Mulbry Walter, Westhead Elizabeth Kebede, Pizarro Carolina, Sikora Lawrence
Animal Manure & By-products Laboratory, ARS/USDA, Building 306, Room 109 BARC-East, Beltsville, MD 20705-2350, USA.
Bioresour Technol. 2005 Mar;96(4):451-8. doi: 10.1016/j.biortech.2004.05.026.
An alternative to land spreading of manure is to grow crops of algae on the N and P present in the manure and convert manure N and P into algal biomass. The objective of this study was to evaluate the fertilizer value of dried algal biomass that had been grown using anaerobically digested dairy manure. Results from a flask study using two soils amended with algal biomass showed that 3% of total algal nitrogen (N) was present as plant available N at day 0. Approximately 33% of algal N was converted to plant available N within 21 days at 25 degrees C in both soils. Levels of Mehlich-3 extractable phosphorus (P) in the two soils rose with increasing levels of algal amendment but were also influenced by existing soil P levels. Results from plant growth experiments showed that 20-day old cucumber and corn seedlings grown in algae-amended potting mix contained 15-20% of applied N, 46-60% of available N, and 38-60% of the applied P. Seedlings grown in algae-amended potting mixes were equivalent to those grown with comparable levels of fertilizer amended potting mixes with respect to seedling dry weight and nutrient content. These results suggest that dried algal biomass produced from treatment of anaerobically digested dairy manure can substitute for commercial fertilizers used for potting systems.
除了将粪肥进行土地施用外,另一种方法是利用粪肥中的氮和磷种植藻类作物,并将粪肥中的氮和磷转化为藻类生物质。本研究的目的是评估利用厌氧消化的奶牛粪肥培育出的干燥藻类生物质的肥料价值。在一项使用两种添加了藻类生物质的土壤的烧瓶研究中,结果表明在第0天,总藻类氮(N)中有3%以植物可利用氮的形式存在。在25摄氏度下,两种土壤中约33%的藻类氮在21天内转化为植物可利用氮。两种土壤中Mehlich-3可提取磷(P)的含量随着藻类添加量的增加而升高,但也受土壤中现有磷含量的影响。植物生长实验结果表明,在添加了藻类的盆栽混合料中生长20天的黄瓜和玉米幼苗含有15 - 20%的施氮量、46 - 60%的有效氮和38 - 60%的施磷量。在添加了藻类的盆栽混合料中生长的幼苗,在幼苗干重和养分含量方面,与在添加了相当水平肥料的盆栽混合料中生长的幼苗相当。这些结果表明,由厌氧消化的奶牛粪肥处理产生的干燥藻类生物质可以替代用于盆栽系统的商业肥料。