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The development and characterization of a novel coagulant for dust suppression in open-cast coal mines

机译:开放式煤矿尘埃抑制新型凝固剂的发展与鉴定

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This paper proposes the development of a novel coagulant for dust suppression in open-cast mines. Specifically, pretreated sodium lignin sulfonate and acrylic acid were first cross-linked, then the graft copolymerization of the intermediate product (the cross-linking product) and acrylamide was conducted and finally the resulting gelatinous substances were crushed. During the reaction process, N,N'-methylene-bis-acrylamide and ammonium persulfate were used as the cross-linking agent and initiator, respectively. Subsequently, the functional groups, crystalline structure, and thermal stability of the dust coagulant were examined by means of Fourier transform infrared spectra measurements, X-ray diffraction spectra measurements, and differential scanning calorimeter analysis. Moreover, single-factor experiments were conducted to explore the optimal synthesis condition. According to the experimental results, the coagulant achieved its optimal dust suppression performance under the following conditions: the mass ratio of lignin to acrylic acid was 1:3, the mass ratio of lignin to acrylamide was 2:7, the content of the cross-linking agent was 0.9%, the mass ratio of initiator to acrylamide was 2:100, the reaction temperature was set as 60?, and the pH value was set as 7. Finally, the coagulant was measured for its swelling kinetics, viscosity, film-forming hardness, peeling strength, and ability to suppress dust. It can be concluded that the coagulant exhibits a very high standard of both dust suppression and wind resistance.
机译:本文提出了开放式矿山粉尘抑制新型凝固剂的开发。具体地,首先进行预处理的木质素磺酸钠和丙烯酸,然后进行中间产物(交联产物)和丙烯酰胺的接枝共聚,最后压碎所得凝胶状物质。在反应过程中,将N,N'-亚甲基 - 双丙烯酰胺和铵过硫酸铵作为交联剂和引发剂。随后,通过傅里叶变换红外光谱测量,X射线衍射光谱测量和差示扫描量热计分析来检查粉尘凝结剂的官能团,晶体结构和热稳定性。此外,进行单因素实验以探索最佳合成条件。根据实验结果,凝结剂在以下条件下实现了其最佳的粉尘抑制性能:木质素对丙烯酸的质量比为1:3,木质素对丙烯酰胺的质量比为2:7,含量的横向连接剂为0.9%,引发剂与丙烯酰胺的质量比为2:100,将反应温度设定为60〜,将pH值设定为7.最后,测量凝结剂的肿胀动力学,粘度,薄膜 - 形成硬度,剥离强度和抑制灰尘的能力。可以得出结论,凝结剂表现出极高的灰尘抑制和抗风性。

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