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通过鸟粪石沉淀从污水污泥中回收磷的潜力:印度拉贾斯坦邦政策框架的重塑。

Phosphorus recovery potential from sewage sludge by struvite precipitation: remodelling policy framework in Rajasthan, India.

机构信息

Municipal Council Bhiwadi, Department of Local Self-government, Government of Rajasthan, India.

Motilal Nehru National Institute of Technology Allahabad, Prayagraj, Uttar Pradesh, India E-mail:

出版信息

Water Sci Technol. 2024 Aug;90(3):1009-1022. doi: 10.2166/wst.2024.243. Epub 2024 Jul 16.

Abstract

The manufacturing of fossil-based fertilizers by extraction of rock phosphate has contributed to carbon emissions and depleted the non-renewable phosphorus reserves. Sewage sludge, which is a waste product from Sewage Treatment Plants (STPs), is rich in phosphorus. The existing techniques for sludge management contribute to carbon emissions and ecological footprint. Struvite (raw fertilizer) and biochar recovery from sludge has emerged as viable methods to reduce carbon emission and ensure economic sustainability of STPs. In this work, the potential for phosphorus recovery and revenue generation is discussed for Rajasthan state in India. The fate of phosphorus and heavy metals in STPs is evaluated which indicates that about 70% of the phosphorus and trace amounts of metals end up in sewage sludge. Further, the power consumption is high in STPs due to industrial wastewater ingress. There is a need to bridge the gap between sewage treatment and generation in Rajasthan, improve STP performance before resource recovery inclusion at policy-level and scale-up. Mixing struvite with biochar can lead to safe application of struvite as raw fertilizer as heavy metals are sequestered by biochar. A business framework is developed to serve as a blueprint and potential model for linking technical and market viability.

摘要

通过开采磷矿来制造基于化石的肥料导致了碳排放,并消耗了不可再生的磷储量。污水污泥是污水处理厂(STP)的一种废物,富含磷。现有的污泥管理技术会导致碳排放和生态足迹增加。从污泥中回收鸟粪石(原始肥料)和生物炭已成为减少碳排放和确保 STP 经济可持续性的可行方法。在这项工作中,讨论了印度拉贾斯坦邦的磷回收和创收潜力。评估了 STP 中磷和重金属的命运,表明大约 70%的磷和痕量金属最终进入污水污泥。此外,由于工业废水的进入,STP 的电力消耗很高。需要弥合拉贾斯坦邦污水处理和发电之间的差距,在政策层面纳入资源回收之前提高 STP 的性能并扩大规模。将鸟粪石与生物炭混合可以安全地将鸟粪石用作原始肥料,因为重金属被生物炭固定。开发了一个业务框架,作为连接技术和市场可行性的蓝图和潜在模型。

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