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新型“从食物到废物再到食物”系统的效率,包括食物废物的厌氧消化和在泡沫隔热温室中用消化物栽培蔬菜。

Efficiency of a novel "Food to waste to food" system including anaerobic digestion of food waste and cultivation of vegetables on digestate in a bubble-insulated greenhouse.

机构信息

Lindum AS, Drammen, Norway.

Rostock University, Rostock, Germany; Institute for Biogas, Waste Management & Energy, Weimar, Germany.

出版信息

Waste Manag. 2016 Oct;56:466-76. doi: 10.1016/j.wasman.2016.06.027. Epub 2016 Jul 15.

Abstract

At urban locations certain challenges are concentrated: organic waste production, the need for waste treatment, energy demand, food demand, the need for circular economy and limited area for food production. Based on these factors the project presented here developed a novel technological approach for processing organic waste into new food. In this system, organic waste is converted into biogas and digester residue. The digester residue is being used successfully as a stand-alone fertilizer as well as main substrate component for vegetables and mushrooms for the first time - a "digeponics" system - in a closed new low energy greenhouse system with dynamic soap bubble insulation. Biogas production provides energy for the process and CO2 for the greenhouse. With very limited land use highly efficient resource recycling was established at pilot scale. In the research project it was proven that a low energy dynamic bubble insulated greenhouse can be operated continuously with 80% energy demand reduction compared to conventional greenhouses. Commercial crop yields were achieved based on fertilization with digestate; in individual cases they were even higher than the control yields of vegetables such as tomatoes, cucumber and lettuce among others. For the first time an efficient direct use of digestate as substrate and fertilizer has been developed and demonstrated.

摘要

在城市地区,某些挑战集中出现:有机废物产生、废物处理需求、能源需求、粮食需求、循环经济需求以及有限的粮食生产面积。基于这些因素,本项目提出了一种将有机废物加工成新型食品的创新技术方法。在该系统中,有机废物被转化为沼气和消化残渣。消化残渣首次成功用作独立肥料以及蔬菜和蘑菇的主要基质成分——一种“消化农业”系统——在带有动态肥皂泡隔热的封闭新型低能耗温室系统中。沼气生产为该过程提供能源,为温室提供二氧化碳。在试点规模上,通过非常有限的土地利用实现了高效的资源回收。在研究项目中,已经证明低能耗动态气泡隔热温室可以连续运行,与传统温室相比,能源需求减少 80%。基于消化残渣施肥,实现了商业作物产量;在个别情况下,甚至高于西红柿、黄瓜和生菜等蔬菜的对照产量。首次开发并证明了消化残渣作为基质和肥料的高效直接利用。

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