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Mitigate Air Emissions from Animal Feeding Operations and Recover Nutrients Using an Integrated Water Curtain-Microalgal Culture System

机译:使用综合水幕微型培养系统减轻动物饲养操作的空气排放,并回收营养素

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Air emission mitigation technologies that are both economically and technologically feasible are in high demand to sustain future animal agriculture. In this study, we designed and evaluated an integrated Water Curtain-Microalgal Culture (WCMC) systemto mitigate air emissions and reuse nutrients to culture microalgae. The WCMC system included a water curtain, a windbreak wall, and a suspended algae reactor. The water curtain was formed by continuously pumping water into a perforated water tank thatflowed into an open raceway microalgal reactor. The exhaust pollutants (NH3 and particulate matter (PM)) from a poultry house were dissolved or absorbed into the water droplets. Local freshwater microalgae of Desmodesmus (R. Chodata) was screened and isolated from field samples naturally. Desmodesmus showed the best tolerances of temperature, nutrients, pH, and circulation shear force. The microalgal culture in the reactor was run in batch mode. The growth rates were 8.0 g/m2/day in batch 1, 15.6 g/m2/day in batch 2, 12.6 g/m2/day in batch 3, and 9.8 g/m2/day in batch 4. Ammonia (NH3) concentrations were reduced by 74.9% by the water curtains. Total suspended particle (TSP) mitigation efficiencies ranged from 75.0% to 95.0%. Carbon dioxide (C02) concentrations in the outlet air were similar to the concentrations in the inlet air of the water curtains with less than 10% reductions. The adaptation of this new technology will reduce the environmental impact and create a win-win situation for future animal agriculture and microalgal cultivation.
机译:在经济和技术可行的空气排放技术方面都需要维持未来的动物农业。在这项研究中,我们设计并评估了综合的水幕 - 微藻培养(WCMC)系统,减轻了空气排放和重用营养物质培养微藻。 WCMC系统包括水幕,防风壁和悬浮的藻类反应器。通过将水连续泵入多孔水箱中,通过将水泵送到开放的滚道微藻反应器中形成水幕。将来自家禽房子的排气污染物(NH3和颗粒物质(PM))溶解或吸收到水滴中。当地淡水微藻(R. chodata)自然被筛选和分离出田间样品。 Desmodesmus显示出最佳的温度,营养,pH和循环剪切力的公差。反应器中的微藻培养物以批量模式进行。分批1,15.6g / m 2 /天的生长率为8.0g / m 2 /天,批次3的12.6g / m 2 /天,分批3.8g / m 2 /天。氨(NH3)浓度水窗帘减少了74.9%。总悬浮颗粒(TSP)缓解效率范围为75.0%至95.0%。出口空气中的二氧化碳(CO 2)浓度类似于水窗帘的入口空气中的浓度与小于10%的降低。这种新技术的适应将减少环境影响,并为未来的动物农业和微藻培养创造双赢局面。

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