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Reduction of Airborne Bauxite Residue Dust Pollution by Enhancing the Structural Stability via the Application of Non-traditional Stabilizers

机译:通过应用非传统稳定剂来提高结构稳定性,通过加强结构稳定性来减少空气中铝土矿残渣污染

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摘要

Dust migration from bauxite residue causes serious occupational diseases and dramatic pollutions to on-site workers and the surrounding environment. In order to investigate the enhancement of mechanical properties and wind erosion behavior of non-traditional stabilizers in mitigating bauxite residue dust pollution, this paper carried out mechanical tests and wind tunnel simulations to reveal the independent and cooperative effect of mechanical properties on dust control performance and the effect of particle size on the accuracy of dust control evaluation strategy. Results illustrated the great significance of stabilizer concentration and particle size on both mechanical properties and dust control performance of treated samples. The penetration resistance was more accurate and effective in predicting dust control performance for lignosulfonate stabilizers, while unconfined compressive strength is more competitive as a key predicting index for polymer stabilizers. Particle size is critical to the evaluation of the dust control effect.
机译:铝土矿残留物的粉尘迁移导致严重的职业病和戏剧性的污染,以现场工人和周围环境。为了探讨非传统稳定剂在减轻铝土矿残留粉尘污染的非传统稳定剂的力学性能和风蚀行为的增强,本文进行了机械测试和风洞模拟,揭示了机械性能对粉尘控制性能的独立和合作效应粒度对粉尘控制评价策略精度的影响。结果说明了稳定剂浓度和粒度对处理样品的机械性能和防尘性能的重要意义。渗透性抗性更准确,有效地预测木质素磺酸盐稳定剂的粉尘控制性能,而非束缚的抗压强度与聚合物稳定剂的关键预测指标更具竞争力。粒度对于评估防尘控制效果至关重要。

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