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利用紫色光合细菌从猪场和鸡肉加工废水中进行资源回收的自然光照光生物反应器。

Naturally illuminated photobioreactors for resource recovery from piggery and chicken-processing wastewaters utilising purple phototrophic bacteria.

作者信息

Hülsen Tim, Stegman Samuel, Batstone Damien J, Capson-Tojo Gabriel

机构信息

Advanced Water Management Centre, Gehrmann Building, The University of Queensland, Brisbane, Queensland, 4072, Australia.

Advanced Water Management Centre, Gehrmann Building, The University of Queensland, Brisbane, Queensland, 4072, Australia.

出版信息

Water Res. 2022 May 1;214:118194. doi: 10.1016/j.watres.2022.118194. Epub 2022 Feb 13.

Abstract

Resource recovery from wastewater, preferably as high value products, has become an integral part of modern wastewater treatment. This work presents the potential to produce single cell protein (SCP) from pre-settled piggery wastewater (PWW) and meat chicken processing wastewater (CWW), utilising anaerobic purple phototrophic bacteria (PPB). PPB were grown as biofilm in outdoors 60 L, 80 L and 100 L flat-plate reactors, operated in sequential batch mode. PPB biofilm was recovered from reactor walls at a total solid (TS) content ∼90 g•L  , and the harvested biomass (depending on the wastewater) had a consistent quality, with high protein contents (50-65%) and low ash, potentially applicable as SCP. The COD, N and P removal efficiencies were 71±5.3%, 22±6.6%, 65±5.6% for PWW and 78±1.8%, 67±2.7% and 37±4.0% for CWW, respectively, with biofilm areal productivities up to 14 g TS•m  •d  . This was achieved at ammonium-N concentrations over 1.0 g•L   and temperatures up to 55 °C and down to 6 °C (daily fluctuations of 20-30 °C). The removal performances and biomass productivities were mostly dependent on the bioavailable COD in the form of volatile fatty acids (VFA). At sufficient VFA availability, the irradiance became limiting, capping biofilm formation. Harvesting of the suspended fraction resulted in increased productivities and recovery efficiencies, but lowered the product quality (e.g., containing undesired inerts). The optimum between quantity and quality of product is dependent on the wastewater characteristics (i.e., organic degradable fraction) and potential pre-treatment. This study shows the potential to utilise sunlight to treat agri-industrial wastewaters while generating protein-rich PPB biomass to be used as a feed, feed additive or feed supplement.

摘要

从废水中回收资源,最好是转化为高价值产品,已成为现代废水处理不可或缺的一部分。这项工作展示了利用厌氧紫色光合细菌(PPB)从预沉淀的养猪废水(PWW)和肉鸡加工废水(CWW)中生产单细胞蛋白(SCP)的潜力。PPB在户外60升、80升和100升的平板反应器中以生物膜的形式生长,采用序批式运行模式。从反应器壁上回收的PPB生物膜总固体(TS)含量约为90克/升,收获的生物质(取决于废水)质量稳定,蛋白质含量高(50-65%),灰分低,有潜力用作SCP。PWW的化学需氧量(COD)、氮和磷去除效率分别为71±5.3%、22±6.6%、65±5.6%,CWW的分别为78±1.8%、67±2.7%和37±4.0%,生物膜面积生产力高达14克TS·平方米·天。这是在铵态氮浓度超过1.0克/升、温度高达55℃且低至6℃(日波动20-30℃)的条件下实现的。去除性能和生物质生产力主要取决于挥发性脂肪酸(VFA)形式的生物可利用COD。在有足够VFA的情况下,光照成为限制因素,限制了生物膜的形成。收获悬浮部分可提高生产力和回收效率,但会降低产品质量(例如含有不需要的惰性物质)。产品数量和质量之间的最佳平衡取决于废水特性(即可生物降解部分)和潜在的预处理。这项研究表明,利用阳光处理农业工业废水,同时生产富含蛋白质的PPB生物质用作饲料、饲料添加剂或饲料补充剂具有潜力。

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