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首页> 外文期刊>Research on Crops >Starch wastewater effluent from an anaerobic baffled reactor low environmental cost biofertilizer for Shanghai cabbagecultivation
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Starch wastewater effluent from an anaerobic baffled reactor low environmental cost biofertilizer for Shanghai cabbagecultivation

机译:厌氧折流板反应器低成本环保型生物肥料用于上海甘蓝栽培的淀粉废水

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摘要

In this study, the liquid digestate (LD) from an anaerobic baffled reactor (ABR) treating starch wastewater (SW) was used as a low-cost biofertilizer for the cultivation of Shanghai cabbage, a common Chinese vegetable. A greenhouse randomized pot experiment was conducted to evaluate the following: the effect of urea (UN), SW and liquid digestate (LD) on the yield and NO_3 and NO_2~- content of the vegetable; NH_4~+, NO_3~-, total dissolved nitrogen (TDN) and dissolved organic carbon (DOC) of the soil; and N_2O emissions during the experimental period. SW was used for three treatments (100, 200, or 300 ml per pot per application) and LD for six treatments (50, 100, 150, 200, 250 or 300 ml per pot per application). Our results showed that LD significantly increased the vegetable yield. Application of 200 ml of LD provided 41.5% higher yield than UN application. Furthermore, the NO_3~- content of LD-treated vegetables was 2.40-42.83 times lower than that of UN-treated vegetables. LD treatment also reduced the risk of N leaching from the soil, and the total N_2O fluxes (FPV 30) per tonne fresh weight of vegetable for LD 4 were about 39.8% lower than those of the UN. Thus, LD was found to be a feasible low-cost biofertilizer alternative to UN for sustainable vegetable farming.
机译:在这项研究中,厌氧折流板反应器(ABR)处理淀粉废水(SW)的液体消化物(LD)被用作低成本生物肥料,用于种植常见的中式蔬菜上海白菜。进行温室随机盆栽试验以评估以下内容:尿素(UN),SW和液体消化物(LD)对蔬菜产量,NO_3和NO_2〜-含量的影响; NH_4〜+,NO_3〜-,土壤总溶解氮(TDN)和溶解有机碳(DOC);和实验期间的N_2O排放。 SW用于三种处理(每个应用程序每盆100、200或300 ml),LD用于六种处理(每个应用程序每盆50、100、150、200、250或300 ml)。我们的结果表明,LD显着提高了蔬菜产量。施用200毫升LD的产量比联合国施用的高41.5%。此外,LD处理蔬菜的NO_3〜-含量比UN处理蔬菜低2.40-42.83倍。 LD处理还减少了土壤中N淋溶的风险,LD 4的每吨蔬菜鲜重N_2O通量(FPV 30)比联合国低约39.8%。因此,发现LD是联合国可持续蔬菜种植的可行的低成本生物肥料替代品。

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