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基于膜的猪粪氮回收中试规模示范

Pilot-Scale Demonstration of Membrane-Based Nitrogen Recovery from Swine Manure.

作者信息

Molinuevo-Salces Beatriz, Riaño Berta, Vanotti Matias B, Hernández-González David, García-González María Cruz

机构信息

Agricultural Technological Institute of Castilla y León, Ctra. Burgos, km 119, 47071 Valladolid, Spain.

Agricultural Research Service, Coastal Plains Soil, Water and Plant Research Center, United States Department of Agriculture, 2611 W. Lucas St., Florence, SC 29501, USA.

出版信息

Membranes (Basel). 2020 Oct 1;10(10):270. doi: 10.3390/membranes10100270.

Abstract

Gas-permeable membranes technology presents a high potential for nitrogen (N) recovery from wastewaters rich in ammonia (NH). The EU project Ammonia Trapping (AT) is aimed at transferring knowledge from the lab-scale level to on-farm pilot-scale level, using this technology to recover NH from livestock wastewaters. The goal of this study is to report the results of an on-farm pilot-scale demonstration plant using gas-permeable membranes to recover N from raw swine manure. After a setup optimization of the plant, stable, and continuous operation was achieved. The maximum NH recovery rate obtained was 38.20 g NH-N m membrane day. This recovery rate was greatly affected by the temperature of the process. In addition to its contribution to NH emissions reduction, this technology contributes to the recovery of nutrients in the form of a concentrated stable ammonium sulphate solution. This solution contained 3.2% of N, which makes it suitable for fertigation. The economic approach revealed an economic feasibility of the technology, resulting in a cost of 2.07 € per kg N recovered.

摘要

气体渗透膜技术在从富含氨(NH₃)的废水中回收氮(N)方面具有很高的潜力。欧盟的“氨捕获”(AT)项目旨在将实验室规模的知识转化为农场中试规模的应用,利用该技术从畜禽废水中回收氨。本研究的目的是报告一个农场中试规模示范工厂使用气体渗透膜从生猪原粪中回收氮的结果。在对该工厂进行设置优化后,实现了稳定且连续的运行。获得的最大氨回收率为38.20克氨氮/平方米膜·天。该回收率受工艺温度的影响很大。除了有助于减少氨排放外,该技术还有助于以浓缩稳定的硫酸铵溶液形式回收养分。该溶液含3.2%的氮,适合用于施肥灌溉。经济分析表明该技术在经济上可行,回收每千克氮的成本为2.07欧元。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8508/7600830/088768476f5b/membranes-10-00270-g001.jpg

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