水热法生产的BCRNF,在可持续粮食安全和绿色农业中可能具有潜在应用。

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