Hydrogenolysis of Linear Low-Density Polyethylene during Heterogeneous Catalytic Hydrogen-Deuterium Exchange

被引:34
作者
Ertem, S. Piril [2 ]
Onuoha, C. Emmanuel [1 ]
Wang, Huiqun [2 ]
Hillmyer, Marc A. [2 ]
Reineke, Theresa M. [2 ]
Lodge, Timothy P. [1 ,2 ]
Bates, Frank S. [1 ]
机构
[1] Univ Minnesota Twin Cities, Dept Chem Engn & Mat Sci, Minneapolis, MN 55455 USA
[2] Univ Minnesota Twin Cities, Dept Chem, Minneapolis, MN 55455 USA
关键词
MOLECULAR-WEIGHT; THERMODYNAMIC PROPERTIES; TEMPERATURE; COPOLYMERS; SEMICRYSTALLINE; BEHAVIOR; RUBBERY; TERPOLYMERS; DIMENSIONS; SOLUBILITY;
D O I
10.1021/acs.macromol.0c00696
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Exchange of deuterium (D) for hydrogen (H) on polyolefins enabled by heterogeneous catalysts is a versatile and relatively inexpensive technique to obtain matched pairs of isotopically labeled and unlabeled polymers. A bimetallic ultrawide pore silica-supported platinum-rhenium catalyst (PtRe/SiO2), originally designed for the hydrogenation of polystyrene (PS), can be used as an isotope exchange catalyst with various saturated hydrocarbon polymers, most notably polyethylene (PE). Recently, we discovered that under certain conditions a commercial linear low-density polyethylene (LLDPE) undergoes severe chain degradation during the H/D exchange reaction. In this study, we explored the effects of reacting various polymers on the PtRe/SiO2 catalyst. First, the extent of hydrogenolysis accompanying deuterium exchange was studied under the most severe reaction conditions (1:1 PtRe/SiO2-to-polymer by weight, 170 degrees C) with four different polymers: narrow-dispersity PS, perfectly linear PE, poly(ethylene-alt-propylene) (PEP), and a commercial LLDPE. PS was fully saturated to yield poly(cyclohexylethylene) (PCHE) without any detectable hydrogenolysis. Among the polyolefins, linear PE showed the least degradation, PEP incurred an intermediate extent of hydrogenolysis, and LLDPE experienced severe chain degradation; at these reaction conditions, the LLDPE was reduced in weight average molecular weight from 120 to under 11 kg/mol. A time-resolved experiment also revealed the exchange of hydrogen for deuterium on LLDPE coincident with hydrogenolysis following initial uptake of the heavy isotope. This loss of deuterium is due to the interaction of the hydrogenous solvent with the catalyst. Subsequently, the H/D exchange reaction conditions were varied to probe the process leading to LLDPE hydrogenolysis. For this purpose, Pt/SiO2 and PtRe/SiO2 catalysts were compared. When using Pt/SiO2, LLDPE maintained its molecular integrity at all catalyst loadings (1:1, 0.2:1, and 0.1:1 catalyst-to-polymer by weight) and reaction temperatures (130 and 170 degrees C). In the case of PtRe/SiO2, reducing the catalyst loading decreased but did not eliminate hydrogenolysis of LLDPE. Kinetic experiments and microstructural analysis of the hydrogenolysis products implicated a degradation mechanism involving C-C chain scission away from the tertiary carbon associated with the short (C4H9)-chain branches. These findings suggest a degradation mechanism mediated by the cooperative adsorption of the four-carbon side-chain and backbone units on the catalyst surface. The results of this study set important limitations on the conditions that can be employed to exchange deuterium for hydrogen on LLDPE and other polyolefins using the high-surface-area wide pore PtRe/SiO2 heterogeneous catalyst.
引用
收藏
页码:6043 / 6055
页数:13
相关论文
共 54 条
  • [1] THE CRYSTALLIZATION BEHAVIOR OF RANDOM COPOLYMERS OF ETHYLENE
    ALAMO, RG
    MANDELKERN, L
    [J]. THERMOCHIMICA ACTA, 1994, 238 : 155 - 201
  • [2] THERMODYNAMIC AND STRUCTURAL-PROPERTIES OF ETHYLENE COPOLYMERS
    ALAMO, RG
    MANDELKERN, L
    [J]. MACROMOLECULES, 1989, 22 (03) : 1273 - 1277
  • [3] Synthesis and Characterization of Elastomeric Heptablock Terpolymers Structured by Crystallization
    Alfonzo, C. Guillermo
    Fleury, Guillaume
    Chaffin, Kimberly A.
    Bates, Frank S.
    [J]. MACROMOLECULES, 2010, 43 (12) : 5295 - 5305
  • [4] PCHE-based pentablock copolymers: Evolution of a new plastic
    Bates, FS
    Fredrickson, GH
    Hucul, D
    Hahn, SF
    [J]. AICHE JOURNAL, 2001, 47 (04) : 762 - 765
  • [5] SYNTHESIS AND CHARACTERIZATION OF A MODEL SATURATED-HYDROCARBON DIBLOCK COPOLYMER
    BATES, FS
    ROSEDALE, JH
    BAIR, HE
    RUSSELL, TP
    [J]. MACROMOLECULES, 1989, 22 (06) : 2557 - 2564
  • [6] Calverley E. M., 2002, Patent No. [US6,395,841B1, 395841]
  • [7] HYDROGEN AND DEUTERIUM EXCHANGE OF POLYPROPYLENE
    CASE, LC
    ATLAS, JD
    [J]. JOURNAL OF POLYMER SCIENCE, 1960, 45 (146): : 435 - 442
  • [8] Upcycling Single-Use Polyethylene into High-Quality Liquid Products
    Celik, Gokhan
    Kennedy, Robert M.
    Hackler, Ryan A.
    Ferrandon, Magali
    Tennakoon, Akalanka
    Patnaik, Smita
    LaPointe, Anne M.
    Ammal, Salai C.
    Heyden, Andreas
    Perras, Frederic A.
    Pruski, Marek
    Scott, Susannah L.
    Poeppelmeier, Kenneth R.
    Sadow, Aaron D.
    Delferro, Massimiliano
    [J]. ACS CENTRAL SCIENCE, 2019, 5 (11) : 1795 - 1803
  • [10] Thermodynamic behavior of poly(cyclohexylethylene) in polyolefin diblock copolymers
    Cochran, EW
    Bates, FS
    [J]. MACROMOLECULES, 2002, 35 (19) : 7368 - 7374