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Integrative approach for wastewater treatment facilities with biomass transformation into energy

机译:将生物质转化为能源的废水处理设施的综合方法

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Current industrial environmental regulations favor processes with Integrative Pollution Prevention and Control (IPPC). While several systems are regarded by different international directives as IPPC Best Available Techniques or Technologies (BAT), none of these systems are capable handling various pollutants of both gaseous and aquatic effluents. Additional hinder to a BAT-IPPC complete procedure are hazardous or uneconomical byproducts of the IPPC processes and significant auxiliary costs for consumables and energy. The current research and subsequent projects are aimed to the development of a Biological Integrative Pollution Prevention and Control (Bio-IPPC) system. Such system can be incorporated in various industrial processes, in a way that the byproduct is without hazardous potential and may be used as an economical raw material. The main initiative and heart of these systems is a micro-algae reactor, which is capable of treating various types of industrial pollutants both in the gaseous and aquatic phases. The algae nutrition is through thin-film circulation of the aquatic effluent and the reactor atmosphere is enriched by flue gases. The excessive algal biomass may be utilized for economic purposes starting with animal feedstock, through organic fertilizer and as industrial raw material for biofuels production or direct energy production. The first industrial project is a wastewater (WW) polishing stage to an industry zone WW treatment facility, which ensures high level effluent purification and assimilation of greenhouse gases, which are released during the WW bioremediation process. The second industrial application aims to treat aquatic and gaseous effluents from coal propelled power plants. The raw algal material from both projects although very different, is used for the development of new efficient scheme for bioethanol production. In summary, the system presented is an actual Bio-IPPC that can interactively treat several industrial effluents, while utilizing the algal biomass as a profitable raw material.
机译:当前的工业环境法规偏爱采用综合污染预防与控制(IPPC)的流程。虽然有几种系统被不同的国际指令视为IPPC最佳可行技术或最佳技术(BAT),但这些系统均无法处理各种气态和水生污染物。 BAT-IPPC完整程序的其他障碍是IPPC流程的危险或不经济副产品以及消耗品和能源的大量辅助成本。当前的研究和后续项目旨在开发生物综合污染预防与控制(Bio-IPPC)系统。这样的系统可以并入各种工业过程中,使得副产物没有潜在的危险,并且可以用作经济的原料。这些系统的主要举措和核心是微藻反应器,它能够处理气相和水相中的各种类型的工业污染物。藻类营养是通过水生污水的薄膜循环而实现的,反应器气氛中的烟气富集了。过量的藻类生物质可从动物原料开始,通过有机肥料用于经济目的,并用作生产生物燃料或直接能源的工业原料。第一个工业项目是工业区WW处理设施的废水(WW)抛光阶段,该阶段可确保对废水进行高水平的净化和同化,这些废水是在WW生物修复过程中释放的。第二个工业应用旨在处理燃煤电厂的水和气态废水。来自两个项目的藻类原料虽然有很大的不同,但都用于开发生物乙醇生产的新有效方案。总而言之,本文介绍的系统是一个实际的Bio-IPPC,它可以交互处理多种工业废水,同时利用藻类生物质作为可盈利的原料。

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