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Pilot-scale tests of an innovative 'serial self-turning reactor' composting technology in Thailand

机译:在泰国对创新的“串联式自动转向反应堆”堆肥技术进行中试

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摘要

Composting facilities in Thailand have faced various operational problems, resulting in the emission of odours, incomplete digestion of waste organics, and higher than desired costs. Composting technologies imported from developed countries tend to be sized for larger communities and are otherwise not suited for the rural communities that comprise more than 80% of all communities in Thailand. This article addresses the research and development of a novel composting technology aimed at filling this observed need. The study was divided into two parts: (1) the development of a new composting technology and fabrication of a prototype configuration of equipment; and (2) scale-up and study on a pilot-scale using real rubbish. The proposed technology, called 'serial self-turning reactor (STR)', entailed a vertical flow composting system that consisted of a set of aerobic reactors stacked on a set of gravity fed turning units. In-vessel bioreactor technology enables the operator to control composting conditions. The researchers found that a tower-like STR results in flexibility in size scale and waste processing residence time. The pilot-scale experiments showed that the proposed system can produce good quality compost while consuming comparatively little energy and occupying a compact space, compared to traditional land-intensive windrow composting facilities.
机译:泰国的堆肥设施面临各种运营问题,导致臭味的排放,有机废物的不完全消化以及高于所需的成本。从发达国家进口的堆肥技术往往适合较大的社区,否则不适合占泰国所有社区80%以上的农村社区。本文着眼于一种新型堆肥技术的研究和开发,旨在满足这种观察到的需求。这项研究分为两个部分:(1)新堆肥技术的开发和设备原型配置的制造; (2)扩大规模并使用实际垃圾研究中试规模。所提议的技术称为“串行自动转向反应器(STR)”,需要一种垂直流堆肥系统,该系统由堆叠在一组重力给料转向单元上的一组好氧反应器组成。容器内生物反应器技术使操作员可以控制堆肥条件。研究人员发现,像塔一样的STR可以在尺寸规模和废物处理停留时间方面带来灵活性。中试规模的实验表明,与传统的土地密集型堆肥堆肥设施相比,拟议的系统可产生优质的堆肥,同时消耗较少的能量并占用紧凑的空间。

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