Enhanced phosphorus bioavailability and reduced water leachability in dairy manure through hydrothermal carbonization: effect of processing temperature and CaO additive.

IF 2.2 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES Environmental Technology Pub Date : 2024-11-24 DOI:10.1080/09593330.2024.2430802
Mohammad Nazrul Islam, Imran Hussian Mahdy, Lide Chen, Sarah Wu, Brian He
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Abstract

Dairy manure, a significant source of phosphorus (P), can potentially cause environmental risk due to P runoff when dairy manure is directly applied to cropland. Thus, there is an increasing interest in mitigating P loss from manure prior to land applications. This study aimed to investigate the potential of hydrochar produced by hydrothermal carbonization (HTC) for P recycling from dairy manure with and without the addition of CaO, focusing on the plant bioavailability, stabilization, and transformation of P in the resultant hydrochar. Hydrochar was prepared under different temperatures (180-240°C). The effect of CaO addition (0-10% of raw manure on dry wt. basis) was also evaluated at 220°C. Results showed that water-soluble P (WSP), a key indicator of P runoff loss, was significantly reduced in hydrochar, particularly with CaO addition. In addition, the plant available P in hydrochar increased with HTC temperature increase till 220°C, which accounted for ∼90% of total P content, then decreased with temperatures higher than 220°C. The addition of CaO slightly reduced plant bioavailability when compared to hydrochar produced at 220°C without additive. The P fractionation and speciation analyses indicated the transformation of P into Ca-associated apatite P. Hydrochar produced at 220°C with 10% CaO addition resulted in a high P recovery (∼85%) and a reduced runoff risk by 97%. The results demonstrate the efficacy of P recycling through hydrochar produced from dairy manure through HTC, which offers a sustainable approach to managing dairy waste while mitigating the potential environmental risks of P runoff.

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通过水热碳化提高奶牛粪便中磷的生物利用率并降低水的浸出率:加工温度和 CaO 添加剂的影响。
奶牛粪便是磷(P)的重要来源,当奶牛粪便直接施用于耕地时,可能会因 P 径流而造成环境风险。因此,人们越来越关注在土地施用前减少粪便中磷的流失。本研究旨在调查水热碳化法(HTC)产生的水炭在添加或不添加 CaO 的情况下从奶牛粪便中回收利用 P 的潜力,重点关注水炭中 P 的植物生物利用率、稳定性和转化。水炭是在不同温度(180-240°C)下制备的。在 220°C 的温度下,还评估了氧化钙添加量(按干重计算,占原料粪便的 0-10%)的影响。结果表明,水溶性钾(WSP)是钾径流损失的关键指标,在水碳中显著减少,特别是在添加氧化钙后。此外,随着 HTC 温度升高,水碳中的植物可利用钾含量增加,直至 220°C,占总钾含量的 90%,然后随着温度高于 220°C,植物可利用钾含量下降。与不添加添加剂的 220°C 水炭相比,添加 CaO 会略微降低植物生物利用率。在 220°C 温度下生产的水炭添加 10%的氧化钙后,P 的回收率很高(∼85%),径流风险降低了 97%。研究结果表明,通过氢化炭技术从奶牛粪便中生产的水炭可以有效地回收利用 P,这为奶牛废弃物的管理提供了一种可持续的方法,同时还降低了 P 径流的潜在环境风险。
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来源期刊
Environmental Technology
Environmental Technology 环境科学-环境科学
CiteScore
6.50
自引率
3.60%
发文量
0
审稿时长
4 months
期刊介绍: Environmental Technology is a leading journal for the rapid publication of science and technology papers on a wide range of topics in applied environmental studies, from environmental engineering to environmental biotechnology, the circular economy, municipal and industrial wastewater management, drinking-water treatment, air- and water-pollution control, solid-waste management, industrial hygiene and associated technologies. Environmental Technology is intended to provide rapid publication of new developments in environmental technology. The journal has an international readership with a broad scientific base. Contributions will be accepted from scientists and engineers in industry, government and universities. Accepted manuscripts are generally published within four months. Please note that Environmental Technology does not publish any review papers unless for a specified special issue which is decided by the Editor. Please do submit your review papers to our sister journal Environmental Technology Reviews at http://www.tandfonline.com/toc/tetr20/current
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