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固体回收燃料:生物干废物机械加工过程中的物质流分析和燃料特性开发。

Solid recovered fuel: materials flow analysis and fuel property development during the mechanical processing of biodried waste.

机构信息

Cranfield University, Centre for Energy and Resource Technology, Department of Environmental Science and Technology, School of Applied Sciences, Cranfield, Bedfordshire MK43 0AL, United Kingdom.

出版信息

Environ Sci Technol. 2013 Mar 19;47(6):2957-65. doi: 10.1021/es3021815. Epub 2013 Mar 1.

Abstract

Material flows and their contributions to fuel properties are balanced for the mechanical section of a mechanical-biological treatment (MBT) plant producing solid recovered fuel (SRF) for the UK market. Insights for this and similar plants were secured through a program of sampling, manual sorting, statistics, analytical property determination, and material flow analysis (MFA) with error propagation and data reconciliation. Approximately three-quarters of the net calorific value (Q(net,p,ar)) present in the combustible fraction of the biodried flow is incorporated into the SRF (73.2 ± 8.6%), with the important contributors being plastic film (30.7 MJ kg(ar)(-1)), other packaging plastic (26.1 MJ kg(ar)(-1)), and paper/card (13.0 MJ kg(ar)(-1)). Nearly 80% w/w of the chlorine load in the biodried flow is incorporated into SRF (78.9 ± 26.2%), determined by the operation of the trommel and air classifier. Through the use of a novel mass balancing procedure, SRF quality is understood, thus improving on the understanding of quality assurance in SRF. Quantification of flows, transfer coefficients, and fuel properties allows recommendations to be made for process optimization and the production of a reliable and therefore marketable SRF product.

摘要

对英国市场生产固体回收燃料 (SRF) 的机械-生物处理 (MBT) 厂的机械部分进行了物料平衡和燃料特性分析。通过采样、手动分拣、统计、分析特性测定以及具有误差传播和数据协调的物料流分析 (MFA) 程序,获得了对此类工厂的深入了解。在生物干化物流的可燃部分中,约四分之三的净热值 (Q(net,p,ar)) 被纳入 SRF(73.2 ± 8.6%),其中重要的贡献者是塑料薄膜(30.7 MJ kg(ar)(-1))、其他包装塑料(26.1 MJ kg(ar)(-1))和纸/卡(13.0 MJ kg(ar)(-1))。生物干化物流中近 80%的氯负荷(78.9 ± 26.2%)被纳入 SRF,这是由转鼓和空气分级机的操作决定的。通过使用一种新颖的质量平衡程序,可以理解 SRF 的质量,从而提高对 SRF 质量保证的理解。对流量、传递系数和燃料特性的定量分析,可以为工艺优化和生产可靠且有市场的 SRF 产品提供建议。

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