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潼南区某化工企业酸/碱污染土壤中和试验研究
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作者 罗小红 王江 +3 位作者 杜文菱 汪玉娇 陈琴 邓磊 《广东化工》 CAS 2019年第24期57-58,共2页
本文依托潼南区某化工企业原址场地治理修复工程,开展酸/碱污染土壤中和试验研究,通过采用中和药剂分别对酸/碱污染土壤进行处置,将污染土壤与药剂充分搅拌混合后对修复后的土壤pH值进行测定,能够将酸/碱土壤pH值调节至5.51~9.5的修复... 本文依托潼南区某化工企业原址场地治理修复工程,开展酸/碱污染土壤中和试验研究,通过采用中和药剂分别对酸/碱污染土壤进行处置,将污染土壤与药剂充分搅拌混合后对修复后的土壤pH值进行测定,能够将酸/碱土壤pH值调节至5.51~9.5的修复目标范围。结论表明:本项目场地内酸污染土壤,生石灰添加量为0.4%~0.8%;碱污染土壤,盐酸添加量为0.15%~0.30%;酸/碱污染土壤添加中和药剂搅拌后其养护时间为24h。 展开更多
关键词 酸/碱污染 化学中和 土壤修复 污染场地
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Adsorption of acid and basic dyes by sludge-based activated carbon:Isotherm and kinetic studies 被引量:3
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作者 李鑫 王广智 +2 位作者 李伟光 王萍 宿程远 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期103-113,共11页
A batch experiment was conducted to investigate the adsorption of an acid dye(Acid Orange 51) and a basic dye(Safranine) from aqueous solutions by the sludge-based activated carbon(SBAC). The results show that the ads... A batch experiment was conducted to investigate the adsorption of an acid dye(Acid Orange 51) and a basic dye(Safranine) from aqueous solutions by the sludge-based activated carbon(SBAC). The results show that the adsorption of Acid Orange 51 decreases at high p H values, whereas the uptake of Safranine is higher in neutral and alkaline solutions than that in acidic conditions. The adsorption time needed for Safranine to reach equilibrium is shorter than that for Acid Orange 51. The uptakes of the dyes both increase with temperature increasing, indicating that the adsorption process of the dyes onto SBAC is endothermic. The equilibrium data of the dyes are both best represented by the Redlich-Peterson model. At 25 °C, the maximum adsorption capacities of SBAC for Acid Orange 51 and Safranine are 248.70 mg/g and 525.84 mg/g, respectively. The Elovich model is found to best describe the adsorption process of both dyes, indicating that the rate-limiting step involves the chemisorption. It can be concluded that SBAC is a promising material for the removal of Acid Orange 51 and Safranine from aqueous solutions. 展开更多
关键词 sludge-based activated carbon Acid Orange 51 Safranine adsorption isotherms kinetics
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