Sensors for Trace Contaminant Detection in Water: Technologies and Global Markets

Publisher Name :
Date: 22-Oct-2018
No. of pages: 168

Report Scope:

The scope of this report covers the many types of sensors available and their potential applications. Revenue forecasts from 2017 to 2022 are provided by application, sensor technology segment and regional market, with estimated values derived from manufacturers' total revenues. The report covers sensors used for the detection of trace metals, biologics, volatile organic compounds (VOCs) and semi-VOCs, and radioisotopes found in water.

The report includes a discussion of the major players, by region, in the global market for trace contamination detection sensors. It also explains the major drivers, regional dynamics and current trends in the industry. The report concludes with a look at the vendor landscape, with profiles of the major vendors.

Report Includes:

- 136 tables

- An overview of the global markets and technologies for sensors for trace contaminant detection in water

- Analyses of global market trends, with data from 2016, 2017, and projections of compound annual growth rates (CAGRs) through 2022

- Coverage of type of sensor products available and their potential applications

- Description of sensor technologies i.e nano electrode array and laser induces break down spectroscopy

- Discussion of the major players of the industry, including Aqua Metrology Systems, Electro-Chemical Devices, Hanna Instruments, Inc., OptiEnz Sensors, Seapoint Sensors Inc., Thermo Fisher Scientific and Yokogawa India Ltd

Summary

The prevalence of water pollution across the globe has created the need for sensors for trace contaminant detection. According to the National Institute of Environmental Health Sciences (NIEHS), water pollution is contamination of water with chemicals or other foreign substances that include sewage and food processing waste; fertilizers and pesticides from agricultural runoff; lead, mercury and various heavy metals; chemical contamination from hazardous waste sites; and chemical wastes from industrial discharges that are detrimental to plant, human or animal health. Such sensors can detect harmful traces such as carbonic compounds, chemicals such as pesticides and insecticides, biological

contaminants, and metals such as iron, cobalt, arsenic, cadmium, mercury, molybdenum chromium, copper, manganese, selenium, vanadium nickel, lead and zinc in bodies of water to prevent and control water pollution. The use of sensors to detect trace contaminants in water is considered a novel method of checking and controlling the quality of water. The types of sensors include chemical sensors, electrochemical piezoelectric sensors, functional DNA biosensors and others. These sensors are used in various applications, including drinking water, groundwater and surface water, wastewater and laboratory application.

According to the U.S. Environmental Protection Agency (EPA), the Safe Drinking Water Act considers contaminants to be any foreign chemical, physical, radiological and biological matter or substance present in water. In groundwater and surface water, trace contamination detection sensors detect the presence of harmful contaminants such as nuclear materials and toxic chemical spills, thereby making the water better suited for irrigation purposes. Sensors for trace contamination detection in wastewater detect the severity of contaminants, after which the appropriate treatment measures are adopted. Sensors also serve the purpose of checking contaminant levels after the water is treated. In laboratories, trace contamination detection sensors are used for analyzing various water samples collected from rivers, oceans and other water resources for contamination types and levels. Trace contamination detection sensors are also used in aquaculture and coastal/estuarine applications.

The global market for sensors used for trace contamination detection in water is projected to rise at a CAGR of REDACTED% during forecast period through 2022. By 2022, total revenues are expected to reach nearly $REDACTED billion, compared to $REDACTED billion in 2016.

The report analyzes each market segment, which includes drinking water, groundwater and surface water, wastewater, laboratory applications and others. Groundwater and surface water accounted for REDACTED% of the market in 2016 in terms of revenue, followed by drinking water, wastewater, others and laboratory applications. By 2022, total revenues from the groundwater and surface water segment are expected to reach $REDACTED million. The drinking water segment is expected to have the highest CAGR, REDACTED%, by 2022. By 2022, the total revenue from the drinking water segment is expected to reach $REDACTED million.The figure below shows the market revenues of sensors for trace contamination detection in water, by application, for the forecast period of 2017 to 2022.

Sensors for Trace Contaminant Detection in Water: Technologies and Global Markets

Table of Contents
Chapter 1 Introduction
Study Goals and Objectives
Reasons for Doing This Study
Scope of Report
Methodology
Geographic Breakdown
Analyst's Credentials
BCC Custom Research
Related BCC Research Reports
Chapter 2 Summary and Highlight
Chapter 3 Market and Technology Background
Supply Chain Analysis
Suppliers of Sensors for Trace Contamination Detection in Water
Manufacturers of Trace Contamination Detection Sensors in Water
Market Factors
Application of Trace Contamination Detection Sensors in Water
Sensors: Evolution and Transition
History of Sensors
Estimation Analysis
High Water Pollution Levels across the Globe
Future Water Stress
Water Pollution Sources
Regulatory Framework
United States
European Union
Groundwater Directive (2006/118/EC)
Canada
China
Japan
Australia
Market Overview
By Application
Drinking Water
Groundwater and Surface Water
Wastewater
Laboratory Applications
Others
Sensor Technologies
Nanoelectrode Arrays
Laser Induced Breakdown Spectroscopy
MicroChemLab
CZT Detectors
Other Sensor Technologies
Regional Analysis
North America
Europe
Asia-Pacific
Rest of World
Chapter 4 Market Breakdown by Application
Overview
Drinking Water
Application of Sensor for Trace Contaminant Detection in Drinking Water
Ground and Surface Water
Sensors for Trace Contaminant Detection in Groundwater and Surface Water
Wastewater
Application
Temperature Sensor
pH
Conductivity
Biomass/Suspended Solids
Anaerobic Digestion
Sensors in Wastewater Treatment
Laboratory Applications
Sensors for Trace Contaminant Detection in Laboratory Applications
Other Applications
Aquaculture
Coastal/Estuarine Applications
Sensors Used for Trace Contaminant Detection in Coastal Waters and Estuaries
Chapter 5 Market Breakdown by Sensor Technology
Drinking Water
Chemical Leakage Detection in Rivers
Swimming Pool Remote Measurement
Pollution Levels in the Sea
Corrosion and Limescale Deposits Prevention
Hydroponics
Fish Farms, Fish Tanks, Hatcheries, Aquaculture and Aquaponics
MicroChemLab (Lab-on-a-Chip Sensor Technology)
Pre-concentration
Separation
Detection
MicroChemLab (Liquid)
Cadmium Zinc Telluride Detectors
Nanoelectrode Arrays
Nanostructured Gold Nanoelectrode Arrays for Ultrasensitive Detection of Heavy Metal Contamination
Pd-Cu Cathode Nanoelectrode Arrays for Nitrate Electroreduction
Mechanism and Effectiveness of Ti-based Nanoelectrodes for Electrochemical Denitrification
Cu- and Fe-based Nanoelectrode Arrays for Nitrate Electroreduction
Laser-Induced Breakdown Spectroscopy
Chapter 6 Market Breakdown by Region
North America
United States
Canada
Mexico
Europe
United Kingdom
France
Germany
Spain
Italy
Rest of Europe
Asia-Pacific
China
India
Japan
Australia
South Korea
Rest of Asia-Pacific
Rest of the World
Latin America
Middle East and Africa
Chapter 7 Market Drivers
Increasing Water Pollution
Government Initiatives for Environment Monitoring
Technological Advancements
Adoption of Smart Water Networks
Chapter 8 Company Profiles
ANDALYZE INC.
AQUA METROLOGY SYSTEMS
ATLAS SCIENTIFIC
BIOSENSOR SRL
CHELSEA TECHNOLOGIES GROUP LTD.
ELECTRO-CHEMICAL DEVICES
FREDSENSE TECHNOLOGIES CORP.
GINER LABS
HACH COMPANY
HANNA INSTRUMENTS INC.
HORIBA LTD.
HYDRO INTERNATIONAL
INNOVATIVE SENSOR TECHNOLOGY AG
LIBELIUM
LUMENSE INC.
MULTISENSOR SYSTEMS LTD.
NANOAFFIX SCIENCE LLC
OAKTON INSTRUMENTS
OPTEX CO. LTD
OPTIENZ SENSORS
OPTIQUA TECHNOLOGIES PTE LTD.
SEAPOINT SENSORS INC.
SENSOREX CORP.
SORBISENSE A/S
TELEDYNE ANALYTICAL INSTRUMENTS
THERMO FISHER SCIENTIFIC
VAN LONDON CORP.
VEOLIA
YOKOGAWA INDIA LTD.
YSI INC.

List of Tables
Summary Table : Global Market for Sensors for Trace Contamination Detection in Water, by Application, Through 2022
Table 1 : Parameters to be Monitored in Trace Contamination Detection
Table 2 : Global Suppliers of Raw Materials Used in the Production of Sensors for Trace Contamination Detection in Water
Table 3 : Global Manufacturers of Sensors for Trace Contaminant Detection in Water
Table 4 : Stimuli Commonly Measured Through Sensors
Table 5 : Criteria for Selecting a Sensor
Table 6 : EPA Ratings for Water Bodies Based on the Level of Total Dissolved Solids
Table 7 : Water Quality Index (WQI) Designations
Table 8 : Water Quality Index (WQI) Level, by Country
Table 9 : Severity Scale of Water Stress
Table 10 : Top 32 Water-Stressed Countries, 2040
Table 11 : Fresh Water Pollution Sources, Effects and Concerns
Table 12 : Inorganic and Organic Chemical Contaminants Regulated, by EPA in Drinking Water
Table 13 : List of Contaminants Regulated in Drinking Water by the EU
Table 14 : Drinking Water Quality Standards in Japan
Table 15 : Australian Drinking Water Guidelines/Key Water Quality Parameters
Table 16 : Global Market Share of Sensors for Trace Contamination Detection in Water, by Application, 2016 and 2022
Table 17 : Global Distribution Shares of Freshwater, by Source
Table 18 : Benefits and Drawbacks of Commercially Accessible Nutrient Sensor Technologies
Table 19 : Global Distribution Share of Groundwater, by Use
Table 20 : Global Distribution Share of Ground and Surface Water, by Source
Table 21 : Negative Impact of Untreated Wastewater on the Environment, Human Health and Productive Activities
Table 22 : Global Distribution Share of Untreated Wastewater, by Economy, 2015 vs. 2030
Table 23 : Key Points Considered Prior to Sensor Placement in Laboratories
Table 24 : Manufacturers of Trace Contamination Detection Sensors
Table 25 : Global Market Share of Sensors for Trace Contamination Detection in Water, by Technology, 2016 and 2022
Table 26 : List of Contaminants with Their Harmful Level and Impact
Table 27 : Sensor Technologies and Detection Limits
Table 28 : Global Market Share of Sensors for Trace Contamination Detection in Water, by Region, 2016 and 2022
Table 29 : Global Market for Sensors for Trace Contaminant Detection in Water, by Application, Through 2022
Table 30 : Permissible Contaminant Levels in Drinking Water
Table 31 : Global Market for Sensors for Trace Contaminant Detection in Drinking Water, by Region, Through 2022
Table 32 : EPA National Drinking Water Standards for Microorganisms
Table 33 : European Standard Allowances for Chemicals in Drinking Water
Table 34 : Global Market for Sensors for Trace Contaminant Detection for Groundwater and Surface Water, by Region, Through 2022
Table 35 : Sources of Potential Groundwater Contamination, by Land Use Category
Table 36 : Groundwater Contaminants Identified by Japan's Ministry of the Environment
Table 37 : Global Distribution Share of Wastewater Treatment, by Country
Table 38 : Typical Components of Wastewater, by Source
Table 39 : Content of Typical Wastewater in Some Major Industries
Table 40 : Comparison of Relative Requirements of Sensors for Different Environmental Monitoring Applications
Table 41 : Global Market for Sensors for Trace Contaminant Detection for Wastewater, by Region, Through 2022
Table 42 : Global Market for Sensors for Trace Contaminant Detection for Laboratory Applications, by Region, Through 2022
Table 43 : Reagent Grade Water Specifications
Table 44 : C3-A4 Reagent Laboratory Water
Table 45 : Reagent Grade Water Specifications
Table 46 : Standard Guide for Bio-Applications Grade Water
Table 47 : Consequences of Several Water Contaminants on Various Laboratory Procedures
Table 48 : Type of Water Used in Various Laboratory Applications
Table 49 : Possible Environmental Impacts of Aquaculture
Table 50 : Global Market for Sensors for Trace Contaminant Detection for Other Applications, by Region, Through 2022
Table 51 : Global Market for Sensors for Trace Contaminant Detection, by Technology, Through 2022
Table 52 : Sensor Technologies Used for Water Monitoring
Table 53 : Potential Sensor Technologies of MicroChemLab
Table 54 : Specifications for MicroChemLab (Liquid Version)
Table 55 : Global Market for MicroChemLab, by Region, Through 2022
Table 56 : Summary of Specifications for Radioisotope CZT Sensors T
Table 57 : Global CZT Market, by Region, Through 2022
Table 58 : Volume of LLW/ILW Radioactive Waste Generated by 1,000 MWe Nuclear Power Reactor
Table 59 : Specifications of Nanoelectrode Arrays (Trace Metal Sensors)
Table 60 : Global Market for Nanoelectrode Arrays, by Region, Through 2022
Table 61 : Global Market for Sensors for Trace Contaminant Detection, by Region, Through 2022
Table 62 : North American Market for Sensors for Trace Contaminant Detection, by Country, Through 2022
Table 63 : North American Market for Sensors for Trace Contaminant Detection, by Application, Through 2022
Table 64 : U.S. Manufacturers of Water Sensors
Table 65 : North American Market for Sensors for Trace Contaminant Detection, by Technology, Through 2022
Table 66 : European Drinking Water Quality Standards
Table 67 : European Market for Sensors for Trace Contaminant Detection, by Country, Through 2022
Table 68 : European Market for Sensors for Trace Contaminant Detection, by Technology, Through 2022
Table 69 : U.K.-Based Chemical Standards
Table 70 : European Market for Sensors for Trace Contaminant Detection, by Application, Through 2022
Table 71 : Asia-Pacific Market for Sensors for Trace Contaminant Detection, by Country, Through 2022
Table 72 : Water Quality in China, by Percentage, 2016
Table 73 : Asia-Pacific Market for Sensors for Trace Contaminant Detection, by Application, Through 2022
Table 74 : Asia-Pacific Market for Sensors for Trace Contaminant Detection, by Technology, Through 2022
Table 75 : Established Water Stations
Table 76 : ROW Market for Sensors for Trace Contaminant Detection, by Country, Through 2022
Table 77 : ROW Market for Sensors for Trace Contaminant Detection, by Application, Through 2022
Table 78 : Latin American Market for Sensors for Trace Contaminant Detection, by Application, Through 2022
Table 79 : ROW Market for Sensors for Trace Contaminant Detection, by Technology, Through 2022
Table 80 : Total Consumption of Pesticides in Brazil, by Crop, 2015
Table 81 : Latin American Market for Sensors for Trace Contaminant Detection, by Technology, Through 2022
Table 82 : Annually Renewable Fresh Water Available per Capita in the Middle East and North Africa (MENA)
Table 83 : MENA Market for Sensors for Trace Contaminant Detection, by Application, Through 2022
Table 84 : MENA Market for Sensors for Trace Contaminant Detection, by Technology, Through 2022
Table 85 : Household Indoor Water Use in the U.S., 2016
Table 86 : U.S. Water Consumption Share, 2016
Table 87 : Total Water Use in New York State, by Category, 2016
Table 88 : Total Water Use in New York State, by Other Category, 2016
Table 89 : China's Key Policies for Water Pollution
Table 90 : China's Key Policies for Environmental Monitoring and Testing
Table 91 : EPA National Primary Drinking Water Standards for Inorganic Chemicals
Table 92 : EPA National Primary Drinking Water Standards for Organic Chemicals
Table 93 : Product Portfolio
Table 94 : Recent Developments
Table 95 : Product Portfolio
Table 96 : Recent Developments
Table 97 : Product Portfolio
Table 98 : Product Portfolio
Table 99 : Product Portfolio
Table 100 : Recent Developments
Table 101 : Product Portfolio
Table 102 : Recent Developments
Table 103 : Product Portfolio
Table 104 : Recent Developments
Table 105 : Product Portfolio
Table 106 : Product Portfolio
Table 107 : Recent Developments
Table 108 : Product Portfolio
Table 109 : Product Portfolio
Table 110 : Recent Developments
Table 111 : Product Portfolio
Table 112 : Product Portfolio
Table 113 : Recent Developments
Table 114 : Product Portfolio
Table 115 : Recent Developments
Table 116 : Product Portfolio
Table 117 : Product Portfolio
Table 118 : Recent Developments
Table 119 : Product Portfolio
Table 120 : Product Portfolio
Table 121 : Product Portfolio
Table 122 : Product Portfolio
Table 123 : Product Portfolio
Table 124 : Recent Developments
Table 125 : Product Portfolio
Table 126 : Product Portfolio
Table 127 : Product Portfolio
Table 128 : Recent Development
Table 129 : Product Portfolio
Table 130 : Product Portfolio
Table 131 : Product Portfolio
Table 132 : Product Portfolio
Table 133 : Product Portfolio
Table 134 : Recent Developments
Table 135 : Product Portfolio
Table 136 : Recent Developments

List of Figures
Summary Figure : Global Market for Sensors for Trace Contamination Detection in Water, by Application, 2016-2022
Figure 1 : Basic Scale-up Process for Trace Contamination Detection Sensors
Figure 2 : Supply Chain for Sensors for Trace Contaminant Detection in Water
Figure 3 : Working of a Sensor
Figure 4 : Online Water Quality Monitoring
Figure 5 : Global Market Share of Sensors for Trace Contamination Detection in Water, by Application, 2016 and 2022
Figure 6 : Global Distribution Shares of Freshwater, by Source
Figure 7 : Global Distribution Shares of Groundwater, by Use
Figure 8 : Global Distribution Shares of Ground and Surface Water, by Source
Figure 9 : Global Distribution Shares of Untreated Wastewater, by Economy, 2015 vs. 2030
Figure 10 : Global Market Share of Sensors for Trace Contamination Detection in Water, by Technology, 2016 and 2022
Figure 11 : Global Market Share of Sensors for Trace Contamination Detection in Water, by Region, 2016 and 2022
Figure 12 : Global Distribution Share of Wastewater Treatment, by Country
Figure 13 : Top Five Countries with Maximum Nuclear Power Facilities Worldwide
Figure 14 : Water Quality in China, by Percentage, 2016
Figure 15 : Concern About Water Pollution in the U.S.
Figure 16 : Household Indoor Water Use in the U.S., 2016
Figure 17 : U.S. Water Consumption Share, 2016
Figure 18 : Total Water Use in New York State, by Category, 2016
Figure 19 : Total Water Use in New York State, by Other Category, 2016
Figure 20 : Overall Groundwater Quality in China, 2015
  • Global Volumetric Soil Moisture Sensor Market Research Report 2024
    Published: 10-Jan-2024        Price: US 2900 Onwards        Pages: 86
    A volumetric soil moisture sensor is a device used to measure The water content in soil. It provides data on soil moisture levels, which is valuable for agricultural and environmental monitoring. The global Volumetric Soil Moisture Sensor market was valued at US$ million in 2023 and is anticipated to reach US$ million by 2030, witnessing a CAGR of % during The forecast period 2024-2030. The market for volumetric soil moisture sensors is vital in agriculture and water re......
  • Global Ultrasonic Through Beam Sensor Market Research Report 2024
    Published: 10-Jan-2024        Price: US 2900 Onwards        Pages: 104
    The global Ultrasonic Through Beam Sensor market was valued at US$ million in 2023 and is anticipated to reach US$ million by 2030, witnessing a CAGR of % during The forecast period 2024-2030. North American market for Ultrasonic Through Beam Sensor is estimated to increase from $ million in 2023 to reach $ million by 2030, at a CAGR of % during The forecast period of 2024 through 2030. Asia-Pacific market for Ultrasonic Through Beam Sensor is estimated to increase from $ mil......
  • Global Ultrasonic Retro-reflective Sensor Market Research Report 2024
    Published: 10-Jan-2024        Price: US 2900 Onwards        Pages: 98
    The global Ultrasonic Retro-reflective Sensor market was valued at US$ million in 2023 and is anticipated to reach US$ million by 2030, witnessing a CAGR of % during The forecast period 2024-2030. North American market for Ultrasonic Retro-reflective Sensor is estimated to increase from $ million in 2023 to reach $ million by 2030, at a CAGR of % during The forecast period of 2024 through 2030. Asia-Pacific market for Ultrasonic Retro-reflective Sensor is estimated to increas......
  • Global Biophotonic Sensor Market Research Report 2024
    Published: 10-Jan-2024        Price: US 2900 Onwards        Pages: 85
    The global Biophotonic Sensor market was valued at US$ 437.3 million in 2023 and is anticipated to reach US$ 827 million by 2030, witnessing a CAGR of 9.4% during The forecast period 2024-2030. North American market for Biophotonic Sensor is estimated to increase from $ million in 2023 to reach $ million by 2030, at a CAGR of % during The forecast period of 2024 through 2030. Asia-Pacific market for Biophotonic Sensor is estimated to increase from $ million in 2023 to reach $......
  • Global Thermocouple Temperature Sensor Market Research Report 2024
    Published: 10-Jan-2024        Price: US 2900 Onwards        Pages: 131
    The global Thermocouple Temperature Sensor market was valued at US$ 1802.3 million in 2023 and is anticipated to reach US$ 2504.9 million by 2030, witnessing a CAGR of 4.7% during The forecast period 2024-2030. North American market for Thermocouple Temperature Sensor is estimated to increase from $ million in 2023 to reach $ million by 2030, at a CAGR of % during The forecast period of 2024 through 2030. Asia-Pacific market for Thermocouple Temperature Sensor is estimated to......
  • Global Thermistor Temperature Sensor Market Research Report 2024
    Published: 10-Jan-2024        Price: US 2900 Onwards        Pages: 131
    The global Thermistor Temperature Sensor market was valued at US$ 72 million in 2023 and is anticipated to reach US$ 88 million by 2030, witnessing a CAGR of 2.5% during The forecast period 2024-2030. North American market for Thermistor Temperature Sensor is estimated to increase from $ million in 2023 to reach $ million by 2030, at a CAGR of % during The forecast period of 2024 through 2030. Asia-Pacific market for Thermistor Temperature Sensor is estimated to increase from......
  • Global Image Sensors Market Research Report 2024
    Published: 08-Jan-2024        Price: US 2900 Onwards        Pages: 101
    An image sensor or imaging sensor is a sensor that detects and conveys The information that constitutes an image. It does so by converting The variable attenuation of light waves (as they pass through or reflect off objects) into signals, small bursts of current that convey The information. The waves can be light or other electromagnetic radiation. Image sensors are used in electronic imaging devices of both analog and digital types, which include digital cameras, camera modules, medical imaging......
  • Global Magnetic Field Sensors Market Research Report 2024
    Published: 08-Jan-2024        Price: US 2900 Onwards        Pages: 113
    Magnetic field sensors are used to measure magnetic flux and/or The strength and direction of a magnetic field. They are used mainly in scientific measurement, navigation, and Consumer Devices. Magnetic field sensors are widely used in automotive, electronics and modern industry to measure The current, position, direction and other physical parameters by induced magnetic field intensity. Magnetic Field Sensors can be classified according to whether they measure The total magnetic field or The ve......
  • Global Semiconductor Strain Gauge Sensors Market Research Report 2024
    Published: 08-Jan-2024        Price: US 2900 Onwards        Pages: 83
    As opposed to other types of strain gages, semiconductor strain gages depend on The piezoresistive effects of silicon or germanium and measure The change in resistance with stress as opposed to strain. The semiconductor bonded strain gage is a wafer with The resistance element diffused into a substrate of silicon. It is widely used as sense element for transducer manufacturing and engineering stress analysis, Semiconductor Strain Gauges are not only used for surveying stress distribution, or sta......
  • SERVICES
    Value for Money
    We believe in "optimum utilization of available budget and resources". While servicing our clients' (your) market research requirements, we keep the same approach in focus to help you get the best value for your $$s.
    Ever Growing Inventory
    Ranging from the smallest feasible / required data (datasheets, data facts, SWOT analysis, company profiles, etc) to full research reports that help you make decisions, our inventory is updated almost on a daily basis with the latest industry reports from domain experts that track more than 5000 niche sectors.
    One Stop Solution
    Need a custom research report on medical devices market? Require all available business intelligence on 3D printing industry? Exploring F&B sector of a particular country/region? RnRMarketResearch.com is your one-stop-solution to all market intelligence needs. We not only offer custom research and consulting services, we also "bundle" reports to meet your needs and help you fetch the data analysis you require for your business.
    Dedicated Client Engagement
    Not limited to only "finding" relevant reports for you, our client engagement team dedicates its efforts to understand your "business need" and accordingly maps available research data to help you move forward. Call "your" client engagement executive any time of your day and get your questions answered in order to make the correct business decision.
    Saving Time and Efforts
    Simply share your research requirement details with us and let us do all the hard work to find required intelligence for you. When you add up our "one stop solution" and "dedicated client engagement" services mentioned above, you obviously know the time and effort saving you do by working with us.
    Payment Flexibility
    Working with Fortune 500 organizations, we understand the importance of being flexible for payments. Share your payment terms with us and we will surely match up to them to ensure you get access to required business intelligence data without having to wait for the payment to be done.
    Post-Purchase Research Support
    Have questions after reading a report / datasheet bought through us? Not sure about the methodology used for data available in the research? Talk to us / Share your questions with us and if required, we will connect you with the analyst(s)/author(s) of the report(s) and ensure you get satisfactory answers for the same. Need more data / analysis / report(s) on the topic of your research/project? The RnRMarketResearch.com team is here for you 24X7 to support you with your post-purchase requirements. Subscription Offers & Packages (Get in touch with us for more details - [email protected] / +1 888 391 5441 )
    • Ad Hoc
    • Pay - as - you - go / Bucket Subscriptions
    • Fixed Cost for #of reports
    • Customize / Personalize as per your needs