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Bioconversion of wastewater from sweet potato starch production to Paenibacillus polymyxa biofertilizer for tea plants

机译:甘薯淀粉生产废水的生物转化为茶树多粘芽孢杆菌生物肥料

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摘要

Wastewater from the sweet potato starch industry is a large source of nutrient-rich substrates. We assessed whether this wastewater could be used to produce Paenibacillus polymyxa biofertilizer for foliar application to tea trees. Using the central composite design methods we experientially determined that the optimal culture conditions for P. polymyxa were pH, 6.5; temperature, 29.0°C; and incubation time, 16?h. Under these conditions, a maximum biomass of 9.7 × 109?cfu/mL was achieved. We then conducted a yearlong field investigation to determine the effect of P. polymyxa biofertilizer on the growth of tea plants ( Camellia sinensis ). Tea yield, quantity of water extract, and tea polyphenol levels were significantly higher after foliar application of the biofertilizer compared to that in the controls by an average of 16.7%, 6.3%, and 10.4%, respectively. This approach appears to be technically feasible for organic tea production, and is an environmentally friendly way to utilize wastewater.
机译:红薯淀粉行业的废水是富含营养物质的基质的主要来源。我们评估了该废水是否可用于生产多粘芽孢杆菌生物肥料,以将其叶面施用到茶树上。使用中心复合设计方法,我们经验确定了多粘体育的最佳培养条件为pH值为6.5;温度29.0°C;潜伏时间为16小时。在这些条件下,最大生物量为9.7×10 9 Δcfu/ mL。然后,我们进行了为期一年的田间调查,以确定多粘菌生物肥对茶树(Camellia sinensis)生长的影响。叶面施用生物肥料后,茶的产量,水提取物的量和茶中的多酚水平分别比对照分别高16.7%,6.3%和10.4%。这种方法在生产有机茶方面似乎在技术上是可行的,并且是一种利用废水的环保方法。

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