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首页> 外文期刊>Journal of Enviromental Quality >Amelioration of Physical Strength in Waste Foundry Green Sands for Reuse as a Soil Amendment
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Amelioration of Physical Strength in Waste Foundry Green Sands for Reuse as a Soil Amendment

机译:改善废弃铸造绿砂中的物理强度,以用作土壤改良剂

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To avoid increasing costs of landfill disposal, it has become increasingly important for U.S. foundries to identify beneficial reuses for the 8 to 12 million tons of waste foundry sand (WFS) generated annually. A major drawback to the reuse of some WFSs as a soil amendment is their high soil strength, under dry conditions, where root growth may be limited. Fifteen WFSs were analyzed for strength to rupture using lab-formed clods, exchangeable cations (Na, Mg, Ca), metal oxide concentration (Fe, Mn, Al, Si), cation exchange capacity (CEC), and % clay. Several WFS samples from gray iron foundries demonstrated high strength to rupture values (> 1.5 MPa), and could potentially restrict root growth in amended soils. The percentage of Na-bentonite exhibited a positive correlation (R2 = 0.84) with strength to rupture values. When WFSs containing more Na-bentonite were saturated with 1 mol L–1 Ca ions, strength values decreased by 70%. Waste foundry sands containing less Na-bentonite were saturated with 1 mol L–1 Na ions and exhibited a threefold increase in strength. Additions of gypsum (up to 9.6 g kg–1 sand) to high strength waste foundry sands also caused decreases in strength. These results indicate that high strength WFSs have properties similar to hardsetting soils which are caused by high Na+ clay content and can be ameliorated by the addition of Ca2+.
机译:为了避免增加垃圾掩埋处理的成本,对于美国铸造厂来说,为每年产生的8至1200万吨废铸造砂(WFS)确定有益的再利用已变得越来越重要。某些WFS作为土壤改良剂重复使用的主要缺点是它们在干燥条件下(其根系生长可能受到限制)的高土壤强度。使用实验室形成的凝块,可交换阳离子(Na,Mg,Ca),金属氧化物浓度(Fe,Mn,Al,Si),阳离子交换容量(CEC)和%粘土分析了15个WFS的断裂强度。来自灰铸铁厂的几份WFS样品显示出高的断裂强度(> 1.5 MPa),并且可能会限制改良土壤中的根系生长。钠膨润土的百分比与断裂强度呈正相关(R2 = 0.84)。当含有更多钠膨润土的WFS用1 mol L-1 Ca离子饱和时,强度值降低了70%。钠膨润土含量少的铸造废砂被1 mol L-1 Na离子饱和,强度增加了三倍。在高强度的铸造废砂中添加石膏(重达9.6 g kg-1的砂)也导致强度降低。这些结果表明,高强度WFS具有类似于由高Na +粘土含量引起的硬化土壤的特性,并且可以通过添加Ca2 +来改善。

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