首页> 外文期刊>Journal of environmental sciences >Material conversion from paper sludge ash in NaOH solution to synthesize adsorbent for removal of Pb~(2+), NH_4~+ and PO_4~(3-) from aqueous solution
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Material conversion from paper sludge ash in NaOH solution to synthesize adsorbent for removal of Pb~(2+), NH_4~+ and PO_4~(3-) from aqueous solution

机译:纸浆污泥在NaOH溶液中的物料转化以合成吸附剂以从水溶液中去除Pb〜(2 +),NH_4〜+和PO_4〜(3-)

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Material conversion from paper sludge ash (PSA) in NaOH solution was attempted to synthesize the adsorbent for removal of inorganic pollutants, such as Pb~(2+), NH_4~+ and PO_4~(3-) from aqueous solution. PSA of 0.5 g was added into 10 mL of 3 mol/L NaOH solution, and then heated at 80, 120, and 160℃ for 6-48 hr to obtain the product. PSA mainly composed of two crystalline phases, gehlenite (Ca_2Al_2SiO_7) and anorthite (CaAl_2Si_2O_8), and amorphous phase. Hydroxysodalite (Na_6Al_6Si_6O_(24)·8H_2O) was formed at 80℃, and anorthite dissolved, whereas gehlenite remained unaffected. Katoite (Ca_3Al_2SiO_4(OH)_8) was formed over 120℃, and hydroxycancrinite (Na_8(OH)_2Al_6Si_6O_(24)·2H_2O) was formed at 160℃, due to the dissolution of both gehlenite and anorthite. Specific surface areas of the products were almost same and were higher than that of raw ash. Cation exchange capacities (CECs) of the products were also higher than that of raw ash, and CEC obtained at lower temperature was higher. Removal abilities of products for Pb~(2+), NH_4~+, and PO_4~(3-) were higher than that of raw ash. With increasing reaction temperature, the removal efficiencies of Pb~(2+) and NH_4~+ decreased due to the decrease of CEC of the product, while removal efficiency for PO_4~(3-) was almost same. The concentrations of Si and Al in the solution and the crystalline phases in the solid during the reaction explain the formation of the product phases at each temperature.
机译:尝试从纸浆灰(PSA)在NaOH溶液中进行材料转化,以合成吸附剂,以从水溶液中去除无机污染物,例如Pb〜(2 +),NH_4〜+和PO_4〜(3-)。将0.5 g PSA添加到10 mL 3 mol / L NaOH溶液中,然后在80、120和160℃下加热6-48小时,以获得产物。 PSA主要由两个晶相组成,分别是菱沸石(Ca_2Al_2SiO_7)和钙长石(CaAl_2Si_2O_8)和非晶相。在80℃形成羟基钠钙石(Na_6Al_6Si_6O_(24)·8H_2O),钙长石溶解,而钠钙石不受影响。在120℃下形成钙铁矿(Ca_3Al_2SiO_4(OH)_8),在160℃下形成钙钠钙石(Na_8(OH)_2Al_6Si_6O_(24)·2H_2O)。产品的比表面积几乎相同,并且比生灰高。产品的阳离子交换容量(CECs)也高于原灰,并且在较低温度下获得的CEC较高。产品对Pb〜(2 +),NH_4〜+和PO_4〜(3-)的去除能力均高于原灰。随着反应温度的升高,Pb〜(2+)和NH_4〜+的去除效率由于产物CEC的降低而降低,而PO_4〜(3-)的去除效率几乎相同。反应期间溶液中Si和Al的浓度以及固体中的结晶相解释了每种温度下产物相的形成。

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