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A systematic framework to assess the feasibility and effectiveness of carbohydrate-rich wastewater treatment with bioresource exploitation alternatives in small- and medium-sized enterprises

机译:评估中小型企业利用生物资源开发替代品处理富含碳水化合物的废水的可行性和有效性的系统框架

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摘要

A conceptual design framework for wastewater treatment with advanced bioresource exploitation is developed. Using the framework, a process that minimizes chemical oxygen demand (COD) of the treated wastewater is designed, considering factory-specific conditions while satisfying a constraint on treatment budget allowance (TBA). A food processing factory can now assess the initial investment, economic payback period, and environmental impacts associated with designs generated for various TBA constraints. For a specific factory in Taiwan producing 4900 kg day~(-1) of tofu, a baseline 1.9 million New Taiwan dollars investment is proposed, which is paid back in 5.5 years mainly by the avoided pollution fee rather than recovered heat and electricity. Two anaerobic digestion reactors (73.9 and 70.7 m~3) and a 5 kW biogas combined heat and power unit will reduce wastewater COD (from 14793 to 100 mg L~(-1)) and achieve a potential reduction of 72 kg-CO_2-eq. day~(-1) of greenhouse gas emissions.
机译:建立了先进的生物资源开发废水处理的概念设计框架。使用该框架,在考虑工厂特定条件的同时满足对处理预算津贴(TBA)的约束,设计了一种将处理后废水的化学需氧量(COD)降至最低的工艺。食品加工厂现在可以评估初始投资,经济投资回收期以及与针对各种TBA约束条件生成的设计相关的环境影响。对于台湾某特定工厂,每天生产4900千克豆腐(-1),建议投资190万新台币作为基准,这笔投资将在5.5年内收回,主要是通过避免污染费用而不是回收热电来实现的。两个厌氧消化反应器(73.9和70.7 m〜3)和一个5 kW沼气热电联产装置将减少废水中的COD(从14793降至100 mg L〜(-1))并潜在减少72 kg-CO_2- eq。天〜(-1)的温室气体排放量。

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