[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"doc-detail-188593-en":3,"doc-seo-188593-105":30,"detail-sidebar-cat-1-en-105":91},{"code":4,"msg":5,"data":6},0,"success",{"doc_id":7,"user_id":8,"nickname":9,"user_avatar":10,"doc_module":11,"category_id":12,"category_name":13,"doc_title":14,"doc_description":15,"doc_content":16,"file_id":17,"file_url":18,"file_type":19,"file_size":20,"view_count":4,"is_deleted":4,"is_public":11,"is_downloadable":11,"audit_status":11,"page_count":21,"language":22,"language_code":23,"site_id":24,"html_lang":23,"table_of_contents":25,"faqs":26,"seo_title":27,"seo_description":15,"update_tm":28,"read_time":29},188593,1099523885336,"Taylor Morgan","https://ap-avatar.wpscdn.com/davatar_276721f389ce27ea32af1340a28f341c",1,158,"General","Chemical Process Data Analysis","This document presents detailed data related to various chemical processes, focusing on catalyst performance and product yields. It includes tables and charts illustrating key parameters such as catalyst/oil ratio, temperature (T), liquid hourly space velocity (VHSV), pressure, and conversion rates. Specific processes analyzed include XylenePlus™ and TCC. The data also quantifies the percentage of toluene conversion and the production of benzene, o-xylene, m-xylene, and p-xylene under different temperature and time conditions. The information provided is crucial for optimizing catalytic processes in the chemical industry, offering insights into how various operational parameters affect the efficiency and outcome of chemical reactions. The charts visually represent the performance trends, allowing for comparative analysis of different catalysts and conditions.","| Processes | XylenePlustm | TCC | 43-102 (C-10) | EMCAT-100 |\n| --- | --- | --- | --- | --- |\n| Catalyst/oil ratio (wt/wt) | 1 – 2 | 4 – 5 | 2 | 5 – 6 |\n| T (ºC) | 454 – 538 | 520 | 460 | 500 |\n| VHSV (h-1) | 0.7 – 1.7 (WHSP) | 3.0 | 0.7 – 1.5 | 3 |\n| Feedstock | A7 – A9 | -- | -- | -- |\n| Pressure | 1.1 – 1.3 | -- | -- | -- |\n| Conversion | 30-45 | -- | -- | -- |\n\n\n|  |  | % Toluene Conversion |  |  |  | % Benzene Production |  |  |  |\n| --- | --- | --- | --- | --- | --- | --- | --- | --- | --- |\n| t (h) | C/o | 475* | 500* | 525* | 540* | 475* | 500* | 525* | 540* |\n| 0.16 | 4.01 | -- | -- | 38.9 | 39.2 | -- | -- | 18.23 | 19.46 |\n| 0.50 | 1.33 | 22.8 | 31.9 | 33.3 | 34.7 | 10.34 | 14.58 | 15.43 | 16.95 |\n| 1.00 | 0.66 | 18.8 | 25.0 | 25.2 | 25.5 | 8.39 | 12.12 | 11.78 | 12.21 |\n\n|  |  | o-Xylene Production (%) |  |  |  | m-Xylene Production (%) |  |  |  | p-Xylene Production (%) |  |  |  |\n| --- | --- | --- | --- | --- | --- | --- | --- | --- | --- | --- | --- | --- | --- |\n| t (h) | C/o | 475* | 500* | 525* | 540* | 475* | 500* | 525* | 540* | 475* | 500* | 525* | 540* |\n| 0.16 | 4.01 | -- | -- | 3.91 | 3.91 | -- | -- | 9.10 | 8.64 | -- | -- | 3.80 | 3.68 |\n| 0.50 | 1.33 | 2.53 | 3.45 | 3.57 | 3.57 | 5.99 | 8.52 | 8.87 | 8.75 | 2.53 | 3.34 | 3.45 | 3.57 |\n| 1.00 | 0.66 | 2.19 | 2.65 | 2.65 | 2.65 | 5.30 | 6.56 | 6.68 | 6.68 | 2.42 | 2.88 | 3.00 | 2.88 |\n\n| |\n| --- |\n| \u003Cbr>|","cbCaib4lRk53rgBc","https://ap.wps.com/l/cbCaib4lRk53rgBc","pdf",52871,5,"English","en",105,"# Chemical Processes Analysis\n## Catalyst/oil ratio (wt/wt)\n## Temperature (T)\n## VHSV (h-1)\n## Feedstock\n## Pressure\n## Conversion\n## % Toluene Conversion\n## % Benzene Production\n## o-Xylene Production (%)\n## m-Xylene Production (%)\n## p-Xylene Production (%)","[{\"question\":\"What are the key parameters analyzed in these chemical processes?\",\"answer\":\"The key parameters analyzed include catalyst/oil ratio, temperature, VHSV, feedstock, pressure, and conversion rates. Additionally, the document details toluene conversion and production of benzene, o-xylene, m-xylene, and p-xylene.\"},{\"question\":\"Which specific chemical processes are examined in this document?\",\"answer\":\"The document specifically examines processes such as XylenePlus™ and TCC, presenting data related to their operational conditions and outcomes.\"},{\"question\":\"How does temperature affect byproduct production?\",\"answer\":\"The tables show that temperatures ranging from 475°C to 540°C significantly influence the production percentages of benzene, o-xylene, m-xylene, and p-xylene, with varying optimal temperatures for each.\"}]","Chemical Process Data Analysis | PDF",1788390614,2,{"code":4,"msg":31,"data":32},"ok",{"site_id":24,"language":23,"slug":33,"title":14,"keywords":34,"description":15,"schema_data":35,"social_meta":86,"head_meta":88,"extra_data":90,"updated_unix":28},"chemical-process-data-analysis","",{"@graph":36,"@context":85},[37,53,68],{"@type":38,"itemListElement":39},"BreadcrumbList",[40,44,47,50],{"item":41,"name":42,"@type":43,"position":11},"https://docshare.wps.com","Home","ListItem",{"item":45,"name":46,"@type":43,"position":29},"https://docshare.wps.com/template/","Template",{"item":48,"name":13,"@type":43,"position":49},"https://docshare.wps.com/template/general/",3,{"item":51,"name":14,"@type":43,"position":52},"https://docshare.wps.com/template/chemical-process-data-analysis/188593/",4,{"url":51,"name":14,"@type":54,"author":55,"headline":14,"publisher":57,"fileFormat":60,"inLanguage":23,"description":15,"dateModified":61,"datePublished":62,"encodingFormat":60,"isAccessibleForFree":63,"interactionStatistic":64},"DigitalDocument",{"name":9,"@type":56},"Person",{"url":41,"name":58,"@type":59},"DocShare","Organization","application/pdf","2026-09-04","2026-09-02",true,{"@type":65,"interactionType":66,"userInteractionCount":11},"InteractionCounter",{"@type":67},"ViewAction",{"@type":69,"mainEntity":70},"FAQPage",[71,77,81],{"name":72,"@type":73,"acceptedAnswer":74},"What are the key parameters analyzed in these chemical processes?","Question",{"text":75,"@type":76},"The key parameters analyzed include catalyst/oil ratio, temperature, VHSV, feedstock, pressure, and conversion rates. Additionally, the document details toluene conversion and production of benzene, o-xylene, m-xylene, and p-xylene.","Answer",{"name":78,"@type":73,"acceptedAnswer":79},"Which specific chemical processes are examined in this document?",{"text":80,"@type":76},"The document specifically examines processes such as XylenePlus™ and TCC, presenting data related to their operational conditions and outcomes.",{"name":82,"@type":73,"acceptedAnswer":83},"How does temperature affect byproduct production?",{"text":84,"@type":76},"The tables show that temperatures ranging from 475°C to 540°C significantly influence the production percentages of benzene, o-xylene, m-xylene, and p-xylene, with varying optimal temperatures for each.","https://schema.org",{"og:url":51,"og:type":87,"og:title":14,"og:site_name":58,"og:description":15},"article",{"robots":89,"canonical":51},"index,follow",{"doc_id":7,"site_id":24},{"code":4,"msg":5,"data":92},[93,98,103,108,113,118,123,128,132],{"id":94,"doc_module":11,"doc_module_name":46,"category_name":95,"show_sort_weight":96,"slug":97},11,"Presentations",90,"presentations",{"id":99,"doc_module":11,"doc_module_name":46,"category_name":100,"show_sort_weight":101,"slug":102},12,"Resumes",80,"resumes",{"id":104,"doc_module":11,"doc_module_name":46,"category_name":105,"show_sort_weight":106,"slug":107},14,"Invoices",70,"invoices",{"id":109,"doc_module":11,"doc_module_name":46,"category_name":110,"show_sort_weight":111,"slug":112},15,"Posters",60,"posters",{"id":114,"doc_module":11,"doc_module_name":46,"category_name":115,"show_sort_weight":116,"slug":117},16,"Social Media",50,"social-media",{"id":119,"doc_module":11,"doc_module_name":46,"category_name":120,"show_sort_weight":121,"slug":122},17,"Forms",40,"forms",{"id":124,"doc_module":11,"doc_module_name":46,"category_name":125,"show_sort_weight":126,"slug":127},18,"Letters",30,"letters",{"id":129,"doc_module":11,"doc_module_name":46,"category_name":130,"show_sort_weight":21,"slug":131},21,"Paper Templates","papers-templates",{"id":12,"doc_module":11,"doc_module_name":46,"category_name":13,"show_sort_weight":4,"slug":133},"general-158"]