Information processing system, information processing method and program
An information processing system automates the calculation of greenhouse gas reduction targets by gathering supplier data to forecast and compare emissions, addressing the challenge of managing Scope 3 emissions and supporting comprehensive abatement activities.
Patent Information
- Application Number
- JP2024079340
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2024-05-15
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2042-12-27
AI Technical Summary
There is a need to manage abatement activities effectively, particularly in setting reduction targets for greenhouse gas emissions across a supply chain, especially for Scope 3 emissions which are often overlooked.
An information processing system that includes a target acquisition unit to gather reduction rates from business entities, an emission storage unit to record emissions, an estimation unit to forecast future emissions, and a calculation unit to determine overall reduction targets by comparing past and future emissions.
Supports the setting of reduction targets by automating the calculation of Scope 3 emissions and carbon footprint reduction targets based on supplier data, facilitating comprehensive greenhouse gas emission management.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to an information processing system, an information processing method, and a program. [Background technology]
[0002] The amount of carbon dioxide and other emissions has been calculated (see Patent Document 1). [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2007-164754 Summary of the Invention [Problem to be solved by the invention]
[0004] It is required to manage abatement activities.
[0005] The present invention has been made in view of the above background, and aims to provide a technique that can support the setting of reduction target amounts. [Means for solving the problem]
[0006] The main invention of the present invention for solving the above-mentioned problems is an information processing system comprising: a target acquisition unit that acquires target greenhouse gas reduction rates from multiple business entities that constitute an upstream or downstream part of a supply chain; an emission memory unit that stores information that identifies the greenhouse gas emissions of each of the business entities at a reference point in time; an estimation unit that estimates future emissions for each of the business entities by multiplying the emissions by the target reduction rate; and a calculation unit that calculates the target reduction rate of emissions for all of the business entities by comparing the total value of the future emissions estimated for each of the business entities with the total value of the emissions for each of the business entities at the reference point in time.
[0007] Other problems and solutions disclosed in this application will be made clear in the section on preferred embodiments of the invention and the drawings. [Effects of the Invention]
[0008] According to the present invention, it is possible to support the setting of a reduction target. [Brief explanation of the drawings]
[0009] [Figure 1] 1 is a diagram illustrating an example of the overall configuration of an information processing system according to an embodiment of the present invention. [Figure 2] FIG. 2 illustrates an example of a hardware configuration of a management server 2. [Figure 3] FIG. 2 illustrates an example of the software configuration of a management server 2. [Figure 4] FIG. 2 is a diagram illustrating the operation of the information processing system. DETAILED DESCRIPTION OF THE INVENTION
[0010] <System Overview> An information processing system according to one embodiment of the present invention will be described below. The information processing system according to this embodiment supports the formulation of emissions reduction targets, particularly for Scope 3 of the GHG Protocol. Scope 3 emissions are greenhouse gas emissions by business entities (hereinafter referred to as suppliers) that are upstream and / or downstream in the supply chain of a business entity whose emissions are to be calculated. The information processing system according to this embodiment incorporates the reduction targets of suppliers and proposes them as candidates for the company's own Scope 3 emissions reduction targets.
[0011] 1 is a diagram showing an example of the overall configuration of an information processing system according to one embodiment of the present invention. The information processing system of this embodiment is configured to include a management server 2. The management server 2 is communicably connected to a user terminal 1 via a communication network 3. The communication network 3 is, for example, the Internet, and is constructed using a public telephone network, a mobile phone network, a wireless communication path, Ethernet (registered trademark), or the like.
[0012] The user terminal 1 is a computer operated by a user of a business entity such as a company that generates waste. The user terminal 1 can be, for example, a smartphone, a tablet computer, or a personal computer. The user can use the user terminal 1 to access the management server 2 and calculate the amount of waste emissions.
[0013] The management server 2 is a computer that calculates and manages emissions. The management server 2 may be a general-purpose computer such as a workstation or a personal computer, or may be logically realized by cloud computing.
[0014] <Administration Server> FIG. 2 is a diagram illustrating an example of the hardware configuration of the management server 2. Note that the illustrated configuration is an example, and other configurations may also be used. The management server 2 includes a CPU 201, a memory 202, a storage device 203, a communication interface 204, an input device 205, and an output device 206. The storage device 203 stores various data and programs, and is, for example, a hard disk drive, a solid state drive, or a flash memory. The communication interface 204 is an interface for connecting to the communication network 3, and is, for example, an adapter for connecting to Ethernet (registered trademark), a modem for connecting to a public telephone network, a wireless communication device for wireless communication, a USB (Universal Serial Bus) connector or an RS232C connector for serial communication, etc. The input device 205 is used to input data, and is, for example, a keyboard, a mouse, a touch panel, a button, a microphone, etc. The output device 206 is used to output data, and is, for example, a display, a printer, a speaker, etc. Each functional unit of the management server 2 described below is realized by the CPU 201 reading a program stored in the storage device 203 into the memory 202 and executing it, and each storage unit of the management server 2 is realized as part of the storage area provided by the memory 202 and the storage device 203.
[0015] 3 is a diagram showing an example of the software configuration of the management server 2. Note that the configuration shown in the figure is an example, and other configurations may be used. The management server 2 includes an emission amount storage unit 231, a target storage unit 232, a target acquisition unit 211, an estimation unit 212, and a calculation unit 213.
[0016] The emission amount storage unit 231 stores information for identifying the amount of greenhouse gas emissions for each supplier. In this embodiment, the emission amount storage unit 231 stores the activity amount and the emission intensity as information for identifying the emission amount, but it may also store the emission amount itself. The emission amount storage unit 231 can store a company ID indicating the supplier, time information, information for identifying the activity by the supplier (activity content), the activity amount and emission intensity related to the activity. The time information may be, for example, a year. The time information may also be the year / month, the year / month / day, etc.
[0017] The emissions storage unit 231 can further store information specifying the company's direct and indirect emissions (emissions related to Scopes 1 and 2). The emissions storage unit 231 may store the emissions themselves as information specifying the company's emissions related to Scopes 1 and 2, or may store the amount of activity and an emissions coefficient.
[0018] The target storage unit 232 stores a target reduction rate for each supplier. The target reduction rate is a target set by the supplier and is a ratio to the supplier's emissions in a base year. The target storage unit 232 stores the base point in time, the target point in time, and the reduction rate in association with a company ID that identifies the supplier and an activity content that identifies the activity by the supplier. The base point in time and the target point in time may be specified by year, or may be specified by year / month, date, date and time, for example.
[0019] The target acquisition unit 211 acquires a target reduction rate from a supplier. For example, the target acquisition unit 211 can send a request to a user of the supplier and receive the target reduction rate from the supplier's user terminal 1. The target acquisition unit 211 may acquire the target reduction rate from a server on which the target reduction rate is managed, or may acquire a target reduction rate disclosed by the supplier from, for example, the supplier's web page or a newspaper company's web page. The target acquisition unit 211 can acquire the activity content, base year, target year, and reduction rate. The target acquisition unit 211 can register the acquired target reduction rate in the target storage unit 232.
[0020] The target acquisition unit 211 can also acquire the reduction rate of the target related to the company's emissions (company reduction rate). The target acquisition unit 211 can receive the company reduction rate from the user terminal 1.
[0021] The estimation unit 212 estimates future emissions for each supplier. The estimation unit 212 can calculate the emissions at the target point in time by multiplying the supplier's emissions at the base point in time (the value obtained by multiplying the amount of activity by the emissions intensity) by the target reduction rate.
[0022] For a supplier for which the target reduction rate could not be obtained, the estimation unit 212 can estimate future emissions by using the statistical value of the target reduction rate stored in the target storage unit 232 as the target reduction rate of that supplier. For example, the estimation unit 212 can use the average of the target reduction rates of all suppliers as the target reduction rate of the supplier for which the target reduction rate could not be obtained.
[0023] The calculation unit 213 calculates the target reduction rate of emissions related to Scope 3. The calculation unit 213 can calculate the reduction rate (the ratio of the value obtained by subtracting the second total value from the first total value to the first total value) by comparing a first total value of future emissions estimated for each supplier with a second total value of emissions for each supplier at the base time.
[0024] The calculation unit 213 can similarly calculate the reduction rate for each Scope 3 category.
[0025] The calculation unit 213 can also calculate the reduction rate (carbon footprint: CFP reduction rate) for the total of Scopes 1 to 3. The calculation unit 213 calculates the future emissions (at the target point in time) for the company based on the company's emissions and its reduction rate, calculates a first total value of the emissions for the company and its suppliers at the target point in time and a second total value of the emissions for the company and its suppliers at the base point in time, and calculates the ratio of the difference between the first and second total values to the second total value as the reduction rate for Scopes 1 to 3.
[0026] <Operation> FIG. 4 is a diagram illustrating the operation of the information processing system.
[0027] The management server 2 acquires a reduction target (reduction rate from a base point in time to a target point in time) from a supplier (S301). The management server 2 can, for example, send a request to the supplier's user and receive the reduction target from the user terminal 1 of the supplier's user. The management server 2 acquires the emissions related to the supplier's activities at the base point in time from the emissions storage unit 231, and calculates the reduction target amount up to the target point in time by multiplying the acquired emissions by the reduction rate (S302). The management server 2 calculates the reduction target amount for Scope 3 by adding up the reduction target amounts calculated for each supplier (S303). Note that, for a supplier for which the management server 2 was unable to acquire a reduction target, it can calculate the reduction target amount using statistics (such as the average reduction rate) of the reduction targets of other Scope 3 suppliers or other suppliers in the same Scope 3 category.
[0028] The management server 2 can calculate the total supplier emissions at the base point in time (i.e., the Scope 3 emissions at the base point in time) and calculate the ratio of the reduction target amount for Scope 3 to that total value as the target reduction rate for Scope 3 (S304).
[0029] The management server 2 acquires the reduction targets for scopes 1 and 2 of the company (S305). The management server 2 can, for example, acquire the reduction targets of the company and calculate the reduction target amount up to the target point in time by multiplying the company's emissions at the base point in time by the reduction rate. The company's reduction targets can be obtained by, for example, sending a request to the company's users and receiving the reduction targets from the user terminals 1 of the company's users.
[0030] The management server 2 obtains the company's emissions related to Scope 1 and 2 from the emissions memory unit 231, and multiplies the obtained emissions (total) by the reduction rate to calculate the reduction target amounts for Scope 1 and 2 up to the target time point (S306).
[0031] The management server 2 totals the reduction target amounts for Scopes 1-3 (S307), calculates the total emissions related to Scopes 1-3 at the base point in time from the emissions memory unit 231, and calculates the ratio of the total reduction target amounts for Scopes 1-3 to the calculated emissions for Scopes 1-3 at the base point in time as the company's target reduction rate (S308).
[0032] The management server 2 can output the reduction target (target reduction rate) for Scope 3 and the reduction target (target reduction rate) for Scope 1-3 (carbon footprint; CFP) (S309).
[0033] As described above, the information processing system of this embodiment can automatically calculate a company's own Scope 3 reduction target and its own carbon footprint reduction target based on the reduction targets collected from suppliers.
[0034] Although the present embodiment has been described above, the above embodiment is intended to facilitate understanding of the present invention and is not intended to limit the present invention. The present invention may be modified or improved without departing from the spirit thereof, and equivalents thereof are also included in the present invention.
[0035] <Disclosures> The present disclosure also includes the following configurations. [Item 1] a target acquisition unit that acquires target greenhouse gas reduction rates from multiple business entities that constitute the upstream or downstream of the supply chain; an emission storage unit that stores information specifying the amount of greenhouse gas emissions for each business entity at a reference point in time; an estimation unit that estimates a future emission amount by multiplying the emission amount by the target reduction rate for each of the business entities; a calculation unit that calculates a target reduction rate of the emissions for all of the business entities by comparing the total amount of future emissions estimated for each of the business entities with the total amount of emissions for each of the business entities at the reference time; An information processing system comprising: [Item 2] Item 1, an information processing system according to item 1, The emission amount storage unit further stores information specifying the first emission amount by the business entity, as well as information specifying the direct and indirect second emission amount by the business entity; the target acquisition unit acquires an in-house reduction rate related to the second emissions, the calculation unit estimates the third future emission amount for the business entity, calculates a fourth future emission amount for the business entity based on the second emission amount and the business entity's reduction rate, and calculates a target reduction rate for the business entity based on a value corresponding to the sum of the third and fourth emission amounts and a value corresponding to the sum of the first and second emission amounts; An information processing system characterized by: [Item 3] Item 1, an information processing system according to item 1, a target storage unit that stores the target reduction rate for each of the business entities; the estimation unit estimates the future emissions for the business entity for which the target reduction rate could not be obtained, using the statistical value of the target reduction rate stored in the target storage unit as the target reduction rate for the business entity; An information processing system characterized by: [Item 4] obtaining target greenhouse gas reduction rates from multiple business entities that constitute the upstream or downstream of the supply chain; storing information specifying the greenhouse gas emissions for each business entity at a reference point in time; a step of estimating future emissions for each of the business entities by multiplying the emissions by the target reduction rate; calculating a target reduction rate of the emissions for all of the business entities by comparing the total amount of future emissions estimated for each of the business entities with the total amount of emissions for each of the business entities at the base time; An information processing method characterized by being executed by a computer. [Item 5] obtaining target greenhouse gas reduction rates from multiple business entities that constitute the upstream or downstream of the supply chain; storing information specifying the greenhouse gas emissions for each business entity at a reference point in time; a step of estimating future emissions for each of the business entities by multiplying the emissions by the target reduction rate; calculating a target reduction rate of the emissions for all of the business entities by comparing the total amount of future emissions estimated for each of the business entities with the total amount of emissions for each of the business entities at the base time; A program that causes a computer to execute the following. [Explanation of symbols]
[0036] 1. User terminal 2 Management Server
Claims
1. an emission amount storage unit that stores greenhouse gas emissions at a reference point in time of a first business entity and a second business entity that are upstream or downstream of the supply chain; a target storage unit that stores target greenhouse gas reduction rates of the first business entity and the second business entity; a calculation unit that calculates a target reduction rate for a total value by comparing a first total value consisting of a first emission amount obtained by multiplying the emission amount of the first business entity by the target reduction rate and a second emission amount obtained by multiplying the emission amount of the second business entity by the target reduction rate with a second total value consisting of a third emission amount of the first business entity at the reference time point and a fourth emission amount of the second business entity at the reference time point; An information processing system comprising:
2. storing greenhouse gas emissions at a reference point in time of a first business entity and a second business entity that are upstream or downstream in the supply chain in an emissions storage unit; storing target greenhouse gas reduction rates of the first business entity and the second business entity in a target storage unit; calculating a target reduction rate for the total value by comparing a first total value consisting of a first emission amount obtained by multiplying the emission amount of the first business entity by the target reduction rate and a second emission amount obtained by multiplying the emission amount of the second business entity by the target reduction rate with a second total value consisting of a third emission amount of the first business entity at the reference time point and a fourth emission amount of the second business entity at the reference time point; An information processing method characterized by being executed by a computer.
3. storing greenhouse gas emissions at a reference point in time of a first business entity and a second business entity that are upstream or downstream in the supply chain in an emissions storage unit; storing target greenhouse gas reduction rates of the first business entity and the second business entity in a target storage unit; calculating a target reduction rate for the total value by comparing a first total value consisting of a first emission amount obtained by multiplying the emission amount of the first business entity by the target reduction rate and a second emission amount obtained by multiplying the emission amount of the second business entity by the target reduction rate with a second total value consisting of a third emission amount of the first business entity at the reference time point and a fourth emission amount of the second business entity at the reference time point; A program that causes a computer to execute the following.
Citation Information
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