修正案
磷石膏
淀粉酶
纤维素酶
转化酶
化学
孵化
土壤改良剂
农学
泥浆
肥料
动物科学
土壤水分
食品科学
环境科学
酶
生物
环境工程
蔗糖
土壤科学
原材料
法学
有机化学
生物化学
政治学
作者
Soumya Nayak,C. S. K. Mishra,B. C. Guru,Monalisa Rath
出处
期刊:PubMed
日期:2011-09-01
卷期号:32 (5): 613-7
被引量:42
摘要
Phosphogypsum (PG) is produced as a solid waste from phosphatic fertilizer plants. The waste slurry is disposed off in settling ponds or in heaps. This solid waste is now increasingly being used as a calcium supplement in agriculture. This study reports the effectof PG amendmenton soil physico chemical properties, bacterial and fungal count and activities of soil enzymes such as invertase, cellulase and amylase over an incubation period of 28 days. The highest mean percent carbon loss (55.98%) was recorded in 15% PG amended soil followed by (55.28%) in 10% PG amended soil and the minimum (1.68%) in control soil. The highest number of bacterial colonies (47.4 CFU g(-1) soil), fungal count (17.8 CFU g(-1) soil), highest amylase activity (38.4 microg g(-1) soil hr(-1)) and cellulase activity (38.37 microg g(-1) soil hr(-1)) were recorded in 10% amended soil. Statistically significant difference (p<0.05) has been recorded in the activities of amylase and cellulase over the period of incubation irrespective of amendments. Considering the bacterial and fungal growth and the activities of the three soil enzymes in the control and amended sets, it appears that 10% PG amendment is optimal for microbial growth and soil enzyme activities.
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