氮、磷、钾肥处理农田土壤的生物修复

Ekenwosu Joseph Ugochukwu
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引用次数: 4

摘要

本研究旨在通过评估生物修复前后土壤理化性质的数据,检验NPK肥料处理作为一种可行的基于生物刺激的土壤修复技术的“原位”修复效果。生物修复是通过施用NPK刺激土壤中的本土微生物来启动的,而修复是通过营养改良后的土壤物理化学条件以及种植60、90、120、150、180和210天后观察到的株高变化来确定的。采用随机完全区组设计(RCBD),在NPK肥料处理的土壤中种植姜黄根,并进行三次重复。对处理前后实验室和田间土壤理化参数的数据进行了分析。研究表明,有效钾、有效磷、总氮、pH值、阳离子交换容量(CEC)和有机碳含量均有所提高。然而,铝、土壤有机质和酸度都有所下降。沙子、淤泥和粘土也略有减少。研究表明,受益于营养改良的植物株高显著增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioremediation of arable soil using Nitrogen, Phosphorus, Potassium fertilizer treatment
This study seeks to examine “in situ” remediation effectiveness of NPK fertilizer treatment as a viable biostimulation-based bioremediation technology for soil remediation by evaluating data obtained from soil physicochemical properties before and after initiation of bioremediation. Bioremediation was initiated by stimulating indigenous microorganisms in soil by NPK application while remediation was determined by soil physicochemical condition after nutrient amendment and changes observed in plant height after 60, 90, 120, 150, 180 and 210 days of planting. Rhizomes of turmeric were planted in soil treated with NPK fertilizer and control in a randomized complete block design (RCBD) with three replications. Data generated from soil physicochemical parameters in laboratory and field was analyzed before and after treatment. Study showed increase in available potassium, available phosphorus, total nitrogen, pH, cation exchange capacity (CEC) and organic carbon. However, there was decrease in aluminium, soil organic matter and acidity. Sand, silt and clay also decreased slightly. Study revealed significant increase in plant height from plants that benefitted from nutrient amendment.
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