energy

China Waste to Energy (WTE) Market Research Report 2017


Published On : May 2017

Category : Waste Management

No. of Pages : 112 pages

  • $3200
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In the last several years, china market of Waste-to-Energy Technologies developed high growth rate, with an average growth rate of 16.7%. In 2016, the revenue of Waste-to-Energy Technologies is nearly 3895 M USD; the actual Waste Treat is about 55.74 million tons. The actual Energy Generate is about 38 M Kw.h;
The china Energy Generate of Waste-to-Energy Technologies is in the increasing trend, from 25463 M Kw.h in 2012 to 38557 M Kw.h in 2016. With the situation of china economy, Energy Generate of Waste-to-Energy Technologies will be in increasing trend in the following five years.
The classification of Waste-to-Energy Technologies includes Thermal Technologies and Biochemical Reactions. The proportion of Thermal Technologies in 2016 is about 97.3%.

The major players in China market include 

Sanfeng Covanta
China Everbright
Tianjin Teda
Grandblue
Shanghai Environmental
Shenzhen Energy

On the basis of product, the Waste to Energy (WTE) market is primarily split into 

Thermal Technologies
Biochemical Reactions

Waste disposal or waste management refers to all the actions and activities required for managing waste to its final disposal from its inception. This comprises collection, treatment, transport, and waste disposal along with regulation and monitoring among several other things. It further encompasses the regulatory and legal framework that pertains to waste management incorporating guidance and policies on recycling. The waste management industry, however adopted late technologies such as integrated software packages, GPS, and RFID which aids in the collection of high quality data eliminating the need of manual data entry or estimation. With growing concerns over environment degradation, the demand for waste management is likely to grow in the coming years, thus benefitting the industry directly.

The research study presents a comprehensive synopsis of the factors that are likely to have a lasting or short term impact on the growth of the China waste to energy wte market research report 2017 market during the forecast period. The report accurately explores elements that are likely to have a stimulus or delayed effect on the China waste to energy wte market research report 2017 market in the short or long run. The growth trajectory of the market has also been minutely studied with special attention on the drivers, restraints, and prospects present in the China waste to energy wte market research report 2017 market for the players and investors to look on to. Several facets such as inflow of raw materials and outflow of end products, imports and exports, policies and regulations of governments, performance of the market in the global and regional level, products distributed and sold, and industrialized capacity of the industrial facility have also been emphasized upon in the study.

Diverse regions where the market is set-up have also been paid attention to and the elements at play assisting or hindering the expansion of the market in those regions. The report also provides an inclusive outlook of the elite companies operating in the China waste to energy wte market research report 2017 market. With the help of this, the reader can have a clear picture of the competitive landscape of the players and an understanding of the products and marketing tactics of the leading players in the China waste to energy wte market research report 2017 market. 

Figure Product Picture of Waste to Energy (WTE) 1
Figure China Waste to Energy (WTE) Waste Treat Volume Market Share by Types in 2016 3
Figure Thermal Technologies Product Picture 4
Figure Biochemical Reactions Product Picture 5
Figure China Waste to Energy (WTE) Waste Treat Volume Market Share by Power Generation in 2016 6
Figure China Market Size (Value) of Waste to Energy (WTE) (2012-2022) 7
Figure China Market Size (Power Generation (M Kw.h)) of Waste to Energy (WTE) (2012-2022) 8
Figure China Market Size (Waste Treat Capacity (M MT)) of Waste to Energy (WTE) (2012-2022) 9
Table Government Policy 9
Table China Waste to Energy (WTE) Waste Treat Capacity of Key Players (2016-2017) 17
Table China Waste to Energy (WTE) Waste Treat Capacity Share (%) by Players (2016-2017) 17
Figure 2016 China Waste to Energy (WTE) Waste Treat Capacity Share (%) by Players 18
Figure 2017 China Waste to Energy (WTE) Waste Treat Capacity Share (%) by Players 19
Table China Waste to Energy (WTE) Waste Treat Volume of Key Players (2016-2017) 19
Table China Waste to Energy (WTE) Waste Treat Volume Share (%) by Players (2016-2017) 20
Figure 2016 China Waste to Energy (WTE) Waste Treat Volume Share (%) by Players 20
Figure 2017 China Waste to Energy (WTE) Waste Treat Volume Share (%) by Players 21
Table China Waste to Energy (WTE) Revenue by Players (2016-2017) 21
Table China Waste to Energy (WTE) Revenue Market Share (%) by Players (2016-2017) 22
Figure 2016 China Waste to Energy (WTE) Revenue Market Share (%) by Players 22
Figure 2017 China Waste to Energy (WTE) Revenue Market Share (%) by Players 23
Figure 2016 China Waste to Energy (WTE) Waste Treat Volume Share (%) by Players 24
Figure China Waste to Energy (WTE) Market Share of Top 3 Players 25
Figure China Waste to Energy (WTE) Market Share of Top 5 Players 26
Table Sanfeng Covanta Company Profile 27
Table Waste-to-Energy Technologies Waste Treat Capacity and Volume (M MT), Energy Generate (M Kw.h) and Revenue (M USD) of Sanfeng Covanta 2016-2017 28
Table China Everbright Company Profile 29
Table Waste-to-Energy Technologies Waste Treat Capacity and Volume (M MT), Energy Generate (M Kw.h) and Revenue (M USD) of China Everbright 2016-2017 30
Table Tianjin Teda Company Profile 30
Table Waste-to-Energy Technologies Waste Treat Capacity and Volume (M MT), Energy Generate (M Kw.h) and Revenue (M USD) of Tianjin Teda 2016-2017 32
Table Shenzhen Energy Company Profile 32
Table Waste-to-Energy Technologies Waste Treat Capacity and Volume (M MT), Energy Generate (M Kw.h) and Revenue (M USD) of Shenzhen Energy 2016-2017 34
Table Shanghai Environmental Company Profile 34
Table Waste-to-Energy Technologies Waste Treat Capacity and Volume (M MT), Energy Generate (M Kw.h) and Revenue (M USD) of Shanghai Environmental 2016-2017 36
Table Grandblue Company Profile 37
Table Waste-to-Energy Technologies Waste Treat Capacity and Volume (M MT), Energy Generate (M Kw.h) and Revenue (M USD) of Grandblue 2016-2017 38
Figure China Waste to Energy (WTE) Capacity, Volume and Growth (2012-2017) 39
Figure China Waste to Energy (WTE) Revenue and Growth (2012-2017) 40
Table China Waste to Energy (WTE) Volume and Market Share by Type (2012-2017) 41
Figure China Waste to Energy (WTE) Volume and Market Share by Type in 2016 42
Table China Waste to Energy (WTE) Volume and Market Share by Type (2012-2017) 42
Figure China Waste to Energy (WTE) Volume and Market Share by Type in 2016 43
Figure China Waste to Energy (WTE) Volume Growth by Type (2012-2017) 44
Table China Waste to Energy (WTE) Volume by Power Generation (2012-2017) 45
Table China Waste to Energy (WTE) Market Share by Power Generation (2012-2017) 45
Figure China Waste to Energy (WTE) Market Share by Power Generation in 2016 46
Figure China Waste to Energy (WTE) Volume Growth Rate by Power Generation (2012-2017) 47
Figure Reaction Process Analysis of Waste to Energy (WTE) 48
Figure Manufacturing Cost Structure of Waste to Energy (WTE) 49
Figure USA Labor Cost Analysis 2012-2016 50
Figure Cost of Employing a Factory Worker 51
Figure 2016 Estimated Labour Costs for the Whole Economy in Europe 52
Figure Monthly Minimum Wages in Asia 2016 53
Figure China Labor Costs 2013-2016 53
Table Average Price of Electricity to Ultimate Customers 2007-2016 54
Figure Electricity Prices for Household Consumers in 2016 56
Figure Summary of the Driving Assumptions 57
Figure Industrial Electric Rates 2016 (PER KWH) 58
Figure Waste to Energy (WTE) Industrial Chain Analysis 60
Table SWOT Analysis of Waste-to-Energy Technologies 61
Figure Global GDP Growth Rate for 2015 74
Figure US GDP 2006-2016 (Billion USD) 75
Figure US CPI Change 2016-2017 75
Figure EU GDP 2006-2016 (Billion USD) 76
Figure EU CPI Change 2012-2016 76
Figure Germany GDP 2006-2016 (Billion USD) 77
Figure Germany CPI Change 2016-2017 77
Figure UK GDP 2006-2016 (Billion USD) 77
Figure UK CPI Change 2016-2017 78
Figure Italy GDP 2006-2016 (Billion USD) 78
Figure Italy CPI Change 2016-2017 79
Figure Japan GDP 2006-2016 (Billion USD) 79
Figure Japan CPI Change 2012-2016 80
Figure China GDP 2006-2016 (Billion USD) 80
Figure China CPI Change 2016-2017 81
Figure USA Overview of Average Hourly Wages 2015-2016 (USD/Hour) 82
Figure USA Overview of Labor Costs 2013-2016 (110 Index Points) 82
Figure Cost of Employing a Factory Worker 84
Figure 2015 Estimated Labour Costs for the Whole Economy in EuropeR 85
Figure Monthly Minimum Wages in Asia 2016 86
Figure China Overview of Average Yearly Wages 2015-2016 (CNY/Year) 86
Figure Japan Overview of Average Monthly Wages 2015-2016(JPY Thousand/Month) 87
Table Average Price of Electricity to Ultimate Customers 87
Figure Electricity Prices for Household Consumers in 2015 88
Figure Summary of the Driving Assumptions 89
Figure Industrial Electric Rates 2015 (PER KWH) 89
Figure China Waste to Energy (WTE) Waste Treat Capacity, Volume Forecast (2017-2022) 91
Figure China Waste to Energy (WTE) Revenue (M USD) and Growth Rate Forecast (2017-2022) 92
Table China Waste to Energy (WTE) Waste Treat Volume (M MT) Forecast by Type (2017-2022) 92
Figure China Waste to Energy (WTE) Waste Treat Volume Market Share Forecast by Type in 2022 93
Table China Waste to Energy (WTE) Waste Treat Volume (M Kw.h) Forecast by Application (2017-2022) 93
Figure China Waste to Energy (WTE) Waste Treat Volume Market Share Forecast by Application in 2022 94
Table Research Programs/Design for This Report 96
Figure Bottom-up and Top-down Approaches for This Report 99
Figure Data Triangulation 100
Table Key Data Information from Secondary Sources 101
Table Key Data Information from Primary Sources 102

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