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将作物残体的生物处理整合到水培甘薯栽培中。

Integrating biological treatment of crop residue into a hydroponic sweetpotato culture.

作者信息

Trotman A A, David P P, Bonsi C K, Hill W A, Mortley D G, Loretan P A

机构信息

Tuskegee University NASA Center for CELSS, AL, 36088, USA.

出版信息

Adv Space Res. 1997;20(10):1805-13. doi: 10.1016/s0273-1177(97)00845-4.

Abstract

Residual biomass from hydroponic culture of sweetpotato [Ipomoea batatas (L.) Lam.] was degraded using natural bacterial soil isolates. Sweetpotato was grown for 120 days in hydroponic culture with a nutrient solution comprised of a ratio of 80% modified half Hoagland solution to 20% filtered effluent from an aerobic starch hydrolysis bioreactor. The phytotoxicity of the effluent was assayed with Waldmann's Green' lettuce (Lactuca sativa L.) and the ratio selected after a 60-day bioassay using sweetpotato plants propagated vegetatively from cuttings. Controlled environment chamber experiments were conducted to investigate the impact of filtrate from biological treatment of crop residue on growth and storage root production with plants grown in a modified half Hoagland solution. Incorporation of bioreactor effluent, reduced storage root yield of 'Georgia Jet' sweetpotato but the decrease was not statistically significant when compared with yield for plants cultured in a modified half Hoagland solution without filtrate. However, yield of 'TU-82-155' sweetpotato was significantly reduced when grown in a modified half Hoagland solution into which filtered effluent had been incorporated. Total biomass was significantly reduced for both sweetpotato cultivars when grown in bioreactor effluent. The leaf area and dry matter accumulation were significantly (P < 0.05) reduced for both cultivars when grown in solution culture containing 20% filtered effluent.

摘要

利用从土壤中分离出的天然细菌对水培甘薯[Ipomoea batatas (L.) Lam.]的残余生物量进行降解。甘薯在水培条件下生长120天,培养液由80%改良的半霍格兰溶液和20%来自好氧淀粉水解生物反应器的过滤废水组成。用“瓦尔德曼绿”生菜(Lactuca sativa L.)测定废水的植物毒性,并在使用扦插无性繁殖的甘薯植株进行60天生物测定后选择该比例。进行了可控环境室实验,以研究作物残渣生物处理后的滤液对在改良半霍格兰溶液中生长的植物的生长和贮藏根产量的影响。添加生物反应器废水降低了“佐治亚喷气”甘薯的贮藏根产量,但与在不添加滤液的改良半霍格兰溶液中培养的植株产量相比,降幅无统计学意义。然而,“TU - 82 - 155”甘薯在添加了过滤废水的改良半霍格兰溶液中生长时,产量显著降低。当在生物反应器废水中生长时,两个甘薯品种的总生物量均显著降低。当在含有20%过滤废水的溶液培养中生长时,两个品种的叶面积和干物质积累均显著(P < 0.05)降低。

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