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首页> 外文期刊>Biodegradation >In vitro studies on the degradation of common rubber waste material with the latex clearing protein (Lcp1(VH2)) of Gordonia polyisoprenivorans VH2
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In vitro studies on the degradation of common rubber waste material with the latex clearing protein (Lcp1(VH2)) of Gordonia polyisoprenivorans VH2

机译:对巨乳废料蛋白质(LCP1(VH2))的常见橡胶废料降解的体外研究(LCP1(VH2))VH2

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摘要

The enzymatic degradation of the rubber polymer poly(cis-1,4-isoprene), e.g. by the latex clearing protein Lcp1(VH2) of Gordonia polyisoprenivorans VH2 has been demonstrated with latex milk or pure isoprene-rubber particles, recently. Unfortunately, carbon black filled vulcanized rubber (CFVR) making the biggest part of worldwide rubber wastes, contains several harmful additives making microbial and enzymatic rubber degradation challenging. However, this study demonstrates the successful enzymatic cleavage of industrially produced CFVR. The formation of the cleavage products, oligo(cis-1,4-isoprenoids), from incubating CFVR particles with Lcp1(VH2) was detected by HPLC-MS. Various organic solvents were tested to remove harmful or inhibiting additives like antioxidants to enhance product formation. The pretreatment of CFVR particles, especially with chloroform or cyclohexane, significantly improved the degradation. It was also demonstrated that reducing the particles size and thus increasing the enzymatically accessible surface area of the particles led to a strong acceleration of the degradation process. Furthermore, ATR-IR analyses showed that Lcp1(VH2) led to the functionalization of the rubber particle surface with carbonyl groups by cleaving isoprene chains, still linked to the particle. Both, the oligo(cis-1,4-isoprenoids) as well as the functionalized rubber particles, are potentially important products, which can be reused as fine chemicals or as additives in rubber production. The present study, showing the enzymatic degradation of common CFVR for the first time, takes an important step towards a new way of rubber waste disposal and indicates the economic feasibility of an efficient and environmentally friendly recycling process by using the rubber oxygenase Lcp1(VH2).
机译:橡胶聚合物聚(CIS-1,4-异戊二烯)的酶促劣化,例如,通过胶乳的乳胶清除蛋白LCP1(VH2),胶乳或纯异戊二烯 - 橡胶颗粒已经证明了VH2,最近已经证明了乳胶乳或纯异戊二烯 - 橡胶颗粒。不幸的是,炭黑填充硫化橡胶(CFVR)制造全球橡胶废物最大的部分,含有几种有害添加剂,使微生物和酶橡胶降解具有挑战性。然而,本研究证明了工业上生产的CFVR的成功酶切割。通过HPLC-MS检测从孵育具有LCP1(VH2)的CFVR颗粒的切割产物寡核苷酸寡(CIS-1,4-异戊二烯)。测试各种有机溶剂以除去有害或抑制剂等抗氧化剂,以增强产物形成。 CFVR颗粒的预处理,尤其是氯仿或环己烷,显着改善了降解。还证明还原颗粒尺寸并因此增加颗粒的酶促可接近的表面积导致劣化过程的强加加速度。此外,ATR-IR分析显示LCP1(VH2)通过裂解异戊二烯链,LCP1(VH2)导致橡胶颗粒表面与羰基的官能化,仍然与颗粒连接。两者,寡核苷酸(CIS-1,4-异戊二烯)以及官能化的橡胶颗粒是潜在的重要产品,可重用为精细化学品或橡胶生产中的添加剂。本研究表明,表明普通CFVR首次酶促降解,朝着一种重要的措施迈向橡胶废物处理的新方式,并表明了通过使用橡胶氧酶LCP​​1(VH2)的高效和环保的回收过程的经济可行性。

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