de Oliveira Letuzia M, Suchismita Das, Gress Julia, Rathinasabapathi Bala, Chen Yanshan, Ma Lena Q
State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Jiangsu 210046, China; Soil and Water Science Department, University of Florida, Gainesville, FL 32611, USA.
Life Science and Bioinformatics, Assam University, Silchar, India.
Chemosphere. 2017 Jun;176:249-254. doi: 10.1016/j.chemosphere.2017.02.124. Epub 2017 Feb 24.
Leaching of inorganic arsenic (As) from chromated copper arsenate (CCA)-treated wood may elevate soil As levels. Thus, an environmental concern arises regarding As accumulation in vegetables grown in these soils. In this study, a greenhouse experiment was conducted to investigate the ability of As-hyperaccumulator P. vittata and organic amendments in reducing As uptake by lettuce (Lactuca sativa) from a soil contaminated from CCA-treated wood (63.9 mg kg As). P. vittata was grown for 150 d in a CCA-contaminated soil amended with biochar, activated carbon or coffee grounds at 1%, followed by lettuce for another 55 d. After harvest, plant biomass and As concentrations in plant and soil were determined. The presence of P. vittata reduced As content in lettuce by 21% from 27.3 to 21.5 mg kg while amendment further reduced As in lettuce by 5.6-18%, with activated C being most effective. Our data showed that both P. vittata and organic amendments were effective in reducing As concentration in lettuce. Though no health-based standard for As in vegetables exists in USA, care should be taken when growing lettuce in contaminated soils. Our data showed that application of organic amendments with P. vittata reduced As hazards in CCA-contaminated soils.
从经铬酸铜砷酸盐(CCA)处理的木材中浸出的无机砷(As)可能会提高土壤中的砷含量。因此,人们对这些土壤中生长的蔬菜中砷的积累产生了环境担忧。在本研究中,进行了一项温室实验,以研究砷超富集植物蜈蚣草(P. vittata)和有机改良剂降低生菜(Lactuca sativa)从受CCA处理木材污染的土壤(63.9毫克/千克砷)中吸收砷的能力。将蜈蚣草在添加了1%生物炭、活性炭或咖啡渣的CCA污染土壤中种植150天,然后再种植生菜55天。收获后,测定植物生物量以及植物和土壤中的砷浓度。蜈蚣草的存在使生菜中的砷含量从27.3毫克/千克降至21.5毫克/千克,降低了21%,而改良剂进一步使生菜中的砷含量降低了5.6%至18%,其中活性炭最为有效。我们的数据表明,蜈蚣草和有机改良剂都能有效降低生菜中的砷浓度。尽管美国没有基于健康的蔬菜砷标准,但在受污染土壤中种植生菜时仍应谨慎。我们的数据表明,将有机改良剂与蜈蚣草一起使用可降低CCA污染土壤中的砷危害。