Yu Cheng, Na Jiang, Wentong Wang, Lu Jin, Shiying Yan
{"title":"路基使用改良红泥的环境评估","authors":"Yu Cheng, Na Jiang, Wentong Wang, Lu Jin, Shiying Yan","doi":"10.3390/buildings14072135","DOIUrl":null,"url":null,"abstract":"Utilization of red mud in road projects is an effective way to consume large amounts of red mud on a large scale. In order to meet the requirements for road performance, a modified material, Heinchem, has been developed on the basis of extensive experiments, and the long-term environmental risks of red mud modified by this material have been investigated. By collecting and modifying original red mud samples, a series of continuous leaching tank experiments are carried out based on the exposure scenario analysis. According to the leaching content of pollution in the original and modified red mud, the characteristic pollutants are identified. The release mechanism of these characteristic pollutants in the modified red mud is revealed, and the long-term release amount is predicted. Furthermore, in light of the actual road use scenario of the modified red mud, a risk assessment model is established and used to simulate the release, migration, and transformation of characteristic pollutants during the use of modified red mud as roadbed material. The groundwater environmental risk is then assessed. Finally, an acute toxicity test of earthworms and a seed germination test are conducted to investigate the impact of the modified red mud on the farmlands. The results showed that the proposed red mud modified materials have obvious curing effects on V, As, Se, Mo, and F. When the leaching contents of V, Cr6+, Cr3+, As3+, Se4+, Se6+, Mo, and F in the modified red mud were lower than 0.15 mg/L, 0.1 mg/L, 0.2 mg/L, 0.012 mg/L, 0.012 mg/L, 0.012 mg/L, 0.075 mg/L, and 1.2 mg/L, respectively, the environmental risk of modified red mud during long-term road use is acceptable. This study provides a new way for the resource utilization of red mud.","PeriodicalId":505657,"journal":{"name":"Buildings","volume":"113 17","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-07-11","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Environment Assessment of Modified Red Mud Utilized in Roadbed\",\"authors\":\"Yu Cheng, Na Jiang, Wentong Wang, Lu Jin, Shiying Yan\",\"doi\":\"10.3390/buildings14072135\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Utilization of red mud in road projects is an effective way to consume large amounts of red mud on a large scale. In order to meet the requirements for road performance, a modified material, Heinchem, has been developed on the basis of extensive experiments, and the long-term environmental risks of red mud modified by this material have been investigated. By collecting and modifying original red mud samples, a series of continuous leaching tank experiments are carried out based on the exposure scenario analysis. According to the leaching content of pollution in the original and modified red mud, the characteristic pollutants are identified. The release mechanism of these characteristic pollutants in the modified red mud is revealed, and the long-term release amount is predicted. Furthermore, in light of the actual road use scenario of the modified red mud, a risk assessment model is established and used to simulate the release, migration, and transformation of characteristic pollutants during the use of modified red mud as roadbed material. The groundwater environmental risk is then assessed. Finally, an acute toxicity test of earthworms and a seed germination test are conducted to investigate the impact of the modified red mud on the farmlands. The results showed that the proposed red mud modified materials have obvious curing effects on V, As, Se, Mo, and F. When the leaching contents of V, Cr6+, Cr3+, As3+, Se4+, Se6+, Mo, and F in the modified red mud were lower than 0.15 mg/L, 0.1 mg/L, 0.2 mg/L, 0.012 mg/L, 0.012 mg/L, 0.012 mg/L, 0.075 mg/L, and 1.2 mg/L, respectively, the environmental risk of modified red mud during long-term road use is acceptable. 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引用次数: 0
摘要
在道路工程中利用赤泥是大规模消耗大量赤泥的有效途径。为了满足道路性能的要求,在大量实验的基础上,开发了一种改性材料 Heinchem,并对该材料改性后的赤泥的长期环境风险进行了研究。通过采集和改性原始赤泥样品,在暴露情景分析的基础上进行了一系列连续浸出槽实验。根据原始赤泥和改性赤泥中污染的浸出含量,确定了特征污染物。揭示了这些特征污染物在改性赤泥中的释放机理,并预测了其长期释放量。此外,根据改性赤泥的实际道路使用情况,建立了风险评估模型,用于模拟改性赤泥作为路基材料使用过程中特征污染物的释放、迁移和转化。然后对地下水环境风险进行评估。最后,还进行了蚯蚓急性毒性试验和种子发芽试验,以研究改性赤泥对农田的影响。结果表明,所提出的赤泥改性材料对 V、As、Se、Mo 和 F 具有明显的固化效果。当改性赤泥中 V、Cr6+、Cr3+、As3+、Se4+、Se6+、Mo 和 F 的浸出含量低于 0.15 mg/L、0.1 mg/L、0.2 mg/L、0.012 mg/L、0.012 mg/L、0.012 mg/L、0.075 mg/L、1.2 mg/L,改性赤泥在长期道路使用过程中的环境风险是可以接受的。该研究为赤泥的资源化利用提供了一条新途径。
Environment Assessment of Modified Red Mud Utilized in Roadbed
Utilization of red mud in road projects is an effective way to consume large amounts of red mud on a large scale. In order to meet the requirements for road performance, a modified material, Heinchem, has been developed on the basis of extensive experiments, and the long-term environmental risks of red mud modified by this material have been investigated. By collecting and modifying original red mud samples, a series of continuous leaching tank experiments are carried out based on the exposure scenario analysis. According to the leaching content of pollution in the original and modified red mud, the characteristic pollutants are identified. The release mechanism of these characteristic pollutants in the modified red mud is revealed, and the long-term release amount is predicted. Furthermore, in light of the actual road use scenario of the modified red mud, a risk assessment model is established and used to simulate the release, migration, and transformation of characteristic pollutants during the use of modified red mud as roadbed material. The groundwater environmental risk is then assessed. Finally, an acute toxicity test of earthworms and a seed germination test are conducted to investigate the impact of the modified red mud on the farmlands. The results showed that the proposed red mud modified materials have obvious curing effects on V, As, Se, Mo, and F. When the leaching contents of V, Cr6+, Cr3+, As3+, Se4+, Se6+, Mo, and F in the modified red mud were lower than 0.15 mg/L, 0.1 mg/L, 0.2 mg/L, 0.012 mg/L, 0.012 mg/L, 0.012 mg/L, 0.075 mg/L, and 1.2 mg/L, respectively, the environmental risk of modified red mud during long-term road use is acceptable. This study provides a new way for the resource utilization of red mud.