Functional Coating of NPK Granules with Pyrolysis Oils for Enhanced Slow-Release Performance

IF 1.8 4区 工程技术 Q3 ENGINEERING, CHEMICAL
Fereshteh Rahmani, Mortaza Gholizadeh, Frederic Clarens
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引用次数: 0

Abstract

This study focused on developing slow-release fertilizers (SRFs) by coating pyrolysis oil on the fertilizer. The oils used included tire pyrolysis oil (TPO), wheat straw pyrolysis oil (WSPO), poplar wood pyrolysis oil (PWPO), and low-density polyethylene pyrolysis oil (LDPEPO). Coatings were created on fertilizer granules by co-pyrolysis at 200 °C in a fixed-bed pyrolysis reactor under nitrogen gas. The prepared SRFs included TPO-coated fertilizer (TPOCF), WSPO-coated fertilizer (WSPOCF), PWPO-coated fertilizer (PWPOCF), and LDPEPO-coated fertilizer (LDPEPOCF). Carboxylic, carbonyl, and hydroxyl compounds and functional groups in pyrolysis oils played an essential role by forming bonds and complexing with ions in NPK fertilizer. For uniform coverage of NPK fertilizer granules, maintaining a high nitrogen content in the fertilizer structure, and slower release of ions in a distilled water environment, WSPO and poplar wood were suitable.

热解油包覆NPK颗粒增强缓释性能
本研究主要是通过在肥料上包覆热解油来开发缓释肥料(SRFs)。实验用油包括轮胎热解油(TPO)、麦秸热解油(WSPO)、杨木热解油(PWPO)和低密度聚乙烯热解油(LDPEPO)。采用固定床热解反应器,在氮气条件下,在200℃共热解条件下,在肥料颗粒表面制备涂层。制备的SRFs包括tpo包膜肥(TPOCF)、wspo包膜肥(wspof)、pwpo包膜肥(PWPOCF)和ldpepo包膜肥(LDPEPOCF)。热解油中的羧基、羰基和羟基化合物和官能团在氮磷钾肥料中与离子形成键和络合作用起着重要作用。为了使氮磷钾肥料颗粒覆盖均匀,保持肥料结构中较高的氮含量,并在蒸馏水环境中减缓离子的释放,WSPO和杨木是合适的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chemical Engineering & Technology
Chemical Engineering & Technology 工程技术-工程:化工
CiteScore
3.80
自引率
4.80%
发文量
315
审稿时长
5.5 months
期刊介绍: This is the journal for chemical engineers looking for first-hand information in all areas of chemical and process engineering. Chemical Engineering & Technology is: Competent with contributions written and refereed by outstanding professionals from around the world. Essential because it is an international forum for the exchange of ideas and experiences. Topical because its articles treat the very latest developments in the field.
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