水热炭化和热解乳品加工污泥改善营养管理在农业:目前的最新技术

IF 7.1 Q1 ENGINEERING, CHEMICAL
Marzena Kwapińska , Niamh Burke , James J. Leahy
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引用次数: 0

摘要

综述了乳制品加工污泥水热炭化和热解的研究进展。由于城市污水处理厂是污泥的主要来源,因此对热化学处理工艺进行了初步研究并应用于城市污水污泥。对乳制品加工污泥的研究可以建立在从污水污泥研究中获得的见解之上。本文首先总结了目前应用于污水污泥的两种技术的现状。然后介绍了乳制品加工污泥特性的概述,在某些情况下,这些特性与污水污泥的特性有很大不同。本文讨论了乳制品加工污泥水热碳化和热解的所有产品的特性,确定了知识空白,并探讨了在乳制品加工设施的废水处理厂中整合这两种工艺的潜力。热液碳化和热解的结合为乳品加工污泥的增值提供了一种变革性的方法,与气候适应能力、养分循环利用和可持续农业的全球目标保持一致。该报告强调了关键的知识差距,并提出了加速行业采用和政策整合的战略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Hydrothermal carbonization and pyrolysis of dairy processing sludge for improved nutrient management in agriculture: Current state-of-the-art

Hydrothermal carbonization and pyrolysis of dairy processing sludge for improved nutrient management in agriculture: Current state-of-the-art
This paper summarises advances in hydrothermal carbonization and pyrolysis of dairy processing sludge. Since municipal wastewater treatment plants are the primary source of sludge, thermochemical treatment processes were initially studied and applied to municipal sewage sludge. Research on dairy processing sludge can build upon the insights gained from sewage sludge studies. This article begins with a summary of the current state of the art for both technologies as applied to sewage sludge. It then presents an overview of dairy processing sludge properties, which in some cases differ significantly from those of sewage sludge. This review discusses the properties of all products derived from hydrothermal carbonization and pyrolysis of dairy processing sludge, identifies knowledge gaps, and explores the potential for integrating these two processes within wastewater treatment plants in dairy processing facilities. The integration of hydrothermal carbonization and pyrolysis presents a transformative approach to valorizing dairy processing sludge, aligning with global goals for climate resilience, nutrient recycling, and sustainable agriculture. The review highlights critical knowledge gaps and proposes strategies to accelerate industrial adoption and policy integration.
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来源期刊
Chemical Engineering Journal Advances
Chemical Engineering Journal Advances Engineering-Industrial and Manufacturing Engineering
CiteScore
8.30
自引率
0.00%
发文量
213
审稿时长
26 days
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