Bilski Jerzy, Jacob Donna, Mclean Kyle, McLean Erin, Lander Mardee
Valley City State University, Valley City, ND 58072, USA.
North Dakota State University, Fargo, ND 58105, USA.
Adv Biores. 2012 Dec;3(4):176-180.
This study focuses on the environmentally friendly utilization of coal combustion residue, fly ash (FA) containing significant amounts of heavy metals. Knowledge about the potential use of FA as a component of growth media for plants is fragmentary. Preliminary experiments tested the possibility to grow cereal crops on media composed exclusively of FA. The analysis of seven different FA from lignite and semi-bituminous coal from North Dakota and Montana sources using inductively coupled plasma emission spectrophotometry showed high concentrations of heavy metals in coal (up to, in mg/kg): As:65, Cd:3.9, Co:38, Cr:77, Li:109, Mn:1547, Pb:106, Ni:41, V:306. Seedlings of rye, wheat, oats, barley, triticale, and regreen (hybrid between wheat and ryegrass) were planted in Petri dishes (10 cm in diameter) in growth media containing FA from lignite coal, FA from semi-bituminous coal, bottom ash, and Fargo clay soil as the control. Each treatment was performed in 3 replications, and each experiment was repeated 3 times. Germination rates, plant growth analysis, and dry matter yield were determined 2-3 weeks after planting. Germination rates and dry matter yield of oats, winterwheat and regreen were greater (10-20% above controls) in media composed of coal ash, but rye, barley, and wheat seedlings were affected by FA in media. These results show the potential for the utilization of FA as a growth media for cereal crops. Therefore, these plants might be used as green cover preventing wind erosion over the coal ash piles. However, this issue requires additional in depth investigation, including a thorough chemical analysis of plant material.
本研究聚焦于煤燃烧残渣——含有大量重金属的粉煤灰(FA)的环境友好型利用。关于粉煤灰作为植物生长介质成分的潜在用途的知识尚不完整。初步实验测试了仅用粉煤灰作为介质种植谷类作物的可能性。使用电感耦合等离子体发射光谱法对来自北达科他州和蒙大拿州褐煤和次烟煤的七种不同粉煤灰进行分析,结果表明煤中重金属含量很高(以mg/kg计):砷:65、镉:3.9、钴:38、铬:77、锂:109、锰:1547、铅:106、镍:41、钒:306。将黑麦、小麦、燕麦、大麦、小黑麦和再生草(小麦和黑麦草的杂交品种)的幼苗种植在直径10厘米的培养皿中,培养介质包含褐煤粉煤灰、次烟煤粉煤灰、底灰,以及作为对照的法戈粘土。每个处理进行3次重复,每个实验重复3次。种植2 - 3周后测定发芽率、植物生长情况分析和干物质产量。在由煤灰组成的介质中,燕麦、冬小麦和再生草的发芽率和干物质产量更高(比对照高10 - 20%),但黑麦、大麦和小麦幼苗在该介质中受到粉煤灰的影响。这些结果表明粉煤灰作为谷类作物生长介质具有利用潜力。因此,这些植物可用作绿色覆盖物以防止煤灰堆的风蚀。然而,这个问题需要进一步深入研究,包括对植物材料进行全面的化学分析。