Dang Van Minh, Van Huu Tap, Vinh N D, Hoa Duong Thi Minh, Hanh Nguyen Thi Bich, Nguyen Thị Tuyet, Ha Tran Thi Ngoc, Hoang Trung Kien, Tran Thị Pha, Nguyen Lan Huong, Chu Manh Nhuong
Thai Nguyen University Tan Thinh ward Thai Nguyen city Vietnam.
Faculty of Natural Resources and Environment, TNU - University of Sciences Tan Thinh ward Thai Nguyen city Vietnam
RSC Adv. 2021 May 10;11(28):17007-17019. doi: 10.1039/d0ra10530a. eCollection 2021 May 6.
In the present study, experiments using zeolite and Mg/Al LDH-zeolite for immobilization of Cd and Pb ions in artificial soil were conducted. The conditions which affect Cd and Pb ion immobilization in soil were evaluated, namely soil pH (5-7), the mass ratio of adsorbents (1%, 3% and 5%), incubation time (15 days, 30 days and 45 days) and soil moisture (30%, 50% and 70%). The results indicated that the optimal soil pH, mass ratio of adsorbents, incubation time and soil moisture for immobilization of Cd and Pb ions by the adsorbent were, respectively, 7.0, 3%, 30 days and 70%. The exchangeable Cd ion content in the contaminated soil dropped from 22.17 mg kg (87.65%) to 11.03 mg kg (43.48%) and 6.47 mg kg (26.36%) on incubation with zeolite and Mg/Al LDH-zeolite, respectively, while the exchangeable Pb content fell from 23.28 mg kg (90.02%) to 14.12 mg kg (54.04%) and 9.47 mg kg (35.24%) using zeolite and Mg/Al LDH-zeolite as absorbents in contaminated soil, respectively. Fe-Mn oxide occluded (F2), carbonate bound (F3) and organically complexed (F4) were the main forms for immobilization of the exchangeable Cd and Pb when the zeolite and Mg/Al LDH-zeolite absorbents were separately cultivated into soil. Precipitation, co-precipitation and electrostatic attraction were the main mechanisms of exchangeable Cd and Pb immobilization onto the Mg/Al LDH-zeolite to form carbonate metals (CdCO and PbCO). This was due to the surface functional groups of the adsorbent and the presence of Fe and Al oxyhydroxides, Mn oxides, and Si and O elements in the Mg/Al LDH-zeolite's constituents. The efficiency of Cd and Pb immobilization by the Mg/Al LDH-zeolite was higher than that by zeolite from 1.5 to 1.6 times. The Mg/Al LDH-zeolite showed an enhanced ability of exchangeable Cd and Pb immobilization in contaminated soil.
在本研究中,进行了使用沸石和镁铝层状双氢氧化物负载型沸石(Mg/Al LDH-zeolite)在人工土壤中固定镉和铅离子的实验。评估了影响土壤中镉和铅离子固定的条件,即土壤pH值(5 - 7)、吸附剂质量比(1%、3%和5%)、培养时间(15天、30天和45天)以及土壤湿度(30%、50%和70%)。结果表明,吸附剂固定镉和铅离子的最佳土壤pH值、吸附剂质量比、培养时间和土壤湿度分别为7.0、3%、30天和70%。在受污染土壤中,与沸石和镁铝层状双氢氧化物负载型沸石培养后,可交换镉离子含量分别从22.17 mg/kg(87.65%)降至11.03 mg/kg(43.48%)和6.47 mg/kg(26.36%),而可交换铅含量分别从23.28 mg/kg(90.02%)降至14.12 mg/kg(54.04%)和9.47 mg/kg(35.24%)。当沸石和镁铝层状双氢氧化物负载型沸石吸附剂分别施入土壤后,铁锰氧化物结合态(F2)、碳酸盐结合态(F3)和有机络合态(F4)是固定可交换镉和铅的主要形态。沉淀、共沉淀和静电吸引是可交换镉和铅固定到镁铝层状双氢氧化物负载型沸石上形成碳酸盐金属(CdCO 和 PbCO)的主要机制。这是由于吸附剂的表面官能团以及镁铝层状双氢氧化物负载型沸石成分中存在铁和铝的羟基氧化物、锰氧化物以及硅和氧元素。镁铝层状双氢氧化物负载型沸石固定镉和铅的效率比沸石高1.5至1.6倍。镁铝层状双氢氧化物负载型沸石在受污染土壤中表现出更强的固定可交换镉和铅的能力。