|
|
Preparation and Optimum Proposal of Biological Dust Suppressant Using Straw Based on Orthogonal Test |
YANG Yan-jun1, ZHAO Quan-sheng2, MI Yong-jin3 |
1. China Construction Luqiao District Group Co. Ltd, Shijiazhuang Hebei 050018, China;
2. Hebei University of Science and Technology, Shijiazhuang Hebei 050018, China;
3. Jingha North route Branch of Hebei Expressway Group, Zunhua Hebei 064200, China |
|
|
Abstract In order to the prevent and control construction dust, and to avoid secondary pollution, on the basis of single factor experiment, the viscosity, surface tension, determination of water retention, and water absorption rate test were carried out in this paper, hydroxyethyl cellulose and hydroxypropyl methyl cellulose were selected as adhesive and water retention agent, Y1 and J1 were selected as surfactant and water absorption from straw extract of a variety of functional raw materials. Taking the viscosity of solution, pH value, water loss rate at high temperature, shell compressive strength and infiltration time as the assessment indexes, a four-factor and three-level orthogonal test was designed to optimize each component of the dust suppressant. A green, environmentally friendly and degradable straw dust suppressant was prepared, and the pilot test was carried out in the construction site of expressway. The orthogonal test results show that the influence degree of mass concentration of the four factors on the performance of straw utilization type dust depressant is as follows:hydroxyethyl cellulose has the greatest influence, followed by J1, and hydroxypropyl methyl cellulose and Y1 have the least influence. When hydroxyethyl cellulose, hydroxypropyl methyl cellulose, J1, Y1 mass concentration 0.35%, 0.03%, 0.05% and 0.03% respectively, the straw utilization type dust suppression agent viscosity value is 106.3mpa·s, and water-retention rate is 22.51%, pH value is 7.23,and has the compressive strength of 79.02 KPa and the infiltration time of 4.21 min, its density is 1.030 g/cm, Product viscosity is moderate, it spray easy, surface tension is small, meet the requirements of the current class of coal dust suppression agent products indicators. Highway field pilot test shows that, the surface have the shaw hardness of 70HA of shell in four hours after the construction site is sprayed biological dust suppressant in accordance with the dosage of 3 L/m2, the shell can effectively stop the rain and wind erosion, PM2.5 and PM10 dust suppression rate are 91.2%, 91.4% and 79.2% and 77.7% in the 1 d and 7 d respectively, have very good inhibition effect on construction dust.
|
Received: 15 April 2021
|
Fund:Supported by the Hebei Provincial Highway Engineering Green Construction Technology Innovation Center Fund (No.2020006), Hebei Provincial Department of Transportation Science and Technology Plan Project (No.2018-20) |
Corresponding Authors:
YANG Yan-jun
E-mail: zony8@163.com
|
|
|
|
[1] LI Xiao-yan. Empirical Analysis of the Smog Factors in Beijing-Tianjin-Hebei Region[J].Ecological Economy, 2016, 32(3):144-150. (in Chinese)
[2] SHANG D J, PENG J F, GUO S, et al. Secondary Aerosol Formation in Winter Haze Over the Beijing-Tianjin-Hebei Region, China[J]. Frontiers of Environmental Science & Engineering, 2020, 15(2):6309-6316.
[3] AN Hai-gang, LI Jia-pei, ZHANG Cui-zhi. Spatial Correlation Network and Season Evolution of PM2.5 Pollution in Beijing-Tianjin-Hebei and Surrounding Cities[J]. Ecology and Environmental Sciences, 2020, 29(7):1377-1386. (in Chinese)
[4] JIN H, ZHANG Y, CHEN K, et al. Preparation and Characterization of a Composite Dust Suppressant for Coal Mines[J]. Polymers, 2020, 12(12):2942.
[5] YANG Song,YE Zhi-xiang,YANG Huai-jin,et al. Characteristics and Sources of Fugitive Dust Pollution from Construction Site in Chengdu[J].Environmental Engineering, 2015, 33(S1):324-329, 404. (in Chinese)
[6] ZHOU Ya-ping, LI Yong-qiang, HE Zhong-hu. The Research Status and Development of Dust Suppression Agent[J].Guangzhou Chemical,2015, 43(7):48-49,69. (in Chinese)
[7] LAI Shui-li, GUO Ya-na,WANG Jing-jing. Preparation and Application of Carboxymethyl Cellulose Grafting on BA/MMA Dust Suppressant[J].Modern Chemical Industry, 2017, 37(1):79-82. (in Chinese)
[8] LIU Bo, ZHANG Ming-jun, WEN Hu. Research Application Status and Development of Dust Suppressant[J]. Safety in Coal Mines, 2018, 49(8):206-209. (in Chinese)
[9] GE Shao-cheng, KANG Zhuo-wei, JING De-ji,et al. Experimental Study on Performance of a New Type Macromolecule Dust Suppressant[J]. Journal of Safety Science and Technology, 2016, 12(10):56-61. (in Chinese)[ZK)]
[10] WANG Qin, TIAN Sen-lin, ZHENG Yun-hai, et al. Formula Development and Performance Test of Concrete Dust-depressor[J].Environmental Pollution and Prevention, 2018, 40(6):657-661. (in Chinese)
[11] LEI Z, YANG S, HU B, et al. Evaluating of the performance of a Composite Wetting Dust Suppressant on Lignite Dust[J]. Powder Technology, 2018, 339:882-893.
[12] ZAHNG Lei-bo, JIAO Jiao, ZHAO Xue-yan. Study on Preparation and Properties of Eco-friendly Dust Suppressant[J]. Transactions of the Chinese Society of Agricultural Engineering, 2013, 29(18):218-225. (in Chinese)
[13] LI Shu-fang, TIAN Jin, XIE Hong, et al. Study on Preparation of Wetting Dust Suppressant From Papermaking Waste and Its Properties[J]. Safety in Coal Mines, 2019, 50(7):14-16, 20. (in Chinese)
[14] WANG H, CHENG W M, SUN B, et al. Effects of radial Air Flow Quantity and Location of An Air Curtain Generator on Dust Pollution Control at Fully Mechanized Working Face[J]. Advanced Powder Technology, 2017, 28(7):1780-1791.
[15] HE Long-qiang, HU Peng, LIU Zhong-yang. Preparation of Salt-resistance Super Absorbent Resin by Graft Copoly-merization of Poplar Leave Cellulose and Acrylic Acid Series[J].New Chemical Materials, 2016, 44(4):100-102. (in Chinese)
[16] LUO Rui-dong, LIN Mu-song, LUO Yun-bai,et al. Preparation and Properties of a New Type of Coal Dust Suppressant[J]. Journal of China Coal Society, 2016, 41(S2):454-459. (in Chinese)
[17] SUN Bin-bin, YANG Bo. Review of Measurement Methods about Water Absorption and Water Retention Properties of Super-absorbent Resin[J].Chemical Engineer, 2013, 27(10):30-33. (in Chinese)
[18] XU Cui-cui, WANG Dan, WEN Jin-hao. Influence on Dust Control Effect of Wetting Dust-depressor Caused by Coal Structure Differences[J].Coal Technology, 2015, 34(3):182-184. (in Chinese)
[19] LI Ying-quan, ZHAO Bao-wei, DONG Bo,et al. On Performance of Rapidly Dissolved Dust Suppressant in Controlling Construction Dust[J].Journal of Safety and Environment, 2019, 19(6):2088-2094. (in Chinese)
[20] TB/T 3210.1-2009,Railway Transport of Coal Dust Suppression Technical Conditions[S]. (in Chinese)
[21] ZHANG Jiang-shi, LIU Shao-can, FAN Shao-yan. Formulation Optimization Experiment of New Chemical Dust Suppressant for Coal Dust[J]. Safety in Coal Mines, 2020, 51(6):31-36. (in Chinese)
[22] SU Lu-lu, JI Ya-qin, ZHANG Fu-qiang,et al. Dust Suppression Performance and Field Application of Waterborne Polymer on Iron Ore Powder[J]. Chinese Journal of Environmental Engineering, 2019, 13(9):2181-2188. (in Chinese) |
|
|
|