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Resource Recovery from Wastewater by Biological Technologies: Opportunities Challenges and Prospects

机译:通过生物技术从废水中回收资源:机遇挑战和前景

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摘要

Limits in resource availability are driving a change in current societal production systems, changing the focus from residues treatment, such as wastewater treatment, toward resource recovery. Biotechnological processes offer an economic and versatile way to concentrate and transform resources from waste/wastewater into valuable products, which is a prerequisite for the technological development of a cradle-to-cradle bio-based economy. This review identifies emerging technologies that enable resource recovery across the wastewater treatment cycle. As such, bioenergy in the form of biohydrogen (by photo and dark fermentation processes) and biogas (during anaerobic digestion processes) have been classic targets, whereby, direct transformation of lipidic biomass into biodiesel also gained attention. This concept is similar to previous biofuel concepts, but more sustainable, as third generation biofuels and other resources can be produced from waste biomass. The production of high value biopolymers (e.g., for bioplastics manufacturing) from organic acids, hydrogen, and methane is another option for carbon recovery. The recovery of carbon and nutrients can be achieved by organic fertilizer production, or single cell protein generation (depending on the source) which may be utilized as feed, feed additives, next generation fertilizers, or even as probiotics. Additionlly, chemical oxidation-reduction and bioelectrochemical systems can recover inorganics or synthesize organic products beyond the natural microbial metabolism. Anticipating the next generation of wastewater treatment plants driven by biological recovery technologies, this review is focused on the generation and re-synthesis of energetic resources and key resources to be recycled as raw materials in a cradle-to-cradle economy concept.
机译:资源可用性的限制正在推动当前社会生产系统的变化,将重点从废水处理等残留物处理转向资源回收。生物技术过程提供了一种经济,通用的方法,可以将废物/废水中的资源集中并将其转化为有价值的产品,这是从摇篮到摇篮生物经济的技术发展的前提。这篇综述确定了能够在整个废水处理周期中实现资源回收的新兴技术。因此,以生物氢形式(通过光和暗发酵过程)和沼气(在厌氧消化过程中)形式的生物能源已成为经典目标,因此,将脂质生物质直接转化为生物柴油也引起了关注。该概念与以前的生物燃料概念相似,但更具可持续性,因为可以从废物生物质中生产第三代生物燃料和其他资源。由有机酸,氢和甲烷生产高价值生物聚合物(例如,用于生物塑料制造)是碳回收的另一种选择。碳和养分的回收可以通过有机肥料的生产或单细胞蛋白质的产生(取决于来源)来实现,这些蛋白质可以用作饲料,饲料添加剂,下一代肥料,甚至可以用作益生菌。另外,化学氧化还原和生物电化学系统可以回收天然微生物代谢以外的无机物或合成有机产物。预期由生物回收技术驱动的下一代废水处理厂,本综述着重于能量的产生和再合成以及关键资源作为摇篮到摇篮经济概念循环再利用的关键资源的合成。

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