POROUS BODY, ADSORBENT INCLUDING THE POROUS BODY, AND METHOD OF REMOVING METAL AND/OR METAL ION WITH THE ADSORBENT
An object of the present invention is to provide a porous body having excellent adsorption performance, an adsorbent including the porous body, and a method of removing a metal and/or a metal ion from a liquid to be treated, with the adsorbent, and, in order to achieve the object, the present invention provides a porous body having a co-continuous structure formed by: a ceramic skeleton including mesopores; and macropores, wherein a surface of the ceramic skeleton is modified by a metal- and/or metal ion-adsorbable nitrogen atom-containing group, wherein the nitrogen atom-containing group is at least one selected from a primary amino group, a secondary amino group, a tertiary amino group, a quaternary ammonium group, an imino group, a nitrilo group and a nitrogen atom-containing heterocyclic group, and wherein an amount of the nitrogen atom-containing group contained in the porous body is 1.5 mmol/g or more and 5.4 mmol/g or less.
1 . A porous body having a co-continuous structure formed by: a ceramic skeleton comprising mesopores; and macropores,
wherein a surface of the ceramic skeleton is modified by a metal- and/or metal ion-adsorbable nitrogen atom-containing group,
wherein the nitrogen atom-containing group is at least one selected from a primary amino group, a secondary amino group, a tertiary amino group, a quaternary ammonium group, an imino group, a nitrilo group and a nitrogen atom-containing heterocyclic group, and
wherein an amount of the nitrogen atom-containing group contained in the porous body is 1.5 mmol/g or more and 5.4 mmol/g or less.
2 . The porous body according to claim 1 ,
wherein the nitrogen atom-containing group is contained in an amine compound,
wherein the amine compound is fixed to a surface of the ceramic skeleton, so that the surface of the ceramic skeleton is modified by the nitrogen atom-containing group, and
wherein the amine compound is at least one selected from monoamine, diamine, triamine and polyamine.
3 . The porous body according to claim 1 , wherein a most frequent pore diameter of the macropores before modification by the nitrogen atom-containing group is 0.20 μm or more and 4.0 μm or less, and a most frequent pore diameter of the mesopores before modification by the nitrogen atom-containing group is 2.0 nm or more and 50 nm or less.
4 . The porous body according to claim 1 , wherein a ratio of a most frequent pore diameter of the macropores before modification by the nitrogen atom-containing group to a most frequent pore diameter of the mesopores before modification by the nitrogen atom-containing group is 15 or more and 200 or less.
5 . The porous body according to claim 1 , wherein the ceramic skeleton contains an element selected from silicon, aluminum, tin, cerium, titanium and zirconium.
6 . The porous body according to claim 1 , wherein the metal is a transition metal, and the metal ion is a transition metal ion.
7 . An adsorbent comprising the porous body according to claim 1 .
8 . A method of removing a metal and/or a metal ion from a solution containing the metal and/or the metal ion, the method comprising a step of contacting the solution and the adsorbent according to claim 7 .