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全尺寸研究外循环污泥床(ECSB)系统用于威士忌酿酒厂的厌氧废水处理。

A full-scale study of external circulation sludge bed (ECSB) system for anaerobic wastewater treatment in a whiskey distillery.

机构信息

EigenGreen International Inc., Taipei City, 10483, Taiwan.

Eco-digital Technology Inc., Taipei City, 10483, Taiwan.

出版信息

Environ Sci Pollut Res Int. 2019 Nov;26(33):34261-34276. doi: 10.1007/s11356-018-4018-3. Epub 2019 Jan 11.

Abstract

Waste liquid streams from distillery were a hurdle in conventional wastewater treatment due to extreme high chemical oxygen demand (COD) and fluctuating feed conditions. A recently commissioned full-scale external circulation sludge bed (ECSB) was applied at a malt whiskey distillery in northeast Taiwan. Start-up of the new ECSB system, which has a total volume of 490 m with diameter of 6.55 m (ø) and height of 15.9 m (H), was performed by gradual increasing influent flow rates from zero to the design value of 300 m day in the first 90 days. In the subsequent 204 days, both influent flow rates (0-389 m day) and COD concentrations (2.8-18.1 kg L) were highly fluctuated due to diverse batches from the distillery. However, effective bioremediation (COD removal 95.1 ± 2.4%) and biogas production (1195 ± 724 L day) were achieved in this system. Intensively, the Imhoff tests were carried out and shown the settled solids concentration by 0.5 ± 0.4 mL L, while size distributions of granular sludge were analyzed and observed by SEM-EDS. In addition, developments of the anaerobic systems (including lab, pilot, and full scale from the simplest reactor to the latest ECSB) applied in whiskey wastewater treatment were reviewed with their operational parameters for comparing performances of various anaerobic systems. In general, real-time monitoring and feasible operation strategies were critical to successfully run the system by producing clean energy simultaneously. It provides more economically attractive and sustainable-to-adopt ECSB not only an end-of-pipe process but also a bioresource technology.

摘要

酿酒厂的废液流是传统废水处理的一个难题,因为其化学需氧量(COD)极高且进料条件波动较大。最近在台湾东北部的一家麦芽威士忌酿酒厂投入使用了一个全新的全规模外部循环污泥床(ECSB)。新的 ECSB 系统的启动,其总容积为 490 立方米,直径为 6.55 米(ø),高度为 15.9 米(H),通过在最初的 90 天内逐步将进水流量从零增加到设计值 300 立方米/天来完成。在随后的 204 天中,由于来自酿酒厂的不同批次,进水流量(0-389 立方米/天)和 COD 浓度(2.8-18.1 公斤/升)均高度波动。然而,该系统仍实现了有效的生物修复(COD 去除率为 95.1±2.4%)和沼气生产(1195±724 升/天)。此外,还进行了 Imhoff 测试,结果表明沉淀固体浓度为 0.5±0.4 毫升/升,同时通过 SEM-EDS 分析和观察了颗粒污泥的粒径分布。此外,还回顾了应用于威士忌废水处理的厌氧系统(包括实验室、中试和全规模,从最简单的反应器到最新的 ECSB)的发展,并比较了各种厌氧系统的性能,给出了其操作参数。总的来说,实时监测和可行的操作策略对于成功运行该系统同时生产清洁能源至关重要。它提供了更具经济吸引力和可持续性的 ECSB,不仅是一种末端处理工艺,还是一种生物资源技术。

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