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Copyrolysis of Biomass, Bentonite, and Nutrients as a New Strategy for the Synthesis of Improved Biochar-Based Slow-Release Fertilizers

机译:生物质,膨润土和营养素的CoyleS解作为合成改进的生物炭基慢释放肥料的新策略

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摘要

Biochar is gaining increasing attention in the field of agriculture, since it can not only be used as a soil amendment for improving soil quality but also as a promising carrier for slow-release fertilizers. Currently, developing cost-effective, environmentally friendly, and high-performance biochar-based slow-release fertilizers (BSRFs) is still challenging. In this study, we propose a new strategy for the synthesis of improved BSRFs by copyrolysis of biomass (cotton straw), nutrients (K3PO4), and bentonite under microwave irradiation. The results show that the presence of bentonite during the copyrolysis process is beneficial for improving the slow-release performance of BSRFs. The mechanistic study based on SEM, TEM, XRD, and XPS characterizations integrated with the release kinetic study reveal that the presence of bentonite in the pyrolysis process facilitates the formation of a desirable structure within BSRFs to improve the slow-release performance, and the formation of P-related chemical bonds during the bentonite participated pyrolysis process also contributes to the improved slow-release performance for P. Moreover, the slow-release performance of BSRFs agrees very well with their positive effects on the growth of pepper seedlings in pot experiments. The economic assessment suggests that the as-synthesized BSRFs should have the advantage of low production costs. We hope this proposed strategy can bring some inspirations for the development of more promising BSRFs in the future.
机译:生物炭在农业领域取得了越来越长的关注,因为它不仅可以用作改善土壤质量的土壤修正,而且作为缓慢释放肥料的有希望的载体。目前,开发成本效益,环保和高性能的生物炭慢释放肥料(BSRFS)仍然具有挑战性。在这项研究中,我们提出了一种通过在微波辐射下的生物量(棉花秸秆),营养物(K3PO4)和膨润土的改良BSRF来合成改进的BSRF的新策略。结果表明,复析过程中膨润土的存在有利于提高BSRF的缓慢释放性能。基于SEM,TEM,XRD和XPS表征的机制研究与释放动力学研究相结合揭示了热解过程中膨润土的存在有助于在BSRF中形成理想的结构,以改善缓释性能和形成在膨润土的Py相关化学键中的热解过程中也有助于改善P的缓慢释放性能。此外,BSRFS的缓慢性能非常吻合它们对锅实验中胡椒幼苗生长的积极影响。经济评估表明,综合的BSRF应该具有低生产成本的优势。我们希望这一拟议的战略能够为未来发展更多有前途的BSRF的发展。

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