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市場調查報告書

生物界面活性劑的顛覆性創新

Disruptive Innovations in Biosurfactants

出版商 Frost & Sullivan 商品編碼 921056
出版日期 內容資訊 英文 43 Pages
商品交期: 最快1-2個工作天內
價格
生物界面活性劑的顛覆性創新 Disruptive Innovations in Biosurfactants
出版日期: 2019年12月30日內容資訊: 英文 43 Pages
簡介

生物界面活性劑逐漸成為替代傳統界面活性劑的魅力產品。因為在化妝品、個人護理用品、農業等應用領域的產品開發努力,在轉向非原油界面活性劑之後已獲得令人滿意的結果,這種轉向過渡也變得越來越重要。此外,由於有助生物界面活性劑研發的材料使用相關法規快速變化,大幅推動了全球採用環保替代品的採用。

本報告研究基於油籽、穀物、昆蟲、藻類、木質纖維素等原料的各種生物界面活性劑,系統性彙整技術力、製造製程、未來展望等情報。

第1章 摘要整理

第2章 技術概要

  • 生物界面活性劑是相較傳統界面活性劑更理想的界面活性劑
  • 生物精煉是最廣泛使用的生物界面活性劑製造方法
  • 穀物衍生生質是最廣泛採用的生物界面活性劑原料
  • 油籽是生物界面活性劑製造使用的傳統原料之一
  • 木質纖維素主要新興原料類型之一
  • 正在研究作為生物界面活性劑潛在原料的昆蟲
  • 正考量藻類作為生物界面活性劑的微生物合成
  • 生物界面活性劑的採用因其生物降解的特性而強化
  • 生物界面活性劑原料採購方面,相較合成界面活性劑較具成本效益
  • 歐洲地域由於嚴格規範具最大的採用潛力

第3章 趨勢分析

  • 基於奈米技術的生物界面活性劑相關研發活動大幅增加
  • 專利趨勢受到消費者產品領域生物界面活性劑需求驅動
  • 關鍵產業創新
  • 生物界面活性劑的微生物培養在歐洲地域獲得採用
  • 歐洲地區由於生物精煉的大幅擴張,進行著最高額融資活動

第4章 應用情勢

  • 生物界面活性劑的關鍵應用領域
  • 規範在化妝品部門的生物界面活性劑採用中扮演關鍵角色
  • 生物界面活性劑將在強化石油回收 (EOR) 應用中發揮重要作用
  • 生物界面活性劑的生物降解性改善了工業清潔領域的採用潛力
  • 生物界面活性劑大幅改善植物營養素的生物有效性
  • 透過生物界面活性劑的採用可大幅減少個人護理製劑中合成的需求

第5章 技術標竿

  • 標竿評分指標
  • 化妝品部門具最高應用潛力
  • 化妝品部門由於對永續產品的關注越來越高,擁有高採用潛力

第6章 產業聯絡資訊

第7章 附錄

目錄
Product Code: D8F7

Biosurfactants Have the Highest Adoption Potential for Cosmetics and Oil and Gas Sector

Biosurfactants are becoming an attractive alternative for conventional surfactants. This transition is gaining importance as product developmental efforts in application areas such as cosmetics, personal care, and agriculture have already received satisfying results after shifting toward non-crude-based surfactants. There is also a significant push toward adoption of eco-friendly alternatives across the globe owing to rapid changes in regulations around material use that is aiding the R&D efforts towards biosurfactants.

This research service titled, “Disruptive Innovations in Biosurfactants,” provides an understanding of various types of forms of biosurfactants based on feedstocks such as, oil seed-based, cereals, insects, algae, and lignocellulose. This research service describes the technology capabilities, manufacturing processes, and future prospects in development of biosurfactants. Additionally, it also captures the various factors that influence adoption and the application prospects in various industries. This research service also highlights the disruptive innovations that will enable the use of biosurfactants to meet the needs of various applications.

Table of Contents

1.0. Executive Summary

  • 1.1. Research Scope
  • 1.2. Research Methodology
  • 1.3. Key Findings
  • 1.4. Factors Influencing the Adoption of Biosurfactants

2.0. Technology Snapshot

  • 2.1. Biosurfactants Are More Desirable Forms of Surfactants than Conventional Surfactants
  • 2.2. Biorefining is the Most Widely Used Manufacturing Method for Biosurfactants
  • 2.3. Biomass Derived from Cereals are the Most Widely Adopted Feedstock for Biosurfactants
  • 2.4. Oilseed is One of the Conventional Feestocks Used for Manufacturing Biosurfactants
  • 2.5. Lignocellulose is One of the Key Emerging Feedstock Types
  • 2.6. Insects are Being Investigated as a Potential Feedstock for Biosurfactants
  • 2.7. Algae is Being Considered for Microbial Synthesis of Biosurfactants
  • 2.8. Adoption of Biosurfactants is Enhanced by their Biodegradability Characteristics
  • 2.9. Sourcing of Raw Materials for Biosurfactants is Cost-effective Compared to Synthetic Surfactants
  • 2.10. European Region has the Highest Adoption Potential Owing to Stringent Regulations

3.0. Trend Analysis

  • 3.1. R&D Activity Around Nanotechnology-based Biosurfactants is Increasing Significantly
  • 3.2. Patenting Trends are Driven By the increasing Demand for Biosurfactants in Consumer Products Segment
  • 3.3. Key Industrial Innovations
  • 3.4. Microbial Culturing of Biosurfactants is Gaining Adoption in the European Region
  • 3.5. European Region has the Highest Funding Activity Owing to Significant Biorefinery Expansion

4.0. Application Landscape

  • 4.1. Key Application Areas for Biosurfactants
  • 4.2. Regulations Play a Critical Role for the Adoption of Biosurfactants in the Cosmetics Sector
  • 4.3. Biosurfactants will Play a Major Role in Enhanced Oil Recovery Applications
  • 4.4. Biodegradability of Biosurfactant has Improved Adoption Potential in Industrial Cleaning Sector
  • 4.5. Biosurfactants will Significantly Improve the Bioavailability of Plant Nutrients
  • 4.6. Adoption of Biosurfactants can Significantly Reduce the Need for Synthetics in Personal Care Formulations

5.0. Technology Benchmarking

  • 5.1. Benchmarking Rubrics
  • 5.2. Cosmetics Sector is Observed to have the Highest Application Potential
  • 5.3. Cosmetics Sector is Observed to have a High Adoption Potential Owing to Increasing Focus on Sustainable Products

6. Key Contacts

  • 6.1. Key Contacts

7. Appendix

  • 7.1. Benchmarking Matrix Data-I
  • 7.2. Benchmarking Matrix Data-II
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