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首页> 外文期刊>Water Science and Technology >Solar-powered aeration and disinfection, anaerobic co-digestion, biological CO2 scrubbing and biofuel production: the energy and carbon management opportunities of waste stabilisation ponds
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Solar-powered aeration and disinfection, anaerobic co-digestion, biological CO2 scrubbing and biofuel production: the energy and carbon management opportunities of waste stabilisation ponds

机译:太阳能曝气和消毒,厌氧消化,生物二氧化碳净化和生物燃料生产:废物稳定池的能源和碳管理机会

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摘要

Waste stabilisation pond (WSP) technology offers some important advantages and interesting possibilities when viewed in the light of sustainable energy and carbon management. Pond systems stand out as having significant advantages due to simple construction; low (or zero) operating energy requirements; and the potential for bio-energy generation. Conventional WSP requires little or no electrical energy for aerobic treatment as a result of algal photosynthesis. Sunlight enables WSP to disinfect wastewaters very effectively without the need for any chemicals or electricity consumption and their associated CO2 emissions. The energy and carbon emission savings gained over electromechanical treatment systems are immense. Furthermore, because algal photosynthesis consumes CO2, WSP can be utilised as CO2 scrubbers. The environmental and financial benefits of pond technology broaden further when considering the low-cost, energy production opportunities of anaerobic ponds and the potential of algae as a biofuel. As we assess future best practice in wastewater treatment technology, perhaps one of the greatest needs is an improved consideration of the carbon footprint and the implications of future increases in the cost of electricity and the value of biogas.
机译:从可持续能源和碳管理的角度来看,废物稳定池(WSP)技术具有一些重要的优势和有趣的可能性。池塘系统由于结构简单而具有明显的优势。低(或零)运行能量要求;以及产生生物能源的潜力。常规的WSP由于藻类的光合作用而仅需很少或不需要电能进行需氧处理。 Sunlight使WSP可以非常有效地对废水进行消毒,而无需任何化学药品或电力消耗及其相关的CO2排放。通过机电处理系统节省的能源和碳排放量是巨大的。此外,由于藻类的光合作用消耗了CO2,因此WSP可用作CO2洗涤塔。考虑到厌氧池塘的低成本,能源生产机会以及藻类作为生物燃料的潜力,池塘技术的环境和经济效益将进一步扩大。当我们评估废水处理技术的未来最佳实践时,最大的需求之一可能是对碳足迹以及未来电费和沼气价值增加的影响的改进考虑。

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