干燥和减粒预处理对非食用小麦残茬中无机作物养分回收的影响。

R F Strayer, M P Alazraki, J Judkins
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引用次数: 3

摘要

通过水浸法可以很容易地从ALS作物残渣固体废物中回收无机营养物。然而,这些残留物的烘箱干燥和碾磨预处理经常需要适应作物科学家和设施存储的限制。作为一项研究的一部分,我们将比较处理这些废物的三种不同的生物反应器技术,我们意识到每种技术都采用了不同的干燥和缩小尺寸预处理。比较了渣前处理对浸出回收养分的影响。预处理包括三种干燥方法[新鲜,烤箱干燥(70℃过夜)和冻干]和两种尺寸缩小方法[切碎(2厘米长)和碾磨(2毫米直径)]。测定浸出前后的质量平衡(固体的干重和灰分含量)表明,新鲜残留物的增溶作用最小(干重损失23%,灰分损失50%),而冻干残留物的增溶作用最大(干重损失41% -47%,灰分损失接近100%)。淋滤液中主要元素(NO3、PO4、K、Ca和Mg)的矿物回收率在新鲜残留物中最差。淋滤液中磷、钾的回收率以烘干渣为最佳,钙、镁、氮的回收率以冻干渣为最佳。淋滤液中N、P、K的回收率差异在剁碎和磨碎之间最小,而对磨碎残渣中的Ca和Mg的回收率稍好一些。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of drying and size reduction pretreatments on recovery of inorganic crop nutrients from inedible wheat residues.

Inorganic nutrients can be easily recovered from ALS crop residue solid wastes by aqueous leaching. However, oven drying and milling pretreatment of these residues has been frequently required to accommodate crop scientists and facility storage limitations. As part of a research study that will compare three different bioreactor technologies for processing these wastes, we realized that different drying and size-reduction pretreatments had been utilized for each technology. This paper compares the effects of residue pretreatment on recovery of nutrients by leaching. Pretreatments included three drying methods [fresh, oven-dried (70 degrees C overnight), and freeze-dried] and two size reduction methods [chopped (2 cm length) and milled (2 mm diameter)]. Determination of mass balances (dry weight and ash content of solids) before and after leaching indicated solubilization was least for fresh residues (23% dry weight loss and 50% for ash loss), and most for freeze-dried residues (41-47% dry weight loss and nearly 100% for ash loss). Mineral recovery of major elements (NO3, PO4, K, Ca, and Mg) in leachates was poorest for fresh residues. P and K recovery in leachates were best for oven-dried residues and Ca, Mg, and N recovery best for freeze-dried residues. The differences in recovery for N, P, and K in leachates were minimal between chopping and milling and slightly better for Ca and Mg from milled residues.

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