<?xml version="1.0" encoding="utf-8"?>
<rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom" xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005">
<channel xmlns:cfi="http://www.microsoft.com/schemas/rss/core/2005/internal" cfi:lastdownloaderror="None">
<title cf:type="text"><![CDATA[ -->Cellulose-based Environmental Remediation Materials]]></title>
<item>
<title xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="text"><![CDATA[Preparation of Modified Cellulose Filter Paper and Its Application for the Recovery of Synthetic Cathinone Analytes in Water]]></title>
<link><![CDATA[http://zgzz.ijournals.cn/zgzzen/ch/reader/view_abstract.aspx?file_no=202510022&flag=1]]></link>
<description xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="html"><![CDATA[A two-step preparation method was adopted to chemically modify cellulose filter paper. (3-mercaptopropyl)trimethoxysilane and sodium 4-vinylbenzenesulfonate were used as modifiers. The chemically modified cellulose filter paper (CMCFP) was successfully prepared through silanization and thiol-ene click reaction. The CMCFP was used to extract and recover six synthetic cathinone analytes in aqueous solution by taking advantage of its hydrophobic interaction, π-π interaction, and electrostatic interaction. After extraction, the used CMCFP was treated with different elution solvents, and the eluates were detected and analyzed using high-performance liquid chromatography coupled with triple quadrupole mass spectrometry. The results showed that at an environmental pH value of 6.0, the CMCFP achieved optimal recovery efficiency for the six synthetic cathinone analytes, with recovery rates ranging between 71.5% and 107.7%. The most effective elution solvent was found to be ammonia/methanol solution with fraction volumique of 3%. Furthermore, the CMCFP maintained high recovery performance even after five consecutive uses.]]></description>
<pubDate>2025/10/28 19:46:01</pubDate>
<category><![CDATA[Cellulose-based Environmental Remediation Materials]]></category>
<author><![CDATA[SUN Zhonghui,LUO Shuai,ZHAO Jiahui,LIU Bo,YANG Bin,YOU Hongyu,LAI Huajie]]></author>
<atom:author xmlns:atom="http://www.w3.org/2005/Atom">
<atom:name>SUN Zhonghui,LUO Shuai,ZHAO Jiahui,LIU Bo,YANG Bin,YOU Hongyu,LAI Huajie</atom:name>
</atom:author>
<guid><![CDATA[http://zgzz.ijournals.cn/zgzzen/ch/reader/view_abstract.aspx?file_no=202510022&flag=1]]></guid><cfi:id>2</cfi:id><cfi:read>true</cfi:read></item>
<item>
<title xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="text"><![CDATA[Preparation and Performance Study of Cellulose-based Air Filtration Materials]]></title>
<link><![CDATA[http://zgzz.ijournals.cn/zgzzen/ch/reader/view_abstract.aspx?file_no=202510023&flag=1]]></link>
<description xmlns:cf="http://www.microsoft.com/schemas/rss/core/2005" cf:type="html"><![CDATA[In this study， aerogels were prepared using TEMPO-oxidized nanocellulose (TCNF)， mechanically prepared microcellulose (MFC)， and polyvinyl alcohol (PVA) as raw materials. To further enhance mechanical performance， the aerogel fibers were modified with 3-glycidoxypropyltrimethoxysilane (GPTMS) and polyethyleneimine (PEI). The modified aerogels exhibited excellent elasticity， with plastic deformation remaining below 5% after 50 compression cycles at 50% strain. In addition， the air filtration material with double-layer structure had been successfully prepared. Compared with single-layer materials， the double-layer structured materials exhibited significantly superior filtration performance. The comprehensive performance indicators were as follows： the filtration efficiency reached 77.67%， the pressure drop was 122 Pa， and the quality factor was 0.013 Pa⁻¹.]]></description>
<pubDate>2025/10/28 19:46:02</pubDate>
<category><![CDATA[Cellulose-based Environmental Remediation Materials]]></category>
<author><![CDATA[LI Jingman,YANG Weili,WANG Xiaojun,JIANG Zhan,ZHANG Yuanming]]></author>
<atom:author xmlns:atom="http://www.w3.org/2005/Atom">
<atom:name>LI Jingman,YANG Weili,WANG Xiaojun,JIANG Zhan,ZHANG Yuanming</atom:name>
</atom:author>
<guid><![CDATA[http://zgzz.ijournals.cn/zgzzen/ch/reader/view_abstract.aspx?file_no=202510023&flag=1]]></guid><cfi:id>1</cfi:id><cfi:read>true</cfi:read></item>
</channel>
</rss>