Department of Chemical and Environmental Engineering, The University of Arizona, Tucson, AZ 85641-0011, USA.
J Hazard Mater. 2013 Dec 15;263 Pt 2(0 2):525-32. doi: 10.1016/j.jhazmat.2013.10.009. Epub 2013 Oct 14.
Arsenic Crystallization Technology (ACT) is a potentially eco-friendly, effective technology for stabilization of arsenic-bearing solid residuals (ABSRs). The strategy is to convert ABSRs generated by water treatment facilities into minerals with a high arsenic capacity and long-term stability in mature, municipal solid waste landfills. Candidate minerals considered in this study include scorodite, arsenate hydroxyapatites, ferrous arsenates (symplesite-type minerals), tooeleite, and arsenated-schwertmannite. These minerals were evaluated as to ease of synthesis, applicability to use of iron-based ABSRs as a starting material, and arsenic leachability. The Toxicity Characteristic Leaching Procedure (TCLP) was used for preliminary assessment of candidate mineral leaching. Minerals that passed the TCLP and whose synthesis route was promising were subjected to a more aggressive leaching test using a simulated landfill leachate (SLL) solution. Scorodite and arsenate hydroxyapatites were not considered further because their synthesis conditions were not found to be favorable for general application. Tooeleite and silica-amended tooeleite showed high TCLP arsenic leaching and were also not investigated further. The synthesis process and leaching of ferrous arsenate and arsenated-schwertmannite were promising and of these, arsenated-schwertmannite was most stable during SLL testing. The latter two candidate minerals warrant synthesis optimization and more extensive testing.
砷固化技术(ACT)是一种潜在的环保、有效的含砷固体残余物(ABSRs)稳定化技术。该策略是将水处理设施产生的 ABSRs 转化为在成熟的城市固体废物填埋场中具有高砷容量和长期稳定性的矿物。本研究考虑的候选矿物包括硫砷铁矿、砷酸羟磷灰石、亚铁砷酸盐(似硅钙铀矿型矿物)、太傲石和砷化水铁矿。这些矿物的评估标准包括合成的难易程度、将基于铁的 ABSRs 用作起始材料的适用性以及砷的浸出率。毒性特征浸出程序(TCLP)用于初步评估候选矿物的浸出情况。通过 TCLP 且合成路线有前景的矿物,使用模拟填埋沥滤液(SLL)溶液进行更具侵略性的浸出测试。由于其合成条件不适合一般应用,因此没有进一步考虑硫砷铁矿和砷酸羟磷灰石。太傲石和添加硅的太傲石表现出高 TCLP 砷浸出率,因此也没有进一步研究。亚铁砷酸盐和砷化水铁矿的合成过程和浸出情况很有前景,其中在 SLL 测试中砷化水铁矿最稳定。后两种候选矿物需要进行合成优化和更广泛的测试。